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2022 Top 10 Innovations 
2022 Top 10 Innovations
The Scientist | Dec 12, 2022 | 10+ min read
This year’s crop of winning products features many with a clinical focus and others that represent significant advances in sequencing, single-cell analysis, and more.
Opinion: Talking Genomics
Trevor Quirk | Nov 13, 2012 | 5 min read
The crucial importance of language in the debate over the regulation of direct-to-consumer genetic tests
Different colored cartoon viruses entering holes in a cartoon of a human brain.
A Journey Into the Brain
Danielle Gerhard, PhD | Mar 22, 2024 | 10+ min read
With the help of directed evolution, scientists inch closer to developing viral vectors that can cross the human blood-brain barrier to deliver gene therapy.
Book Excerpt from Redesigning Life
John Parrington | Nov 30, 2016 | 4 min read
In Chapter 8, author John Parrington explores the intersection of precision genome editing and stem cell technologies.
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.
Genetic Parasites and a Whole Lot More
Barry Palevitz | Oct 15, 2000 | 10+ min read
Photo: Ori Fragman, Hebrew University Hordeum spontaneum, the plant studied for BARE-1 retroelements. With genome sequences arriving almost as regularly as the morning paper, the public's attention is focused on genes--new genes to protect crops against pests; rogue genes that make bacteria resistant to antibiotics; faulty genes that, if fixed, could cure diseases such as muscular dystrophy. What many people don't realize is that genes account for only part of an organism's DNA, and in many c
Preimplantation Genetic Diagnosis: The Next Big Thing?
Ricki Lewis | Nov 12, 2000 | 9 min read
Courtesy of David Hill, ART Reproductive Center Inc.Two separated blastomeres subjected to FISH analysis to check the chromosomes. In early October, preimplantation genetic diagnosis (PGD) made headlines when a Colorado couple used assisted reproductive technology (ART) to have a baby named Adam, whose umbilical cord stem cells could cure his six-year-old sister Molly's Fanconi anemia.1 When Adam Nash was a ball of blastomere cells, researchers at the Reproductive Genetics Institute at Illinois
Notebook
The Scientist Staff | Feb 1, 1999 | 6 min read
BARKING UP THE SAME TREE Ralston Purina announced Jan. 12 an initiative to unite efforts to map the dog genome, consolidating data and planning for more. Most markers accumulated so far hail from the Baker Institute at Cornell University. The linkage map, currently consisting of about 400 markers, provides signposts along the 78 chromosomes to direct sequencing efforts. At the heart of the project are blood samples from 16 multigenerational canine families. The dog genome hardly reflects natu
Biotech Faces Evolving Patent System
Douglas Steinberg | Mar 5, 2000 | 8 min read
Like medieval alchemists, modern biologists apply intricate, esoteric protocols to lowly matter, such as bacteria and rodents. Unlike alchemists, biologists successfully transmute these creatures into gold--disease-fighting pharmaceuticals and profits accruing from them. An indispensable ingredient in this dross-to-drug process is patent protection, which preserves monopoly and attracts investment. Unfortunately, the patent system isn't as ideal a catalyst as the chimerical philosopher's stone s
Cloning Capsized?
Ted Agres | Aug 19, 2001 | 10+ min read
Biopharmaceutical researchers fear how pending federal legislation outlawing the cloning of human cells will restrict their abilities to find cures for major degenerative diseases.1,2 Some also see lawmakers impinging on established nonhuman cloning techniques essential for the discovery of new drugs and therapies. The source of all this worry? The US House of Representatives passed July 31 by a wide margin a bill (H.R. 2505) sponsored by Reps. David Weldon (R-Fla.) and Bart Stupak (D-Mich.) th

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