Postdoc Position in Bioinformatics in Stem Cell Neurobiology job with MASARYK UNIVERSITY | 276195 – Times Higher Education (THE)

Department Department of Histology and EmbryologyFaculty of MedicineDeadline 28 Feb 2022Start date Jully 2022Job type full-timeJob field Science and research Medical Faculty of Masaryk University, Brno, Czech Republic, invites excellent scientists to apply for Postdoc position in Bioinformatics in Stem Cell Neurobiology Description: The Department of Histology and Embryology is an educational and research workplace at the Medical Faculty of Masaryk University, Brno, the Czech Republic. The Department provides courses on all aspects of normal structure and development of human tissues and organs to students of General medicine and Dentistry.

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USC Stem Cell

Curiosity, commitment and compassion drive Yichen Lis research in neurodegenerative diseases Yichen Li has always been driven to understand the world around her. Growing up in an Eastern province in China, Lis inquisitive nature steered her toward science. When I was a girl, I wouldnt stop asking my dad questions, such as what is light, electricity or heat, she said

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Communication between cells plays a major role in deciding their fate – EurekAlert

image:In this schematic, cells (black spheres) within each well are committed to a specific fate, but external stimuli, such as cell-to-cell communication, can force cells out of one state and into another. view more Credit: Adam MacLean Scientists have found a way to prove that biochemical signals sent from cell to cell play an important role in determining how those cells develop. The study from researchers at the USC Dornsife College of Letters, Arts and Sciences was published in the journal Development on Dec

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Researchers uncover new details behind inflammation that promotes heart disease – EurekAlert

BOSTON High cholesterol and inflammation are key drivers of heart disease, and an inflamed buildup of lipids can cut off the blood supply through a coronary artery to cause a heart attack. Because white blood cells, which usually defend against infection, trigger inflammation in these situations, a team led by scientists at Massachusetts General Hospital (MGH) recently studied aspects related to the cells production

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Epithelial Cell Culture Media Market to hit US$ 303040.33 thousand by 2028, at 11.4% CAGR: The Insight Partners – Digital Journal

The epithelial cell culture media market is expected to reach US$ 303,040.33 thousand by 2028 from US$ 128,155.95 thousand in 2020; it is estimated to grow at a CAGR of 11.4% from 2021 to 2028. According The Insight Partners study on Epithelial Cell Culture Media Market Forecast to 2028 COVID-19 Impact and Global Analysis by Product Type, End User, The report highlights trends existing in the market, and drivers and hindrances pertaining to the market growth.

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Global Regenerative Medicine Market is Expected to Reach USD 57.08 Billion by 2027, Growing at a CAGR of 11.27% Over the Forecast Period. -…

DUBLIN--(BUSINESS WIRE)--The "Global Regenerative Medicine Market Size, Share & Trends Analysis Report by Product (Cell-based Immunotherapies, Gene Therapies), by Therapeutic Category (Cardiovascular, Oncology), and Segment Forecasts, 2021-2027" report has been added to ResearchAndMarkets.com's offering. The global regenerative medicine market size is expected to reach USD 57.08 billion by 2027, growing at a CAGR of 11.27% over the forecast period

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Communication between cells plays a major role in deciding their fate > News > USC Dornsife – USC Dornsife College of Letters, Arts and Sciences

Findings from a new study could point the way to new treatments for blood diseases including cancers such as leukemia and lymphoma. [3 min read] In this schematic, cells (black spheres) within each well are committed to a specific fate, but external stimuli, such as cell-to-cell communication, can force cells out of one state and into another.

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Emendo Biotherapeutics and Seattle Childrens Research Institute Announce Collaboration to Develop CRISPR-based Therapeutic Strategy for Severe…

Collaboration formed to conduct preliminary research to inform protocol development ahead of gene editing clinical trial NEW YORK & SEATTLE, December 22, 2021--(BUSINESS WIRE)--Emendo Biotherapeutics, a next-generation CRISPR biotech expanding the reach of gene editing therapeutics, and Seattle Childrens Research Institute today announced a research collaboration to investigate how hematopoietic stem cells (HSCs) extracted from patients with severe congenital neutropenia (SCN) respond to priming treatments ahead of administering a CRISPR-based therapeutic. ELANE-related SCN, also known as SCN1, is a rare, autosomal dominant disease in which a mutation occurs in one allele of the ELANE gene, thereby preventing HSCs from differentiating into white blood cells, specifically neutrophils, which leaves the patient highly susceptible to recurrent bacterial infections, osteoporosis, developmental delays and abnormalities. "Patients with SCN often suffer from reduced quality of life due to the lack of improvements in the standard of care," said Dr

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