Thursday, June 18, 2020

New Integrated 3D-Circuit Architecture With Spiraling Memory for More Efficient AI - https://scitechdaily.com/new-integrated-3d-circuit-architecture-with-spiraling-memory-for-more-efficient-ai/

#articlesubmission
#tissueengineering
#3Dprinting
#Submitarticles @:biomaterials.euroscion com.
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Tuesday, June 2, 2020

Iron Nanorobots Go Undercover to Track Living Cells Inside the Body

Iron Nanorobots Go Undercover to Track Living Cells Inside the Body - https://scitechdaily.com/iron-nanorobots-go-undercover-to-track-living-cells-inside-the-body/

#articlesubmission
#tissueengineering
#3dprinting
#Submitarticles @: biomaterials.euroscion.com
#Manuscript
#manuscriptsubmission

Thursday, May 21, 2020

Thursday, May 14, 2020

biomaterials articlesubmission Submitarticles at: biomaterials.euroscion com. Submit your related articleshttps://scitechdaily.com/brain-inspired-organic-memory-devices-for-flexible-wearable-personalized-computing/

Tuesday, May 12, 2020

Tuesday, May 5, 2020

#biomaterials #articlesubmission #Submitarticles at: biomaterials.euroscion com. Submit your related articles

Bio-Materials
Biomedical Composites Science and Technology
Biomedical Engineering
3D Printing Of Bio-Materials
Regenerative Medicine
Advances in Tissue Engineering (TE)
Nanotechnology
Artificial Tissues Creation and Engineering
Smart Materials-Biological Performance
Bio Devices, Technologies and Sensor Network
Biomedical Imaging Processing and Bio Pho tonics
Production of Novel Bio-materials
Bio-Materials in Current Medical Practice
Synthesis and Fabrication of Bio-materials
Host Reaction to Bio-Materials
Bio-Materials in Pericardial Processing
Bio-Materials Design for Novel Structures
Bioinformatics and Medical Information Systems
Bio-Materials as an Emerging Industry
Bio-Materials in Sports Medicine
Bio-Materials for Medical Applications



Friday, April 24, 2020

Translational cardiac stem cell therapy: advancing from first-generation to next-generation cell types


Translational cardiac stem cell therapy: advancing from first-generation to next-generation cell types #Biomaterials #Implants #Cardiac_Surgeon #Cardiac

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A layman’s summary of our Science Reports study on the effects of Zinc on myoblast differentiation.


  Published now in the Atlas of Science.

 
In the image, a representation of the endoplasmic reticulum (an organelle inside eukaryotic cells that looks like tubes stacked together) in a stem cell that will become a muscle cell (a myoblast). After differentiation, muscle cells organise in myotubes and then myofibrils and muscle fibres. The sarcoplasmic reticulum its the membrane-tube structure inside the muscle cells equivalent to the endoplasmic reticulum in other cells. The reticulum work as reservoir of zinc and calcium ions. The zinc cell membrane transporter (called Zip7), located in the endoplasmic reticulum, transports zinc to the cytosol.


Our work has demonstrated that the enhanced myogenic differentiation triggered by zinc occurs through the Akt signalling pathway, via zinc stimulation of transporter Zip7.

The Atlas of Science has published a layman’s summary of our paper in Scientific Reports by Hayk Mnatsakanyan, Roser Sabater-Serra, Patricia Rico-Tortosa and Manuel Salmerón-Sánchez. Direct link to our publication in the Atlas of Science