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The Human Genome
Arielle Emmett | Jul 23, 2000 | 10+ min read
Life sciences took center stage virtually around the world June 26. President Bill Clinton, flanked on the left by Celera Genomics Group president J. Craig Venter and on the right by National Human Genome Research Institute director Francis S. Collins, announced the completion of "the first survey of the entire human genome."
Top 10 Innovations 2021
2021 Top 10 Innovations
The Scientist | Dec 1, 2021 | 10+ min read
The COVID-19 pandemic is still with us. Biomedical innovation has rallied to address that pressing concern while continuing to tackle broader research challenges.
Deviations From The Norm: Systems For Mutation Detection Reveal Hidden Potentials
Kailash Gupta | Jul 18, 1999 | 10+ min read
Date: July 19, 1999Mutation Detection Systems and Methods Affymetrix's p53 chip Researchers leading the Human Genome Project (HGP) originally envisioned completion of the entire genome sequence (approximately 3 billion base pairs) by the year 2005. Recently the arena of human genome sequencing has seen a lot of heat generated by the entry of both commercial entrepreneurs and public consortia. Celera, a company formed by highly skilled and competent commercial organizations (TIGR and Perkin-Elm
Chromosome 21 Reveals Sparse Gene Content
Ricki Lewis | Jun 11, 2000 | 8 min read
The unveiling of the DNA sequences of human chromosomes represents a new chapter in the unfolding story of genomics, but one with roots in the half-century-old field of cytogenetics. Chromosome-level looks can reveal the specific genes behind certain traits and disorders while providing information on genome organization. The diminutive chromosome 21--the smallest of the human contingent, despite its number as next to last--is the fourth to be described. Its debut in mid-May attracted attentio
2018 Top 10 Innovations
The Scientist | Dec 1, 2018 | 10+ min read
Biology happens on many levels, from ecosystems to electron transport chains. These tools may help spur discoveries at all of life's scales.
Targeting Antibiotic-Resistant Bacteria with CRISPR and Phages
Anna Azvolinsky | May 18, 2015 | 3 min read
Researchers develop a CRISPR-based, two-phage system that sensitizes resistant bacteria to antibiotics and selectively kills any remaining drug-resistant bugs. 
GM Crops Face Heat Of Debate
Ricki Lewis | Oct 10, 1999 | 10+ min read
For a successful technologyReality must take precedence over public relations, for nature cannot be fooled. --Richard Feynman Nobel physicist Richard Feynman was talking about the role NASA and its industrial partners played in the 1986 Challenger disaster, but his words could easily apply to the debate over genetically modified (GM) crops. When grain processor Archer Daniels Midland (ADM) of Decatur, Ill., asked suppliers on Sept. 2 to segregate GM corn from traditional varieties, some U.S. b
How Well Do Mice Model Humans?
Ricki Lewis | Oct 25, 1998 | 8 min read
STRIKING RESEMBLANCE: James Croom, who studies Down syndrome mice at North Carolina State University, says the animals are providing valuable information useful to humans. When a page-one article in the May 3, 1998, Sunday New York Times portrayed angiogenesis inhibitors that fight cancer in mice as being possible just around the corner for humans, criticism for raising false hopes erupted. Merely 10 weeks later, however, when researchers from the University of Hawaii reported cloning the fi
60 Members Elected to NAS
Barry Palevitz | Jun 25, 2000 | 6 min read
Editor's Note: On May 2, the National Academy of Sciences announced the election of 60 new members and 15 foreign associates from nine countries in recognition of their distinguished and continuing achievements in original research. Nearly half of the new members are life scientists. In this article, The Scientist presents photographs of some of the new members and comments from a few of them on their careers and on past and current research. A full directory of NAS members can be found online a
Assays Galore
Lanette Fee | Sep 21, 2003 | 9 min read
Courtesy of BD Biosciences Pharmingen  COLOR CODING: Multiplexed bead-based assays, like BD Biosciences' Cytometric Bead Array (shown), test for multiple analytes in a single vial. The key is in the colors: one hue indicates the bead ID, and the intensity of the second, how much protein has been captured. In today's fast-paced research environment, technologies for speedy, cost-efficient analyses reign supreme. As part of this general trend, techniques for multiplexing, that is, simultan

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