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Category Archives: Gene therapy

DNA Drugs Come of Age (preview)

In a head-to-head competition held 10 years ago, scientists at the National Institutes of Health tested two promising new types of vaccine to see which might offer the strongest protection against one of the deadliest viruses on earth, the human immunodeficiency virus (HIV) that causes AIDS. One vaccine consisted of DNA rings called plasmids, each carrying a gene for one of five HIV proteins. Its goal was to get the recipient’s own cells to make the viral proteins in the hope they would provoke protective reactions by immune cells. Instead of plasmids, the second vaccine used another virus called an adenovirus as a carrier for a single HIV gene encoding a viral protein. The rationale for this combination was to employ a “safe” virus to catch the attention of immune cells while getting them to direct their responses against the HIV protein.

One of us (Weiner) had already been working on DNA vaccines for eight years and was hoping for a major demonstration of the plasmids’ ability to induce immunity against a dreaded pathogen. Instead the test results dealt a major blow to believers in this first generation of DNA vaccines. The DNA recipients displayed only weak immune responses to the five HIV proteins or no response at all, whereas recipients of the adenovirus-based vaccine had robust reactions. To academic and pharmaceutical company researchers, adenoviruses clearly looked like the stronger candidates to take forward in developing HIV vaccines.

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Immune system - National Institutes of Health - Vaccine - HIV - DNA

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Hair Trigger: How a Cell's Primary Cilium Functions as a Molecular Antenna

It turns out that not all the hairlike cilia projecting from the surfaces of many cells in the human body are equal--there are the myriad ones for sweeping, swimming and other functions, and then there is the until recently mysterious primary cilium.

Nearly all human cells contain these numerous microscopic projections. The more abundant variety of cilia are motile; they act like oars, paddling in coordinated waves to help propel cells through fluid, or to sweep material across cellular surfaces (as in the respiratory system, where millions of cilia lining the airways help to expel mucus, dead cells and other bodily debris). By contrast, cells also contain a single, nonmotile cilium known as the primary cilium. Its presence on cells has been known for more than a century, but many believed it was a functionless evolutionary remnant.

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Cell - Biology - Cell biology - Cilium - Human body

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Hair Trigger: How a Cell’s Primary Cilium Functions as a Molecular Antenna

It turns out that not all the hairlike cilia projecting from the surfaces of many cells in the human body are equal--there are the myriad ones for sweeping, swimming and other functions, and then there is the until recently mysterious primary cilium.

Nearly all human cells contain these numerous microscopic projections. The more abundant variety of cilia are motile; they act like oars, paddling in coordinated waves to help propel cells through fluid, or to sweep material across cellular surfaces (as in the respiratory system, where millions of cilia lining the airways help to expel mucus, dead cells and other bodily debris). By contrast, cells also contain a single, nonmotile cilium known as the primary cilium. Its presence on cells has been known for more than a century, but many believed it was a functionless evolutionary remnant.

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Cell - Biology - Cell biology - Cilium - Human body

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A genome story: 10th anniversary commentary by Francis Collins

For those of you who like stories with simple plots and tidy endings, I must confess the tale of the Human Genome Project isn't one of those. The story didn't reach its conclusion when we unveiled the first draft of the human genetic blueprint at the White House on June 26, 2000. Nor did it end on April 14, 2003, with the completion of a finished, reference sequence. [More]

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Human Genome Project - White House - Biology - genetic - Francis Collins

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Vaccines Derived from Patients' Tumor Cells Are Individualizing Cancer Treatment

The first discovery of a cancer gene marker--the BRAF oncogene for melanoma and colorectal malignancies--back in 2002 changed the way many researchers thought about cancer treatment. Rather than approach the disease based on what region of the body it stemmed from, scientists began to identify cancers in terms of their genetic signatures. Researchers now recognize more than 200 kinds of cancer--all genetically unique. [More]

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Cancer - Health - Conditions and Diseases - Colorectal cancer - Management of cancer

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Vaccines Derived from Patients’ Tumor Cells Are Individualizing Cancer Treatment

The first discovery of a cancer gene marker--the BRAF oncogene for melanoma and colorectal malignancies--back in 2002 changed the way many researchers thought about cancer treatment. Rather than approach the disease based on what region of the body it stemmed from, scientists began to identify cancers in terms of their genetic signatures. Researchers now recognize more than 200 kinds of cancer--all genetically unique. [More]

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Cancer - Health - Conditions and Diseases - Colorectal cancer - Management of cancer

Posted in Gene therapy | Comments Off on Vaccines Derived from Patients’ Tumor Cells Are Individualizing Cancer Treatment