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tag politics art genomics innovation

Illustration showing a puzzle piece of DNA being removed
Large Scientific Collaborations Aim to Complete Human Genome
Brianna Chrisman and Jordan Eizenga | Sep 1, 2022 | 10+ min read
Thirty years out from the start of the Human Genome Project, researchers have finally finished sequencing the full 3 billion bases of a person’s genetic code. But even a complete reference genome has its shortcomings.
Top 10 Innovations 2016
The Scientist | Dec 1, 2016 | 10+ min read
This year’s list of winners celebrates both large leaps and small (but important) steps in life science technology.
A fruit bat in the hands of a researcher
How an Early Warning Radar Could Prevent Future Pandemics
Amos Zeeberg, Undark | Feb 27, 2023 | 8 min read
Metagenomic sequencing can help detect unknown pathogens, but its widespread use faces challenges.
Genome Investigator Craig Venter Reflects On Turbulent Past And Future Ambitions
Karen Young Kreeger | Jul 23, 1995 | 8 min read
And Future Ambitions Editor's Note: For the past four years, former National Institutes of Health researcher J. Craig Venter has been a major figure in the turbulent debates and scientific discoveries surrounding the study of genes and genomes. Events heated up in 1991, when NIH attempted to patent gene fragments, which were isolated using Venter's expressed sequence tag (EST)/complementary DNA (cDNA) approach for discovering human genes (M.A. Adams et al., Science, 252:1651-6, 1991). NIH's mo
The Genome Project Holds Promise, But We Must Look Before We Leap
Joshua Lederberg | Mar 19, 1989 | 3 min read
To an ever-increasing degree, explanation in biology is reduced to art expression in the language of DNA sequences. At least, a necessary condition for the interpretation of many problems in evolution, genetics, virology, immunology teratology, or cancer is the elucidation of a message in the well-known ATGC alphabet. Furthermore, the power of biotechnology rests on manufacturing blueprints of the same ilk. To a degree " unprecedented in biological history, we can describe the agenda for much
Supplement: Turning Tobacco into Therapies
Jeffrey M. Perkel | Jan 1, 2008 | 6 min read
Turning Tobacco into Therapies By Jeffrey M. Perkel RELATED ARTICLES Innovative Technology Daniel Skovronsky: Scientist and leader Biofuel: The Potential Magic Bullet Britton Chance: Still searching for answers Art Caplan: Penn's renowned ethicist Technology Roundup The Delaware Technology Park in Newark just may be the site of the next revolution. There, in a two-story building aptly named "9 Innovation Way," the Fraunhofer USA Center for Mo
One Step Beyond: Going Beyond Genomics With Proteomics And Two-Dimensional Gel Technology
Laura Defrancesco | Jan 3, 1999 | 10+ min read
Proteomes and 2D Gel Apparatus Providers Big science has moved on to proteins. With the new brand of science termed proteomics--named by the Australians Marc Wilkins and Keith Williams to mean the "set of PROTEins encoded by the genOME"--the push is on around the globe to produce a complete description of a cell/tissue/organism in terms of the proteins produced. The challenge is all the greater because the expressed protein pattern changes with time and environment--responding to developmenta
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.
A Living Legacy
Megan Scudellari | Jan 13, 2010 | 10 min read
A Living Legacy At the birthplace of stem cell research, the next generation of scientists continues to advance the field. By Megan Scudellari In Toronto’s downtown Discovery District, world-class stem cell researchers populate the buildings like athletes at the Olympics. On University Avenue, Andras Nagy, a renowned innovator in induced pluripotent stem (iPS) cells, works at the Samuel Lunenfeld Research Institute, housed within the towering Mount Sin
Fishing In A Molecular Sea
Alison Paladichuk | Jan 17, 1999 | 10+ min read
Date: January 18, 1999Labeling Kit Companies Labeling Kit Companies: Details In situ spatial localization of mRNA expressed only after ethylene treatment (left) compared to air grown seedlings used as a negative control (right). The RNA probe to the EIA0305 gene was labeled with fluorescein (NEL633) and visualized with NBT (Image courtesy of New England Nuclear) Remember the days when fishing for a sequence in the E. coli genome seemed like an overwhelming task? Somewhere along the way, it see

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