Gene therapy effective treatment against gum diseaseDecember 11, 2008ANN ARBOR, Mich.---Scientists at the University of Michigan have shown that gene therapy can be used to successfully stop the development of periodontal disease, the leading cause of tooth loss in adults. The findings will be published online Dec 11 in advance of print publication in Gene Therapy. Using gene transfer to treat life threatening conditions is not new, but the U-M group is the first known to use the gene delivery approach to show potential in treating chronic conditions such as periodontal disease, said William Giannobile, professor at the U-M School of Dentistry and principal investigator on the study. "Gene therapy has not been used in non-life threatening disease. (Periodontal disease) is more disabling than life threatening," said Giannobile, who also directs the Michigan Center for Oral Health Research and has an appointment in the U-M College of Engineering. "This is so important because the next wave of improving medical therapeutics goes beyond saving life, and moves forward to improving the quality of life." The preclinical study offers was a collaboration with the Seattle-based biotechnology company Targeted Genetics. In July, Targeted Genetics released human trial results that showed the same gene therapy approach used to stop periodontal disease had positive affects in human patients with rheumatoid arthritis, another chronic, non-life threatening, disabling condition. The company tested 127 human subjects and showed a 30 percent improvement in pain relief, and gain of function, among other enhancements using the gene treatment. People with rheumatoid arthritis are four times more likely to also be afflicted with periodontitis. Periodontal disease is also linked to systemic conditions such as heart disease, bacterial pneumonia and stroke, likely due to the spread of bacteria coming from the oral cavity that invade other parts of the body. Using gene therapy, Giannobile's group found a way to help certain cells using an inactivated virus to produce more of a naturally-produced molecule soluble TNF receptor. This factor is under-produced in patients with periodontitis. The molecule delivered by gene therapy works like a sponge to sop up excessive levels of tumor necrosis factor, a molecule known to worsen inflammatory bone destruction in patients afflicted with rheumatoid arthritis, joint deterioration and periodontitis. The gene also delivers quite a bit of genetic bang for the buck. The periodontal tissues were spared from destruction by more than 60-80 percent with the use of gene therapy. "If you deliver the gene into the target cells once, it keeps producing in the cells for a very long period of time or potentially for the life of the patient," Giannobile said. "This therapy is basically a single administration, but it could have potentially life-long treatment effects in patients who are at risk for severe disease activity." The next step is additional safety testing on periodontal patients, he said. University of Michigan |
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| Related Gene Therapy Current Events and Gene Therapy News Articles Research reveals lipids' unexpected role in triggering death of brain cells The lipid that accumulates in brain cells of individuals with an inherited enzyme disorder also drives the cell death that is a hallmark of the disease, according to new research led by St. Jude Children's Research Hospital investigators. No-entry zones for AIDS virus The AIDS virus inserts its genetic material into the genome of the infected cell. Scientists of the German Cancer Research Center have now shown for the first time that the virus almost entirely spares particular sites in the human genetic material in this process. This finding may be useful for developing new, specific AIDS drugs. Cornell researchers identify a weak link in cancer cell armor The seeming invincibility of cancerous tumors may be crumbling, thanks to a promising new gene therapy that eliminates the ability of certain cells to repair themselves. Treatment to improve degenerating muscle gains strength A study appearing in Science Translational Medicine puts scientists one step closer to clinical trials to test a gene delivery strategy to improve muscle mass and function in patients with certain degenerative muscle disorders. Iowa State University researcher discovers key to vital DNA, protein interaction A researcher at Iowa State University has discovered how a group of proteins from plant pathogenic bacteria interact with DNA in the plant cell, opening up the possibility for what the scientist calls a "cascade of advances." Scientists successfully reprogram blood cells Researchers have transplanted genetically modified hematopoietic stem cells into mice so that their developing red blood cells produce a critical lysosomal enzyme -preventing or reducing organ and central nervous system damage from the often-fatal genetic disorder Hurler's syndrome. Immune therapy can protect against or treat later lymphoma Specially developed immune system cells that target the common Epstein-Barr virus can protect immune-suppressed bone marrow transplant recipients against lymph system disease and cancers that arise from the viral infection. Caltech researchers show efficacy of gene therapy in mouse models of Huntington's disease Researchers at the California Institute of Technology (Caltech) have shown that a highly specific intrabody (an antibody fragment that works against a target inside a cell) is capable of stalling the development of Huntington's disease in a variety of mouse models. Immunotherapy demonstrates long-term success in treating lymphoma Targeted immunotherapy has been an attractive new therapeutic area for a number of cancers because it has the potential to destroy tumor cells without damaging surrounding normal tissue. New study results demonstrate high success rates using specialized white blood cells to prevent or treat lymphoma associated with the Epstein-Barr virus (EBV-lymphoma) in patients who have received a hematopoietic stem cell transplant (HSCT). Toward bold new anti-cancer medicines Bold new strategies in the battle against cancer may turn forms of the disease that presently are incurable into manageable conditions that can be controlled for long periods of time. More Gene Therapy Current Events and Gene Therapy News Articles |
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