Showing posts with label bodymods. Show all posts
Showing posts with label bodymods. Show all posts

Thursday, August 1, 2024

Manplants, Transplants and Anthropologizing of the Biosphere


Researchers show that introduced tardigrade proteins can slow metabolism in human cells
Mar 2024, phys.org

This work examines the mechanisms used by tardigrades to enter and exit from suspended animation when faced by environmental stress, and provides additional evidence that tardigrade proteins eventually could be used to make life-saving treatments available to people where refrigeration is not possible—and enhance storage of cell-based therapies, such as stem cells.

"Amazingly, when we introduce these proteins into human cells, they gel and slow down metabolism, just like in tardigrades"

The whole process is reversible. "When the stress is relieved, the tardigrade gels dissolve, and the human cells return to their normal metabolism"

via University of Wyoming Department of Molecular Biology, University of Bristol, Washington University in St. Louis, University of California-Merced, University of Bologna, University of Amsterdam: S. Sanchez‐Martinez et al, Labile assembly of a tardigrade protein induces biostasis, Protein Science (2024). DOI: 10.1002/pro.4941



By growing animal cells in rice grains, scientists dish up hybrid food
Feb 2024, phys.org

"hybrid meat rice" 

Rice grains are porous and have organized structures, providing a solid scaffold to house animal-derived cells in the nooks and crannies. Certain molecules found in rice can also nourish and promote the growth of these cells, making rice an ideal platform.

The team first coated rice with fish gelatin, a safe and edible ingredient that helps cells latch onto the rice better. Cow muscle and fat stem cells were then seeded into the rice and left to culture in the petri dish for nine to 11 days. The harvested final product is a cell-cultured beef rice with main ingredients that meet food safety requirements and have a low risk of triggering food allergies.

via Yonsei University in Korea: Rice grains integrated with animal cells: A Shortcut to a Sustainable Food System, Matter (2024). DOI: 10.1016/j.matt.2024.01.015.


Montana man used animal tissue and testicles to breed 'giant' sheep for sale to hunting preserves
Mar 2024, AP News

Court documents describe a yearslong conspiracy, beginning in 2013, in which Schubarth and at least five other people sought to create “giant sheep hybrids” by cross-breeding different species. Their goal was to garner high prices from hunting preserves where people shoot captive trophy game animals for a fee.

Using biological tissue obtained from a hunter who killed a wild sheep in Kyrgyzstan belonging to the world’s largest species of the animals — Marco Polo argali sheep — Schubarth procured cloned embryos of the animal from a lab, according to court documents.

The embryos were later implanted in a ewe, resulting in a pure Marco Polo argali sheep that Schubert named “Montana Mountain King,” the documents show. Semen from Montana Mountain King was used to artificially impregnate other ewes to create a larger and more valuable species of sheep, including one offspring that he reached an agreement to sell to two people in Texas for $10,000, according to the documents.

In 2019, Schubarth paid $400 to a hunting guide for testicles from a trophy-sized Rocky Mountain bighorn sheep killed in Montana. Schubarth extracted semen from bighorn sheep testicles and used it to breed large bighorn sheep and sheep crossbred with the argali species, the documents show.

Wednesday, August 31, 2022

Let's Accept It


Scientists craft living human skin for robots
Jun 2022, phys.org

Robotic finger skin-like texture with water-repellent and self-healing functions.

"The finger looks slightly 'sweaty' straight out of the culture medium,"

"Since the finger is driven by an electric motor, it is also interesting to hear the clicking sounds of the motor in harmony with a finger that looks just like a real one."

Interesting? Sounds like the deepest horrors of mankind to me. 

"With that method, you have to have the hands of a skilled artisan who can cut and tailor the skin sheets," says Takeuchi. "To efficiently cover surfaces with skin cells, we established a tissue molding method to directly mold skin tissue around the robot, which resulted in a seamless skin coverage on a robotic finger."

Skin Sheets.

When wounded, the crafted skin could even self-heal like humans' with the help of a collagen bandage, which gradually morphed into the skin and withstood repeated joint movements.

It heals itself. 

"I think living skin is the ultimate solution to give robots the look and touch of living creatures since it is exactly the same material that covers animal bodies," says Takeuchi.

And there you have it.


via University of Tokyo: Shoji Takeuchi, Living skin on a robot, Matter (2022). DOI: 10.1016/j.matt.2022.05.019

Image credit: Robotic finger covered with human living skin self heals, Shoji Takeuchi, University of Tokyo, 2022


Post Script - Fingers of Science:
I don't know where this came from, but I am compelled to archive pictures of scientists holding tiny things in between their fingers. Nothing says science like a tiny piece of magic held by disembodied, rubber-gloved fingers, shoved right in front of the camera. Behold the fruits of human exploration:

Photonic Processor - June Sang Lee University of Oxford - 2022

A transducer combining liquid crystal elastomers with a thermoelectrical device provides advantages like active cooling and regenerative energy harvesting for soft robotics. Credit: Soft Machines Lab, Carnegie Mellon University [link]

Wearable Thermoelectric Device - Han et al University of Washington Advanced Energy Materials - 2022

SbSI and SbSI-Sb2S3 Photovoltaic Devices - Ryosuke Nishikubo - 2022

hectoSTAR probe - Eunah Ko shows University of Michigan - 2022

Film coated in thermoelectric ink - KTH Royal Institute of Technology - 2022

Double whammy, in the wild.



Tuesday, August 2, 2022

Mody Bodifications


Spray of tiny particles of gold can potentially treat heart disease, research suggests
Mar 2022, phys.org

Custom-made nanogold modified with peptides—a short chain of amino acids—was sprayed on the hearts of lab mice.

via University of Ottawa: Marcelo Muñoz et al, Nanoengineered Sprayable Therapy for Treating Myocardial Infarction, ACS Nano (2022). DOI: 10.1021/acsnano.1c08890


Lab grown, self-sustainable muscle cells repair injury and disease, mouse study shows
Apr 2022, phys.org

Scientists say they have successfully cultivated human muscle stem cells capable of renewing themselves and repairing muscle tissue damage in mice.

via Johns Hopkins University School of Medicine: Congshan Sun et al, Human pluripotent stem cell-derived myogenic progenitors undergo maturation to quiescent satellite cells upon engraftment, Cell Stem Cell (2022). DOI: 10.1016/j.stem.2022.03.004

[Fucking transparent] Whole mouse chest after SARS-CoV-2 infection, Scripps Institute, 2022 [link]

New method for making tissue transparent could speed the study of many diseases
Apr 2022, phys.org

A new tissue-clearing method for rendering large biological samples transparent. 

For studies of large body parts or even entire animals.

Tissue-clearing methods until now have used either organic solvents or water-based solvents which require burdensome, labor-intensive procedures, often using hazardous chemicals. The new methods uses a sequential combination of organic solvents and water-based detergents, and makes use of water-based hydrogels to protect those molecules within the tissue that need to be preserved.

"In many cases, you can just put the whole thing in a jar and keep it in a shaker on your benchtop until it's done."

via Scripps Research Institute: Victoria Nudell et al, HYBRiD: hydrogel-reinforced DISCO for clearing mammalian bodies, Nature Methods (2022). DOI: 10.1038/s41592-022-01427-0


In Your Face, Gender Square:
Trichaptum mushrooms found to have more than 17,000 gender alleles
Apr 2022, phys.org

17,000

via University of Oslo and University of Michigan: David Peris et al, Large-scale fungal strain sequencing unravels the molecular diversity in mating loci maintained by long-term balancing selection, PLOS Genetics (2022). DOI: 10.1371/journal.pgen.1010097

Wednesday, April 6, 2022

Bodies R Us


Anthropometry:
Examining the link between body image and income
Sep 2021, phys.org

I just came here for the "Civilian American and European Surface Anthropometry Resource project", or CAESAR. It scans and saves the metrics of people's bodies, their shapes and sizes, in intimate detail. It's used for engineering and design of products and fashion. 

But seriously, this is also an interesting example of interdisciplinary work in the science world. It's a collaboration between a data scientist and an econometrician (yeah that's a real word for an economic and financial engineer). And if you need to know, the results of their study show that good-looking people make more money. And that means taller for men, and thinner for women, with a little hip-to-waist ratio in there for good measure. Shocker though. 

They figured this out by running the CAESAR through a custom neural net. 

via University of Virginia and University of Iowa:  Suyong Song et al, Body shape matters: Evidence from machine learning on body shape-income relationship, PLOS ONE (2021). DOI: 10.1371/journal.pone.0254785


The Internet of Bodies:
A network of body monitoring devices using our own tissue as the basis for the internet of bodies
Nov 2021, phys.org

The findings open the way for the interconnection of long-lasting wireless devices as the foundation for the internet of bodies (IoB).

"The IoB is a network of wearable, implantable, ingestible and injectable smart objects that allows for in-, on- and off-body communications," says Ahmed Eltawil. "For example, smartwatches, smart shoes, pacemakers and cochlear implants could be interconnected to monitor our biomarkers."

It uses harmless tiny electrical signals to transmit data through conductive body tissue. Due to the unique conductance characteristics of each person, the technology could also be used for bioauthentication, just like a fingerprint.

"Imagine a scenario where simply touching a car steering wheel or the keys on your laptop can continuously authenticate that you are the owner," says Abdulkadir Celik.

And don't forget the Internet of Animals (Nature, 2018).

via King Abdullah University of Science and Technology: Abdulkadir Celik et al, The Internet of Bodies: A Systematic Survey on Propagation Characterization and Channel Modeling, IEEE Internet of Things Journal (2021). DOI: 10.1109/JIOT.2021.3098028

And: Energy Efficient Capacitive Body Channel Access Schemes for Internet of Bodies. KAUST Research Repository. doi.org/10.25781/KAUST-0FW2U


Pianists learn to play with robotic third thumb in just one hour
Nov 2021, phys.org

Yes they did.

via Imperial College London: Ali Shafti et al, Playing the piano with a robotic third thumb: assessing constraints of human augmentation, Scientific Reports (2021). DOI: 10.1038/s41598-021-00376-6


And on that note:
Typical olfactory bulbs might not be necessary for smell, case study suggests
Nov 2019, phys.org

"We were struck by the serendipitous observation at MRI of two otherwise healthy young left-handed women, yet with no apparent olfactory bulbs."

These women could smell, but with no olfactory bulbs, which is kind of like seeing without a visual cortex. 

From the people who brought you White Smell, the Weizmann Institute: Tali Weiss, Noam Sobel, et al.  Human Olfaction without Apparent Olfactory Bulbs. Neuron. 2020 Jan 8;105(1):35-45.e5. doi: 10.1016/j.neuron.2019.10.006. 


Bionic eyes: Obsolete tech leaves patients in the dark
Mar 2022, BBC News

This is just the beginning:

Hundreds of people who had retinal implants to improve their sight face an uncertain future as the technology they rely on is now obsolete. But IEEE Spectrum reports that Second Sight actually discontinued its retinal implants - which effectively take the place of photoreceptors in the eye to create a form of artificial vision - in 2019.

It says the firm nearly went out of business in 2020 and is now concentrating on a brain device - the Orion - which also provides artificial vision, while providing only limited support to the 350 or so who have the implants.

Surgery to implant the device typically takes a few hours and is followed by post-op training to help users interpret the signals from their devices. The system consists of the implant, special glasses with a built-in camera and a video processing unit (VPU) that is attached around the wearer's waist. $150,000 (£110,000) excluding surgery and post-surgery training.

His VPU system broke in November 2020. He considered having the device surgically removed but decided to ask other patients and doctors familiar with the system for help, and luckily found spare parts.

"These are not like off-the-shelf products or services that we can actually own or control. Instead we are dependent on software upgrades, proprietary methods and parts, and the commercial drivers and success or failure of for-profit ventures."


Tuesday, March 29, 2022

I Am the Robot Now


AKA Human Skin Is a Conductible Material
Image credit: Peepo, iStock, 2021

The amount of research being done in the field of wearables and ambient energy harvesting is staggering.


A novel approach to wirelessly power wearable devices
Jun 2021, phys.org

It's like a microscope for energy -- all of the sudden, the "waste energy" from our appliances and devices, in electromagnetic form, is powering tiny ubiquitous smart particles all around us.

Their technology enables a single device, such as a mobile phone placed in the pocket, to wirelessly power other wearable devices on a user's body, using the human body as a medium for power transmission.

A user just needs to place the transmitter on a single power source, such as the smart watch on a user's wrist, while multiple receivers can be placed anywhere on the person's body. The system then harnesses energy from the source to power multiple wearables on the user's body via a process termed as body-coupled power transmission. In this way, the user will only need to charge one device, and the rest of the gadgets that are worn can simultaneously be powered up from that single source. The team's experiments showed that their system allows a single power source that is fully charged to power up to 10 wearable devices on the body, for a duration of over 10 hours.
As a complementary source of power, the NUS team also looked into harvesting energy from the environment. Their research found that typical office and home environments have parasitic electromagnetic (EM) waves that people are exposed to all the time, for instance, from a running laptop. The team's novel receiver scavenges the EM waves from the ambient environment, and through a process referred to as body-coupled powering, the human body is able to harvest this energy to power the wearable devices, regardless of their locations around the body.

via National University of Singapore: Jiamin Li et al, Body-coupled power transmission and energy harvesting, Nature Electronics (2021). DOI: 10.1038/s41928-021-00592-y


A new material made from carbon nanotubes can generate electricity by scavenging energy from its environment
Jun 2021, phys.org

Electrochemistry without wires. This is an organic solvent that generates a current via alcohol oxidation. The catch? The nanotubes are coated in "Teflon-like" material. Gonna have to fix that part (PFAS).

via Massachusetts Institute of Technology: Albert Tianxiang Liu et al, Solvent-induced electrochemistry at an electrically asymmetric carbon Janus particle, Nature Communications (2021). DOI: 10.1038/s41467-021-23038-7


Using starch and baking soda to harvest mechanical energy
Jun 2021, phys.org

via Daegu Gyeongbuk Institute of Science and Technology: Sugato Hajra et al, A Green Metal–Organic Framework‐Cyclodextrin MOF: A Novel Multifunctional Material Based Triboelectric Nanogenerator for Highly Efficient Mechanical Energy Harvesting, Advanced Functional Materials (2021). DOI: 10.1002/adfm.202101829


Skin in the game: Transformative approach uses the human body to recharge smartwatches
Jul 2021, phys.org

via University of Massachusetts Amherst: Noor Mohammed et al, ShaZam, Proceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies (2021). DOI: 10.1145/3463505


Conductive seams, when strategically placed in clothing, can accurately track body motion
Jul 2021, phys.org

via University of Bath: Olivia Ruston et al, More than it Seams: Garment Stitching in Wearable e-Textiles, Designing Interactive Systems Conference 2021 (2021). DOI: 10.1145/3461778.3462103


First-ever transient pacemaker harmlessly dissolves in body
Jul 2021, phys.org

via Northwestern University: Fully implantable and bioresorbable cardiac pacemakers without leads or batteries, Nature Biotechnology (2021). DOI: 10.1038/s41587-021-00948-x


Sweat-proof 'smart skin' takes reliable vitals, even during workouts and spicy meals
Jul 2021, phys.org

Writes itself now:

The patch is patterned with artificial sweat ducts, similar to pores in human skin, that the researchers etched through the material's ultrathin layers. The pores perforate the patch in a kirigami-like pattern, similar to that of the Japanese paper-cutting art. The design ensures that sweat can escape through the patch, preventing skin irritation and damage to embedded sensors.

via Massachusetts Institute of Technology: H. Yeon el al., "Long-term reliable physical health monitoring by sweat pore–inspired perforated electronic skins," Science Advances (2021). DOI: 10.1126/sciadv.abg8459


Microfiber-based metafabric provides daytime radiative cooling
Jul 2021, phys.org

Sooner than we think, we will be wearing today's equivalent of a space suit in order to go outside, on Earth:

The final design added titanium dioxide powder to polymer fibers to make them reflective, and adding polylactic acid to allow the material to emit mid-infrared radiation. The researchers created a fabric using a weaving technique that allowed air to circulate. The researchers tested their material by using it to create a vest. One side of the vest was made of cotton, the other with the material they had developed. A volunteer wore the vest outside in the sun for an hour. Measurements of his skin temperature showed it to be almost 5 degrees Celsius cooler on the new material side. The researchers also note that in addition to reducing heat, clothes made of their material would be biodegradable.

via: Shaoning Zeng et al, Hierarchical-morphology metafabric for scalable passive daytime radiative cooling, Science (2021). DOI: 10.1126/science.abi5484


New chemistry enables using existing technology to print stretchable, bendable circuits on artificial skin
Jul 2021, phys.org

In a new study, the group describes how they have printed stretchable-yet-durable integrated circuits on rubbery, skin-like materials, using the same equipment designed to make solid silicon chips — an accomplishment that could ease the transition to commercialization by switching foundries that today make rigid circuits to producing stretchable ones.

via Stanford University: Yu-Qing Zheng et al, Monolithic optical microlithography of high-density elastic circuits, Science (2021). DOI: 10.1126/science.abh3551

Nanoscopic Schematic by Ella Maru Studio

New nanotech will enable a 'healthy' electric current production inside the human body
Jul 2021, phys.org

For example, a device made from this material may replace a battery that supplies energy to implants like pacemakers, though it should be replaced from time to time. Body movements—like heartbeats, jaw movements, bowel movements, or any other movement that occurs in the body on a regular basis—will charge the device with electricity, which will continuously activate the implant."

via Tel-Aviv University: Santu Bera et al, Molecular engineering of piezoelectricity in collagen-mimicking peptide assemblies, Nature Communications (2021). DOI: 10.1038/s41467-021-22895-6


Detecting an unprecedented range of potentially harmful airborne compounds
Aug 2021, phys.org

Usually, if you want to sample for VOCs, you first have to know which VOC you're looking for. You think there's some diacetyl exposure? Then you dose your sampler with a chemical that latches onto diacetyl. But what if we don't know? You're in luck! This new approach uses nanopores of silica; they are so small that they use van der Waals forces, typically really weak forces, to capture any VOCs that float by. Then they can heat up the sensor and re-volatalize whatever got trapped there, and sniff it through a GCMS.

via American Chemical Society: Nanoporous materials for measuring environmental VOC exposures, ACS Fall 2021.


Indoor lighting creates power for rechargeable devices, sensors
Aug 2021, phys.org

Since there is usually plenty of indoor ambient light from different sources, a ceiling light in an office environment would be enough to charge any of the mini modules that were tested, making them all viable as power sources for indoor batteries and sensors.

via American Institute of Physics: https://horizons.aip.org/energystorage-conversion/


Revolutionary Self-Aware Materials Build the Foundation for Living Structures
Oct 2021, scitechdaily.com

A metamaterial system that acts as its own sensor, recording and relaying important information about the pressure and stresses on its structure, fusing advanced metamaterial and energy harvesting technologies at multiscale. With built-in triboelectric nanogenerator mechanism; a smart-stint that monitors bloodflow and restricts vessel size accordingly, or just a smart-bridge that can communicate areas of weakness by sensing pressure.

As I write this, it sounds to me like the bridge can be conscious, because it can feel. So in the distant future, we won't be able to just knock down a house, because it will have feelings. Design for Dissassembly then, maybe?

via University of Pittsburg's Intelligent Structural Monitoring and Response Testing (iSMaRT) Lab: “Multifunctional meta-tribomaterial nanogenerators for energy harvesting and active sensing” by Kaveh Barri, Pengcheng Jiao, Qianyun Zhang, Jun Chen, Zhong Lin Wang and Amir H. Alavi, 16 April 2021, Nano Energy. DOI: 10.1016/j.nanoen.2021.106074


Engineers develop process that turns ordinary clothing into biosensors
Nov 2021, phys.org

Gold and silver nanocomposite-based biostable and biocompatible electronic textile for wearable electromyographic biosensors.

via University of Utah: Taehwan Lim et al, Gold and silver nanocomposite-based biostable and biocompatible electronic textile for wearable electromyographic biosensors, APL Materials (2021). DOI: 10.1063/5.0058617


Form fit: Device wraps around hot surfaces, turns wasted heat to electricity
Jan 2022, phys.org

via Pennsylvania State University: Wenjie Li et al, Conformal High-Power-Density Half-Heusler Thermoelectric Modules: A Pathway toward Practical Power Generators, ACS Applied Materials & Interfaces (2021). DOI: 10.1021/acsami.1c16117


Tuesday, September 14, 2021

The Fingerbot


Using the human hand as a powerless infrared radiation source
Apr 2021, phys.org

The future is so obvious once it happens.

The idea of your fingers manipulating computer screens floating in mid air seems pretty natural. I never thought of my finger as a remote control, but it does make perfect sense. This also reminds me of the Nintendo Wii hack from many years ago, where you place the Wii controller in a stationary position, and have it read an IR light pen as you draw on a surface with it. The light-point is followed by the Wii, and translated into lines on a projected screen. You use the Wii backwards to write on the projected surface in real time. Graffiti Research Labs took this a step further with their Laser Tag project. Now we can imagine doing that with our fingers. No Wii necessary, only some basic intelligence in your camera, and it will be able to learn how to see your fingers and take direction from them. 

via Shanghai Jiao Tong University: Shun An et al. Human hand as a powerless and multiplexed infrared light source for information decryption and complex signal generation, Proceedings of the National Academy of Sciences (2021). DOI: 10.1073/pnas.2021077118

Image credit: It's a fingerbot, so you can inject an analog loop into your IoT wifi smart home mesh network. But they changed the name to switchbot; probably a good idea. 

Post Script:
Speaking of Laser Tag...
This is the EyeWriter, which allows paralyzed graffiti artists to write graffiti with their eyeballs.

And this is his graffiti, TEMPT circa 2009.

Monday, June 21, 2021

Plot Twist

Let's start here -- people have been scared of electromagnetic radiation (aka EMF) for a long time. And you can't really blame them; microwave ovens are pretty hard to believe. Wifi even more so. The same device that can "send movies through the air on invisible electromagnetic waves" can't also read my mind and control my thoughts?

The next exit off the Tinfoil Highway, after mind control, is for cancer. Working in Indoor Air Quality and Environmental Health, we get phone calls from time to time about concerns over EMF exposure. People have some symptoms, either physical or mental, and they wonder if something in their environment is causing the problem, and they know they have these magical waves floating all around their home every day. Technically, we can monitor for EMF exposure, there's equipment for it, but chances are the EMF is not your problem. After years and years of using cell phones, we can't seem to get any signal on them causing cancer.  

But that's hard to explain to someone who is already convinced. And it puts the environmental consultant in the awkward position of offending a potential client.

But now, we get these new discoveries which are the stuff of conspiracy theory nightmares, only in reverse:

Electromagnetic fields hinder spread of breast cancer, study shows
Mar 2021, phys.org
Electromagnetic fields appear to slow cancer cells' metabolism selectively by changing the electrical fields inside an individual cell.
via Ohio State University:  Travis H. Jones et al, Directional Migration of Breast Cancer Cells Hindered by Induced Electric Fields May Be Due to Accompanying Alteration of Metabolic Activity, Bioelectricity (2021). DOI: 10.1089/bioe.2020.0048
Tiny implant cures diabetes in mice without triggering immune response
Jun 2021, phys.org
"The implants floated freely inside the animals, and when we removed them after about six months, the insulin-secreting cells inside the implants still were functioning. And importantly, it is a very robust and safe device."
via Washington University School of Medicine: X. Wang el al., "A nanofibrous encapsulation device for safe delivery of insulin-producing cells to treat type 1 diabetes," Science Translational Medicine (2021). https://stm.sciencemag.org/lookup/doi/10.1126/scitranslmed.abb4601
Controlling insulin production with a smartwatch
Jun 2021, phys.org
"No naturally occurring molecular system in human cells responds to green light, so we had to build something new."

The ETH professor and his colleagues ultimately developed a molecular switch that, once implanted, can be activated by the green light of a smartwatch.

The switch is linked to a gene network that the researchers introduced into human cells. Depending on the configuration of this network—in other words, the genes it contains—it can produce insulin or other substances as soon as the cells are exposed to green light. Turning the light off inactivates the switch and halts the process.
via ETH Zurich: Mansouri M, Hussherr M-D, Strittmatter T, Buchmann P, Xue S, Camenisch G, Fussenegger M: Smart-watch-programmed green-light-operated percutaneous control of therapeutic transgenes. Nature Communications, 2021, 7 June; DOI: 10.1038/s41467-021-23572-4
Remote control of blood sugar - Electromagnetic fields treat diabetes in animal models
Oct 2020, phys.org

Exposing diabetic mice to a combination of static electric and magnetic fields for a few hours per day normalizes two major hallmarks of type 2 diabetes. And it works by remote control, and it can be applied in your sleep to normalize your blood sugar for the rest of the day.

And this makes it even better; "The initial finding was pure serendipity." One scientist borrowed another scientist's mice; he was working on EMF exposure, and she was working on blood sugar. Using his mice in her experiment, she found something strange going on. Now we think the EMFs prolong activation of superoxide molecules in the liver, rebalancing the body's response to insulin.

Later, they even treated human liver cells with EMFs, for six hours, and found that the surrogate marker for insulin sensitivity improved.

via Calvin S. Carter et al, Exposure to Static Magnetic and Electric Fields Treats Type 2 Diabetes, Cell Metabolism (2020). DOI: 10.1016/j.cmet.2020.09.012

Sunday, January 10, 2021

Exobiological Skin Shell Sensors and Remote Control Metabolism Engineering



Just trying to come up with a catchy title for a quick list of developments in color application technology, but also biomimicry, wearables, and radioactive fungi. We're finishing off with some recent bits in the endless stream of synthetic biology advancements that will eventually define the 21st century.

Images courtesy of Nikon's Small World Challenge, best microscopy photos you can get!

The first one is a snail tongue by Dr. Igor Siwanowicz, and has nothing to do with the articles below.


Blue dye from red beets - Chemists devise a new pigment option
Apr 2020, phys.org

Non-toxic and Blue dye do not belong in the same sentence, historically. But now, a new class of dyes called pseudo-natural dyes use the same molecules that come from bright red beets (betalains), and they change the carbon-nitrogen chemical bond to a carbon-carbon bond. These new molecules are called quasibetalains, and they're blue.

On a sidenote, I do not recognize the opening statement in the above link, which says that blue is the most liked color the world over. In my art room, in the box of color pencils, and in the box of markers, both followed the same pattern every year for every class: the red pencils are the first to go, followed by blue; it gets fuzzy after that, but they all end up with nothing but brown, orange and yellow, and in that order. After all, brown is the entropic heat death of the rainbow, kind of an anti-color. 

B. C. Freitas-Dörr et al. A metal-free blue chromophore derived from plant pigments, Science Advances (2020). DOI: 10.1126/sciadv.aaz0421
http://dx.doi.org/10.1126/sciadv.aaz0421


Red light for stress - A color-changing organic crystal
May 2020, phys.org

Here we've got some organic crystals that change color based on pressure, but that can also return to their original shape. And that's called superelastochromism.

The idea here is to use them as sensors to show you where a building is getting out of whack. But there's a whole lot more you can imagine doing with these.

via the University of Tokyo: Toshiki Mutai et al, A superelastochromic crystal, Nature Communications (2020). DOI: 10.1038/s41467-020-15663-5


Liquid crystals create easy-to-read, color-changing sensors
Jul 2020, phys.org

Similar thing here; they're pushing and pulling liquid crystals to manipulate their color. The thing is, these don't just change color based on pressure, but even temperature. The walls in your room could change if the temperature shifts too quickly, for example. 
 
Then again, if you're wearing this, it could show you inflammation in your body. 

via the University of Chicago: "Prolate and oblate chiral liquid crystal spheroids". Juan de Pablo et al. Science Advances (2020). DOI: 10.1126/sciadv.aba6728 

Mohamed Ghassen Nouira makes purple dye.

Passion for purple revives ancient dye in Tunisia
Aug 2020, phys.org

Emperors hate him. This guy figures out how to take special snails and make purple dye out of them, just like how they used to do. Imperial clothiers and dye-makers knew how to do this centuries ago, and the art was lost to the time in between us and them. 

And that wasn't a mistake. The process of making Tyrian Purple was a secret, kind of like how we try to keep people from making believable hundred dollar bills. 

Think about it, if you, a Carthaginian hustlepimp, could make your own purple robe and deceive the court into thinking you were royalty, kind of like an ancient Borat, you could cause a ruckus. And we can't have a ruckus in the upper reaches of the royal elites. 

More importantly, empires made their fortunes selling this dye to other empires. Can't have some guy in his garage creeping into your marketshare. 

100,000 grams (100kg) of shelled murex yields 1 gram of Tyrian Purple, and goes for $2,400 - $4,000 per gram, and takes about a week's worth of work.

Sidenote, if you search the words "royal elite" it reeks of fake shit and dupery, which I think is funny because it's a redundant term that would only be used by people who don't really know what either word means.


Testing Chernobyl fungi as a radiation shield for astronauts
Aug 2020, phys.org

Bioshell.

They want to coat spaceships in a shell of superfungus to protect from radiation. They didn't create these fungi by engineering them in a lab; they found them. 

And where are on earth are you going to find an organism that metabolizes radioactive isotopes? Yes, thank you Chernobyl.

Graham K. Shunk et al. A Self-Replicating Radiation-Shield for Human Deep-Space Exploration: Radiotrophic Fungi can Attenuate Ionizing Radiation aboard the International Space Station, bioRxiv (2020). DOI: 10.1101/2020.07.16.205534. http://dx.doi.org/10.1101/2020.07.16.205534

Beetle leg - Aigars Jukna

Low-cost, fly footpad-like adhesive structure capable of repeated attachment/detachment
Aug 2020, phys.org

The design is based on fly feet, fine, that's pretty standard biomimicry. But the way they learned how to manufacutre the thing is by looking at how the fly itself makes flies, in the pupa. That's next level biomimicry. And it allows you to repeatedly stick and unstick  without losing any of its stickiness.

Ken-ichi Kimura et al, Framework with cytoskeletal actin filaments forming insect footpad hairs inspires biomimetic adhesive device design, Communications Biology (2020). DOI: 10.1038/s42003-020-0995-0


Florida mosquitoes - 750 million genetically modified insects to be released
Aug 2020, BBC News

I'm not sure where this belongs on this list, but modified mosquitoes were approved by federal regulators, fuck yeah.


Development of photovoltaics that can be applied like paint for real-life application
Sep 2020, phys.org

It's a solar cell solution that can coat surfaces. Eventually it will coat your body, so that you can live forever.

So Hyun Park et al, Developement of highly efficient large area organic photovoltaic module: Effects of nonfullerene acceptor, Nano Energy (2020). DOI: 10.1016/j.nanoen.2020.105147


Evergreen needles act as air quality monitors
Sep 2020, phys.org

Biosensors that measure the magnetism of the particulate matter that accumulates on the needles. Pretty smart.

Grant Rea‐Downing et al, Evergreen needle magnetization as a proxy for particulate matter pollution in urban environments, GeoHealth (2020). DOI: 10.1029/2020GH000286

Bindweed Epidermis - Michael Gibson

Electronic skin promises cheap and recyclable alternative to wearable devices
Nov 2020, phys.org

Man.

"Stretchy and fully-recyclable circuit board that's inspired by, and sticks onto, human skin."

via University of Colorado Boulder:  "Heterogeneous integration of rigid, soft, and liquid materials for self-healable, recyclable, and reconfigurable wearable electronics" Science Advances (2020). DOI: 10.1126/sciadv.abd0202


Engineers print wearable sensors directly on skin without heat
Oct 2020, phys.org

Direct printing for on-body sensors, usually hindered by the bonding process on skin. You can't sinter skin. So they add an "aid layer", basically a protective insulator for the skin that bonds at room temperature. And room temperature.


Artificial skin heals wounds and makes robots sweat
Jun 2020, phys.org

It's about time these robots take over. This is a skin (or "smart coating" when we're trying not to make it sound like the robots will become human and take over) that control fluid flow across its membrane via radio, or UV. And it's made of liquid-crystal molecules, like LCD.

Nylon Stockings - Alexander Klepnev

Thanks to flexoskeletons, these insect-inspired robots are faster and cheaper to make
Apr 2020, phys.org

Just flexoskeletons.


Machine learning takes on synthetic biology - algorithms can bioengineer cells for you
Sep 2020, phys.org

This one is about creating virtual laboratories that produce probable outcomes. They used to say, if you can't build it, you can't know it. But now, we just let the computer figure it out. 

Anyway, they specifically say engineering microbiomes. That's a bit new, because although engineering cells has now penetrated the consumer market (fake meat), engineering the entire ecosystem is a new frontier.

Nature Communications. A machine learning Automated Recommendation Tool for synthetic biology. Tijana Radivojević. (2020). DOI: 10.1038/s41467-020-18008-4

Unopened Flower Bud - Charles B. Krebs


Chemists expand genetic code of E. coli to produce 21st amino acid, giving it new abilities
Aug 2020, phys.org

Bodymods and beyond.

They've created a new amino acid, a "noncanonical amino acid" which kind of means not a real amino acid. It's called 5-hydroxyl-tryptophan (5HTP), and it's now the 21st amino acid. Kind of like how the ampersand was the 27th letter in the alphabet for a while.

They put the code for this protein into a "blank" space of the E. coli's genetic code. This means that the bacteria is now a factory that we designed to produce a molecule. It's a living factory. We're all living factories, bioreactors. But we don't make anything we want with our bodies. In this case, we've reverse-engineered the "making" process itself. The is called biohacking. 

Yuda Chen et al, Creation of Bacterial Cells with 5-Hydroxytryptophan as a 21st Amino Acid Building Block, Chem (2020). DOI: 10.1016/j.chempr.2020.07.013


Researchers develop a yeast-based platform to boost production of rare natural molecules
Aug 2020, phys.org

Again, biofarms of the future.


Engineers reprogram yeast cells to become microscopic drug factories
Sep 2020, phys.org

"Metabolic engineering" is another term for this. They're reprogramming yeast cells at the genetic level to convert sugars and amino acids into drugs. (And someting about the name has me thinking these are hallucinogenic drugs?)

Biosynthesis of medicinal tropane alkaloids in yeast, Nature (2020). DOI: 10.1038/s41586-020-2650-9 

Duckweed Root Decay - Dr. Robert Markus

Soil-powered fuel cell promises cheap, sustainable water purification
Oct 2020, phys.org

Soil microbial fuel cells (SMFCs)


Lowering atmospheric CO2 in large-scale renewable energy electrochemical process
Jun 2020, phys.org

This plus synthetic biology aka the biological revolution, or the 5th(?) industrial revolution, and I say that in 100 years, we'll be taking more CO2 out of the air than what we put in. 
Researchers at the National Renewable Energy Laboratory (NREL) have been focusing on improving electrochemical routes to convert CO2, which would otherwise be released into the atmosphere, into a range of value-added products.

the research team created a high rate of formate production and product selectivity, the latter of which is critical to reduce the need for further costly separations processes downstream. The formate could then be fed to biological organisms or coupled with enzymes, resulting in robust interactions between the formate and enzymes that yield high-density chemicals or fuels, such as ethylene or ethanol, respectively.

The program's larger goal is to use highly efficient electrons at industry scale to convert a waste compound such as CO2 into a multitude of more useful industry-relevant, energy-dense fuels or chemicals, such as polyethylene, which has a large global market.

Google conducts largest chemical simulation on a quantum computer to date
Aug 2020, phys.org

Stuff like this scares the shit out of me, although it's hard to articulate why. Probably because quantum chemical simulator is another word for reality generator, and I just don't think we're ready to activate the mass transference device yet.

Hartree-Fock on a superconducting qubit quantum computer, Science  28 Aug 2020: Vol. 369, Issue 6507, pp. 1084-1089, DOI: 10.1126/science.abb9811


IBM announces AI based chemistry lab - RoboRXN
Sep 2020, phys.org

Same as above.

Automating chemical synthesis with RoboRXN. https://www.ibm.com/blogs/research/2020/08/roborxn-automating-chemical-synthesis/

More Snail Tongue - Dr. Igor Siwanowicz

Remote control of blood sugar - Electromagnetic fields treat diabetes in animal models
Oct 2020, phys.org

And lastly; completely fucking bonkers.

Exposing diabetic mice to a combination of static electric and magnetic fields for a few hours per day normalizes two major hallmarks of type 2 diabetes. And it works by remote control, and it can be applied in your sleep to normalize your blood sugar for the rest of the day.

EMF therapy. Sounds like absolute and total bullshit. Remote control blood sugar.

And this makes it even better; "The initial finding was pure serendipity." One scientist borrowed another scientist's mice; he was working on EMF exposure, and she was working on bloodsugar. Using his mice in her experiment, she found something strange going on. Now we think the EMFs prolong activation of superoxide molecules in the liver, rebalancing the body's response to insulin.

Later, they even treated human liver cells with EMFs, for six hours, and found that the surrogate marker for insulin sensitivity improved.

Calvin S. Carter et al, Exposure to Static Magnetic and Electric Fields Treats Type 2 Diabetes, Cell Metabolism (2020). DOI: 10.1016/j.cmet.2020.09.012

Sunday, June 3, 2018

Technicolor Vision

These are all examples of infrared landscape photography. There is a good series of the Congo by Richard Mosse.
Colorblindness has nothing to do with infrared vision; I just thought these pictures were awesome.

There is no cure for colorblindness. There are special tinted glasses that help, but now there are dyed contact lenses. This article explains it more directly than I can:

"...dyed with a non-toxic rhodamine derivative dye. This particular derivative of rhodamine was chosen as it is known for its ability to absorb certain wavelengths of light in the optical spectrum. Researchers found that the dye blocked the band that lies between the red and green wavelengths, which is perceived by two sets of corresponding optical cones simultaneously. The removal of this band through the dyed lens inhibited the simultaneous triggering of the cones designated for green and red wavelength bands, enabling better differentiation between red and green colours."

New development in contact lenses for red-green color blindness using simple dye
Apr 2018, phys.org
Tropical garden infrared landscape photography.

And surreal infrared landscape photography by David Keochkerian.

more nice pictures with no source credited