INFORMATION:
This research was supported, in part, by MIT and the U. S. Army Research Office through the Institute for Soldier Nanotechnologies at MIT.
Written by Jennifer Chu, MIT News Office
Synthetic gelatin-like material mimics lobster underbelly's stretch and strength
The membrane's structure could provide a blueprint for robust artificial tissues
2021-04-23
(Press-News.org) A lobster's underbelly is lined with a thin, translucent membrane that is both stretchy and surprisingly tough. This marine under-armor, as MIT engineers reported in 2019, is made from the toughest known hydrogel in nature, which also happens to be highly flexible. This combination of strength and stretch helps shield a lobster as it scrabbles across the seafloor, while also allowing it to flex back and forth to swim.
Now a separate MIT team has fabricated a hydrogel-based material that mimics the structure of the lobster's underbelly. The researchers ran the material through a battery of stretch and impact tests, and showed that, similar to the lobster underbelly, the synthetic material is remarkably "fatigue-resistant," able to withstand repeated stretches and strains without tearing.
If the fabrication process could be significantly scaled up, materials made from nanofibrous hydrogels could be used to make stretchy and strong replacement tissues such as artificial tendons and ligaments.
The team's results are published in the journal Matter. The paper's MIT co-authors include postdocs Jiahua Ni and Shaoting Lin; graduate students Xinyue Liu and Yuchen Sun; professor of aeronautics and astronautics Raul Radovitzky; professor of chemistry Keith Nelson; mechanical engineering professor Xuanhe Zhao; and former research scientist David Veysset PhD '16, now at Stanford University; along with Zhao Qin, assistant professor at Syracuse University, and Alex Hsieh of the Army Research Laboratory.
Nature's twist
In 2019, Lin and other members of Zhao's group developed a new kind of fatigue-resistant material made from hydrogel -- a gelatin-like class of materials made primarily of water and cross-linked polymers. They fabricated the material from ultrathin fibers of hydrogel, which aligned like many strands of gathered straw when the material was repeatedly stretched. This workout also happened to increase the hydrogel's fatigue resistance.
"At that moment, we had a feeling nanofibers in hydrogels were important, and hoped to manipulate the fibril structures so that we could optimize fatigue resistance," says Lin.
In their new study, the researchers combined a number of techniques to create stronger hydrogel nanofibers. The process starts with electrospinning, a fiber production technique that uses electric charges to draw ultrathin threads out of polymer solutions. The team used high-voltage charges to spin nanofibers from a polymer solution, to form a flat film of nanofibers, each measuring about 800 nanometers -- a fraction of the diameter of a human hair.
They placed the film in a high-humidity chamber to weld the individual fibers into a sturdy, interconnected network, and then set the film in an incubator to crystallize the individual nanofibers at high temperatures, further strengthening the material.
They tested the film's fatigue-resistance by placing it in a machine that stretched it repeatedly over tens of thousands of cycles. They also made notches in some films and observed how the cracks propagated as the films were stretched repeatedly. From these tests, they calculated that the nanofibrous films were 50 times more fatigue-resistant than the conventional nanofibrous hydrogels.
Around this time, they read with interest a study by Ming Guo, associate professor of mechanical engineering at MIT, who characterized the mechanical properties of a lobster's underbelly. This protective membrane is made from thin sheets of chitin, a natural, fibrous material that is similar in makeup to the group's hydrogel nanofibers.
Guo found that a cross-section of the lobster membrane revealed sheets of chitin stacked at 36-degree angles, similar to twisted plywood, or a spiral staircase. This rotating, layered configuration, known as a bouligand structure, enhanced the membrane's properties of stretch and strength.
"We learned that this bouligand structure in the lobster underbelly has high mechanical performance, which motivated us to see if we could reproduce such structures in synthetic materials," Lin says.
Angled architecture
Ni, Lin, and members of Zhao's group teamed up with Nelson's lab and Radovitzky's group in MIT's Institute for Soldier Nanotechnologies, and Qin's lab at Syracuse University, to see if they could reproduce the lobster's bouligand membrane structure using their synthetic, fatigue-resistant films.
"We prepared aligned nanofibers by electrospinning to mimic the chinic fibers existed in the lobster underbelly," Ni says.
After electrospinning nanofibrous films, the researchers stacked each of five films in successive, 36-degree angles to form a single bouligand structure, which they then welded and crystallized to fortify the material. The final product measured 9 square centimeters and about 30 to 40 microns thick -- about the size of a small piece of Scotch tape.
Stretch tests showed that the lobster-inspired material performed similarly to its natural counterpart, able to stretch repeatedly while resisting tears and cracks -- a fatigue-resistance Lin attributes to the structure's angled architecture.
"Intuitively, once a crack in the material propagates through one layer, it's impeded by adjacent layers, where fibers are aligned at different angles," Lin explains.
The team also subjected the material to microballistic impact tests with an experiment designed by Nelson's group. They imaged the material as they shot it with microparticles at high velocity, and measured the particles' speed before and after tearing through the material. The difference in velocity gave them a direct measurement of the material's impact resistance, or the amount of energy it can absorb, which turned out to be a surprisingly tough 40 kilojoules per kilogram. This number is measured in the hydrated state.
"That means that a 5-millimeter steel ball launched at 200 meters per second would be arrested by 13 millimeters of the material," Veysset says. "It is not as resistant as Kevlar, which would require 1 millimeter, but the material beats Kevlar in many other categories."
It's no surprise that the new material isn't as tough as commercial antiballistic materials. It is, however, significantly sturdier than most other nanofibrous hydrogels such as gelatin and synthetic polymers like PVA. The material is also much stretchier than Kevlar. This combination of stretch and strength suggests that, if their fabrication can be sped up, and more films stacked in bouligand structures, nanofibrous hydrogels may serve as flexible and tough artificial tissues.
"For a hydrogel material to be a load-bearing artificial tissue, both strength and deformability are required," Lin says. "Our material design could achieve these two properties."
ELSE PRESS RELEASES FROM THIS DATE:
Simulated identification of silent COVID-19 infections among children; estimated future infection rates with vaccination
2021-04-23
What The Study Did: This simulation modeling study estimates the benefits of identifying silent COVID-19 infections among children as a proxy for their vaccination.
Authors: Alison P. Galvani, Ph.D., of the Yale School of Public Health in New Haven, Connecticut, is the corresponding author.
To access the embargoed study: Visit our For The Media website at this link https://media.jamanetwork.com/
(doi:10.1001/jamanetworkopen.2021.7097)
Editor's Note: The article includes conflict of interest and funding/support disclosures. Please see the article for additional information, including other authors, author contributions and affiliations, conflict of interest and financial disclosures, ...
Cardiac corrected QT interval changes among patients treated for COVID-19 infection during early phase of pandemic
2021-04-23
What The Study Did: Baseline corrected QT interval (QTc) on 12-lead electrocardiograms and ensuing changes among patients with and without COVID-19 are evaluated in this study.
Authors: Marc P. Waase, M.D., Ph.D., and Elaine Y. Wan, M.D., of the Columbia University Irving Medical Center in New York, is the corresponding author.
To access the embargoed study: Visit our For The Media website at this link https://media.jamanetwork.com/
(doi:10.1001/jamanetworkopen.2021.6842)
Editor's Note: The article includes conflict of interest and funding/support disclosures. Please see the article for additional information, including other authors, author contributions and affiliations, conflict of interest and financial disclosures, and funding ...
Association of maternal perinatal SARS-CoV-2 infection with neonatal outcomes during COVID-19 pandemic
2021-04-23
What The Study Did: This study examines the test result positivity rate and health outcomes of maternal SARS-CoV-2 infection among perinatally exposed newborns.
Authors: Asimenia Angelidou, M.D., Ph.D., of Beth Israel Deaconess Medical Center in Boston, is the corresponding author.
To access the embargoed study: Visit our For The Media website at this link https://media.jamanetwork.com/
(doi:10.1001/jamanetworkopen.2021.7523)
Editor's Note: The article includes conflict of interest and funding/support disclosures. Please see the article for additional information, including other authors, author contributions and affiliations, conflict of interest and financial ...
COVID-19 mother-to-newborn infection rates are low, but indirect risks exist
2021-04-23
BOSTON - At the start of the COVID-19 pandemic, very little was known about SARS-CoV-2, the virus that causes COVID-19. Over the past year, more evidence has become available on how the virus is transmitted, who is at the greatest risk and best practices to prevent exposure. Yet questions still remain about how the virus impacts the health of pregnant women and newborns.
In a new study published in JAMA Network Open, physician-researchers from Beth Israel Deaconess Medical Center (BIDMC), Brigham and Women's Hospital, Boston Children's Hospital and Massachusetts General Hospital reveal that, while ...
Comprehensive NICU discharge planning essential for at-home readiness
2021-04-23
(Boston)-- Being a parent of a Neonatal Intensive Care Unit (NICU) infant does not come with its own playbook of instructions. Preparing to care for a medically needy infant requires the mastery of technical skills, knowledge, emotional comfort and confidence. After confirming that an infant is medically ready for discharge, the quality of NICU discharge training/teaching is the strongest predictor of discharge readiness. A new study reinforces the importance of discharge preparation and transition to home planning.
NICU discharge readiness is defined as the "masterful attainment of technical skills and knowledge, emotional ...
Defense mechanisms in aphids can become a double-edged sword, sharpened by the seasons
2021-04-23
Evolution is unfolding in real time within many natural animal populations and researchers are now observing how this influences biodiversity in the field. In a newly published study in Molecular Ecology a team of Drexel University scientists examined the biological variations in pea aphids, insects that reproduce frequently enough to evolve before our eyes, by tracing the prevalence of their protective endosymbiont, Hamiltonella defensa, which the insects use to ward off parasitoid wasps.
"We know that certain organisms have many generations in a season, and we know sometimes it just takes a handful of generations for evolution to unfold; and aphids are one of those types of organisms," explained END ...
Use of HINTS exam in emergency department is of limited value
2021-04-23
DES PLAINES, IL - The diagnostic value of the Head-Impulse, Nystagmus, Test of Skew (HINTS) exam in the emergency department setting is limited. This is the result of a study titled END ...
Research shows pain relieving effects of CBD
2021-04-23
It's been hailed as a wonder drug and it's certainly creating wonder profits. By some estimates, the Cannabidiol (or CBD) market could be worth $20 billion dollars by 2024. While users tout its effectiveness in pain relief, up until now there's been limited experimental human research on the actual effectiveness of the drug. However, a new study led by researchers at Syracuse University sheds light on the ability of CBD to reduce pain along with the impact that the so-called placebo effect may have on pain outcomes.
"For science and the public at large the question remained, is the pain relief that CBD users claim to experience due to pharmacological effects or placebo effects," asked Martin De Vita, a researcher in the psychology department at Syracuse University's ...
Skeletal defects may be ameliorated after immobility in the womb
2021-04-23
Researchers from Trinity College Dublin have discovered that some skeletal defects associated with a lack of movement in the womb during early development may still be ameliorated after such periods of immobility if movement resumes.
The researchers' discovery was made using chicken embryos, which develop similarly to their human equivalents and which can be easily viewed as development takes place - raising hopes that the finding may also apply to humans and thus have important implications for therapeutic interventions.
The research has just been published in leading international journal, Disease Models and Mechanisms.
Why babies need to move in the womb
Foetal movement in the uterus is a normal part of a healthy ...
New alloy can directly reduce the weight of heat removal systems by a third
2021-04-23
The new alloys created by NUST MISIS scientists in cooperation with LG Electronics will help reduce the weight of radiators and heat removal systems in electric vehicles and consumer electronics by one third. The research results are published in the Journal of Magnesium and Alloys.
According to experts, with the development of electronics the problem of efficient heat removal is becoming more and more acute -- with an increase in the productivity of equipment, heat generation also grows. Reducing the temperature directly affects the prolongation of the devices' life cycle. This is especially important for household appliances, electric vehicles, LED panels.
Scientists from NUST MISIS, in collaboration with LG Electronics, ...
LAST 30 PRESS RELEASES:
How can we reduce adolescent pregnancies in low- and middle-income countries?
When sun protection begets malnutrition: vitamin D deficiency in Japanese women
Cannabis use can cause chromosomal damage, increasing cancer risk and harming offspring
Survey finds many Americans apply misguided and counterproductive advice to combat holiday weight gain
New study reveals half a century of change on Britain’s iconic limestone pavements
Green flight paths could unlock sustainable aviation, new research suggests
Community partners key to success of vaccine clinic focused on neurodevelopmental conditions
Low-carbon collaborative dual-layer optimization for energy station considering joint electricity and heat demand response
McMaster University researchers uncover potential treatment for rare genetic disorders
The return of protectionism: The impact of the Sino-US trade war
UTokyo and NARO develop new vertical seed distribution trait for soybean breeding
Research into UK’s use of plastic packaging finds households ‘wishcycle’ rather than recycle – risking vast contamination
Vaccine shows promise against aggressive breast cancer
Adverse events affect over 1 in 3 surgery patients, US study finds
Outsourcing adult social care has contributed to England’s care crisis, argue experts
The Lancet: Over 800 million adults living with diabetes, more than half not receiving treatment, global study suggests
New therapeutic approach for severe COVID-19: faster recovery and reduction in mortality
Plugged wells and reduced injection lower induced earthquake rates in Oklahoma
Yin selected as a 2024 American Society of Agronomy Fellow
Long Covid could cost the economy billions every year
Bluetooth technology unlocks urban animal secrets
This nifty AI tool helps neurosurgeons find sneaky cancer cells
Treatment advances, predictive biomarkers stand to improve bladder cancer care
NYC's ride-hailing fee failed to ease Manhattan traffic, new NYU Tandon study reveals
Meteorite contains evidence of liquid water on Mars 742 million years ago
Self-reported screening helped reduce distressing symptoms for pediatric patients with cancer
Which risk factors are linked to having a severe stroke?
Opening borders for workers: Abe’s profound influence on Japan’s immigration regime
How skills from hospitality and tourism can propel careers beyond the industry
Research shows managers of firms handling recalls should review media scrutiny before deciding whether to lobby
[Press-News.org] Synthetic gelatin-like material mimics lobster underbelly's stretch and strengthThe membrane's structure could provide a blueprint for robust artificial tissues