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tag royal society culture developmental biology cell molecular biology immunology

Maximize In Vitro Culture Possibilities
Linda Raab | Oct 25, 1998 | 4 min read
From Redmond, et al., "Perfused transcapillary smooth muscle and endothelial cell co-culture--a novel in vitro model," In Vitro Cellular & Developmental Biology--Animal, Volume 31:601-609. Copyright 1995 by the Society for In Vitro Biology. Reproduced with permission of the copyright owner. The Cellmax™ culture system uses hollow fiber bioreactor technology in applications as diverse as secreted protein production, lymphocyte expansion, and cellular co-cultivation. The concept of
Guts and Glory
Anna Azvolinsky | Apr 1, 2016 | 9 min read
An open mind and collaborative spirit have taken Hans Clevers on a journey from medicine to developmental biology, gastroenterology, cancer, and stem cells.
SinoBiological Red Logo
Sino Biological Announces Successful Closing of 4.98 Billion RMB Public Offering and Listing on the Shenzhen ChiNext Stock Exchange
Sino Biological | Aug 17, 2021 | 2 min read
Sino Biological, Inc. (“Sino Biological” or the “Company”), a biotechnology company which provides biological research reagents and related technical contract research services, announced a successful listing on the Shenzhen Stock Exchange subsidiary ChiNext under the stock abbreviation Sino Biological and stock code 301047. A total of 17 million shares were issued for a total of 4.98 billion RMB raised during this initial public offering.
Philip Leder, Who Deciphered Amino Acid Sequences, Dies
Ashley Yeager | Feb 12, 2020 | 4 min read
The Harvard Medical School researcher’s work on the genetic basis of protein coding and production led him to make groundbreaking discoveries in immunology, molecular biology, and cancer genetics.
The Genetics of Society
Claire Asher and Seirian Sumner | Jan 1, 2015 | 10 min read
Researchers aim to unravel the molecular mechanisms by which a single genotype gives rise to diverse castes in eusocial organisms.
A Summing Up, and a Look Ahead, in Biology
Patrick Wigge | Jun 11, 2000 | 5 min read
Illustration: A. Canamucio Biology today, though uncovering more and more knowledge at an amazingly rapid rate, is more specialized, fragmented, and incomprehensible to the layperson than ever. Part of this is inevitable, due to the rapid expansion of knowledge brought about by the great advances of molecular techniques. However, disciplinary boundaries are also part of the problem. Could we not try to overcome such obstacles and integrate some of the many strands of knowledge, to see what we mi
An illustration of flowers in the shape of the female reproductive tract
Uterus Transplants Hit the Clinic
Jef Akst | Aug 1, 2021 | 10+ min read
With human research trials resulting in dozens of successful deliveries in the US and abroad, doctors move toward offering the surgery clinically, while working to learn all they can about uterine and transplant biology from the still-rare procedure.
The AIDS Research Evaluators
Lynn Gambale | Jul 9, 1995 | 6 min read
Chairman: Arnold Levine, chairman, department of molecular biology, Princeton University Barry Bloom, Weinstock Professor and Howard Hughes Medical Institute (HHMI) investigator, department of microbiology and immunology, Albert Einstein College of Medicine, New York Rebecca Buckley, professor of pediatrics and immunology, Duke University Medical Center Charles Carpenter, chairman, Office of AIDS Research Advisory Committee; professor of medicine,Brown University School of Medicine Don
Master of the Cell
Judy Lieberman | Apr 1, 2010 | 10+ min read
By Judy Lieberman Master of the Cell RNA interference, with its powerful promise of therapy for many diseases, may also act as a master regulator of most—if not all—cellular processes. RNA silencing. Computer artwork showing a length of RNA (yellow with red rings) bound to an RNA-induced silencing complex (RISC). © Medi-Mation Ltd / Photo Researchers, Inc. ne of the biggest surprises in biology in the past d
Rethinking Lymphatic Development
Amanda B. Keener | Aug 1, 2015 | 9 min read
Four studies identify alternative origins for cells of the developing lymphatic system, challenging the long-standing view that they all come from veins.

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