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tag pcr disease medicine evolution culture

Evolution, Resisted
Elie Dolgin | Oct 1, 2009 | 10+ min read
Scientists are trying to design the last malaria control agent the world will ever need.
Diseases by Design
Jennifer Fisher Wilson | Jun 1, 2003 | 6 min read
Jacob Halaska, ©Index Stock Imagery Researchers like mice. US government statistics reveal that the whiskered ones show up in 90% of all experiments. Mice come cheap, procreate often, and die fairly quickly. And although evolution separates mouse from human by an estimated 75 to 100 million years, biologically and genetically speaking, they share a lot; as much as 85% of the DNA in mice is the same in humans. The research ground that mice have domineered for a century, however, is reced
Illustration of viruses represented with different colors overlapping each other.
What Happens When You Catch More than One Virus?
Alejandra Manjarrez, PhD | Dec 7, 2022 | 8 min read
The “tripledemic” shines a spotlight on viral interference, in which one infection can block another.
PCR Primed To Spur Chain Of Applications
Holly Ahern | Jun 25, 1995 | 10+ min read
What would you do if your research interests revolved around obtaining DNA from a bacterium preserved for millions of years in the gut of a bee stuck in amber, matching up a murderer to crime- scene blood half a century old, or cloning genes from a 1,000- year-old mummy? Most scientists would first consider PCR--the polymerase chain reaction--as a technique for approaching problems such as these. With PCR, minute quantities of nucleic acids can be amplified millions of times into sufficient qua
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.
New Molecular Tools Enable Researchers To Correlate Viruses, Diseases
Karen Young Kreeger | Feb 4, 1996 | 7 min read
Viruses, Diseases Author: Karen Young Kreeger Sidebar: Professional Resources for Viral Disease Researchers In the mid- to late 1980s, numerous correlations were discovered between viruses and various types of cancers. For example, Epstein-Barr virus was associated with nasopharyngeal carcinoma and B-cell lymphoma, hepatitis B virus with liver cancer, and human papillomavirus with cervical cancer. Now, a decade later, basic and clinical scientists are finding out that viruses may also play a r
2020 Top 10 Innovations
The Scientist | Dec 1, 2020 | 10+ min read
From a rapid molecular test for COVID-19 to tools that can characterize the antibodies produced in the plasma of patients recovering from the disease, this year’s winners reflect the research community’s shared focus in a challenging year.
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.
The Chemistry of Attraction
Michelle Vettese-dadey | Mar 5, 2000 | 6 min read
Chemokines and their receptors help direct cell migration to sites of inflammation. You heard it here--chemokine receptors and ligands are in. Inflammation, cancer, asthma, rheumatoid arthritis, angiogenesis, and AIDS are just a few areas in which chemokines and their receptors are crucial. Therefore, chemokine pathways represent potentially valuable therapeutic targets. Asthma, one of the most common chronic diseases in the industrialized world, is recognized as an inflammatory disease, and ste
MMTV and Breast Cancer
Douglas Steinberg | Apr 16, 2000 | 7 min read
Virus-Disease Links Are Hard to Forge Researchers confront skepticism, conflicting results, limited funding By Douglas Steinberg If genomics is glitzy nowadays, virus research is, well, gritty. Its latest heyday, when HIV was shown to cause AIDS, only masked its true nature. Associating viruses with diseases has always been particularly difficult and labor intensive. Cause-and-effect relationships are maddeningly elusive.1 Consider the following two questions: Does infection by mouse mammary

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