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Scientists discover bioengineered hybrid muscle fiber for regenerative medicine

Scientists discover bioengineered hybrid muscle fiber for regenerative medicine ANI | Updated: Feb 28, 2021 22:31 IST Washington [US], February 28 (ANI): Researchers through their study published in the journal, Advanced Materials claimed that regeneration of muscletissue can be achieved by joining direct cell reprogramming with natural-synthetic hybrid scaffold as structural support for the medication. Muscle is the largest organ that accounts for 40% of b...
Soult Ukpyolsi South Korea United States Institute For Basic Science Massachusetts Institute Of Technology Yonsei University College Of Life Science
Source: aninews.in

Bioengineered hybrid muscle fiber for regenerative medicine

Credit: Institute for Basic Science Muscle is the largest organ that accounts for 40% of body mass and plays an essential role in maintaining our lives. Muscle tissue is notable for its unique ability for spontaneous regeneration. However, in serious injuries such as those sustained in car accidents or tumor resection which results in a volumetric muscle loss (VML), the muscles ability to recover is greatly diminished. Currently, VML treatments comprise surgical interventions with autologous mu...
Soult Ukpyolsi South Korea Institute For Basic Science Massachusetts Institute Of Technology Yonsei University College Of Life Science Yonsei University

A promising strategy to improve functional capacity of damaged muscle

A promising strategy to improve functional capacity of damaged muscle Muscle is the largest organ that accounts for 40% of body mass and plays an essential role in maintaining our lives. Muscle tissue is notable for its unique ability for spontaneous regeneration. However, in serious injuries such as those sustained in car accidents or tumor resection which results in a volumetric muscle loss (VML), the muscles ability to recover is greatly diminished. Currently, VML treatments comprise surgica...
Soult Ukpyolsi South Korea Emily Henderson Institute For Basic Science Institute For Basic Science Center Massachusetts Institute Of Technology

Study finds bioengineered hybrid muscle fiber for regenerative medicine

Washington [US], February 22 (ANI): Researchers during a recent study discovered that by combining direct cell reprogramming with natural-synthetic hybrid scaffold as structural support, regeneration of muscle tissue was achieved.
Soult Ukpyolsi South Korea United States Institute For Basic Science Massachusetts Institute Of Technology Yonsei University College Of Life Science
Source: aninews.in

Hybrid Construct Used To Bioengineer Muscle Fibers

Read Time: Muscle is the largest organ that accounts for 40% of body mass and plays an essential role in maintaining our lives. Muscle tissue is notable for its unique ability for spontaneous regeneration. However, in serious injuries such as those sustained in car accidents or tumor resection which results in a volumetric muscle loss (VML), the muscles ability to recover is greatly diminished. Currently, VML treatments comprise surgical interventions with autologous muscle flaps or grafts a...
Soult Ukpyolsi South Korea Institute For Basic Science Massachusetts Institute Of Technology Yonsei University College Of Life Science Yonsei University

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Seeing stable topology using instabilities

ย E-Mail IMAGE:ย The spatial intensity profile of a laser beam propagating in a nonlinear medium spontaneously becomes nonuniform due to the process of modulational instability. view moreย  Credit: Institute for Basic Science We are most familiar with the four conventional phases of matter: solid, liquid, gas, and plasma. Changes between two phases, known as phase transitions, are marked by abrupt changes in material properties such as density. In recent decades a wide body of physics re...
South Korea Daria Smirnova Sergej Flach Daniel Leykam Aleksandra Maluckov Ekaterina Smolina

CUHK Physicists Discover New Route to Active Matter Self-Organisation Provides New Directions on Fabricating Self-driven Devices and Microbial Physiology

CUHK Physicists Discover New Route to Active Matter Self-Organisation Provides New Directions on Fabricating Self-driven Devices and Microbial Physiology An international team led by Professor Yilin Wu, Associate Professor of the Department of Physics at The Chinese University of Hong Kong (CUHK) has made a novel conceptual advance in the field of active matter science. The team discovered a new route in which the self-organisation of active fluids in space and time can be controlled by a singl...
United States South Korea Hong Kong Isong Liu Cristina Marchetti Santa Barbara

Analyzing short strands of cell-free DNA in urine could help detect early-stage cancer

Analyzing short strands of cell-free DNA in urine could help detect early-stage cancer Urinalysis has long been a staple of physical exams to detect and manage a number of diseases and disorders, but not cancer. What if it were that easy, though, and cancer was detected in its very earliest stages when the disease responds more favorably to treatment and improved outcomes are more likely? That was the question posed by scientists at the Translational Genomics Research Institute (TGen), an affil...
United States Muhammed Murtaza Ajay Goel Emily Henderson Department Of Molecular Diagnostics Tgen Center

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