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Showing posts with label Autoimmunity. Show all posts
Showing posts with label Autoimmunity. Show all posts
Saturday, 6 January 2018
Gene therapy for type 1 diabetes
Type 1 diabetes is a chronic disease in which the immune system attacks and destroys insulin-producing beta cells in the pancreas, resulting in high blood levels of glucose. A gene therapy approach can lead to the long-term survival of functional beta cells as well as normal blood glucose levels for an extended period of time in mice with diabetes. The researchers used an adeno-associated viral (AAV) vector to deliver to the mouse pancreas two proteins, Pdx1 and MafA, which reprogrammed plentiful alpha cells into functional, insulin-producing beta cells.
A clinical trial in both type 1 and type 2 diabetics in the immediate foreseeable future is quite realistic, given the impressive nature of the reversal of the diabetes, along with the feasibility in patients to do AAV gene therapy. Approximately 9% of the world's adult population has diabetes, which can cause serious health problems such as heart disease, nerve damage, eye problems, and kidney disease.
One fundamental goal of diabetes treatment is to preserve and restore functional beta cells, thereby replenishing levels of a hormone called insulin, which moves blood glucose into cells to fuel their energy needs. But in patients with type 1 diabetes, beta-cell replacement therapy is likely doomed to failure because the new cells might fall victim to the same autoimmunity that destroyed the original cells.
A potential solution to this problem is to reprogram other cell types into functional beta-like cells, which can produce insulin but are distinct from beta cells and therefore are not recognized or attacked by the immune system. To explore the feasibility of this approach, Gittes and first author Xiangwei Xiao of the University of Pittsburgh School of Medicine engineered an AAV vector to deliver to the mouse pancreas proteins called Pdx1 and MafA, which support beta cell maturation, proliferation, and function.
The goal was to generate functional beta-like cells from pancreatic alpha cells, which may be the ideal source for beta cell replacement. For example, alpha cells are plentiful, resemble beta cells, and are in the correct location, all of which could facilitate reprogramming.
By comparing the gene expression patterns of normal beta cells and insulin-producing cells derived from alpha cells, the researchers confirmed nearly complete cellular reprogramming. This gene therapy approach restored normal blood glucose levels in diabetic mice for an extended period of time, typically around four months, and the new insulin-producing cells derived almost exclusively from alpha cells. Moreover, the strategy successfully generated functional insulin-producing cells from human alpha cells.
The viral gene therapy appears to create these new insulin-producing cells that are relatively resistant to an autoimmune attack. This resistance appears to be due to the fact that these new cells are slightly different from normal insulin cells, but not so different that they do not function well. Several features of this approach could facilitate translation to humans. For one, AAV vectors like those used in this study are currently undergoing various gene therapy trials in humans.
Moreover, the viral vectors can be delivered directly to the human pancreas through a routinely performed non-surgical endoscopic procedure; however, this procedure can elicit pancreatic inflammation. In addition, no immunosuppression is required, so patients would avoid related side effects such as an increased risk of infection. However, one major concern was that the mice did eventually return to the diabetic state, suggesting that this treatment would not represent a definitive cure for the disease.
haleplushearty.blogspot.com
Wednesday, 30 August 2017
Cyltezo for chronic inflammatory diseases
Cyltezo is for the treatment of multiple chronic inflammatory diseases, including: moderate to severe active rheumatoid arthritis, moderate to severe polyarticular juvenile idiopathic arthritis, active psoriatic arthritis, active ankylosing spondylitis, moderate to severe active adult Crohn’s disease,
moderate to severe active ulcerative colitis and moderate to severe plaque psoriasis
Patients treated with adalimumab products, including Cyltezo, are at increased risk for developing serious infections that may lead to hospitalization or death.
Invasive fungal infections, including histoplasmosis, coccidioidomycosis, candidiasis, aspergillosis, blastomycosis, and pneumocystosis. Patients with histoplasmosis or other invasive fungal infections may present with disseminated, rather than localized, disease.
Antigen and antibody testing for histoplasmosis may be negative in some patients with active infection. Consider empiric anti-fungal therapy in patients at risk for invasive fungal infections who develop severe systemic illness.
Do not start Cyltezo during an active infection, including localized infections.
Patients older than 65 years, patients with co-morbid conditions and patients taking concomitant immunosuppressants may be at greater risk of infection.
Cyltezo for patients with these disorders; discontinuation of Cyltezo should be considered if any of these disorders develop.
Hematological Reactions
Congestive Heart Failure
Autoimmunity
Patients on Cyltezo should not receive live vaccines.
haleplushearty.blogspot.com
Wednesday, 5 April 2017
Omega-3s may serve as therapy for type 1 diabetes
People with type 1 diabetes depend on insulin to replace what the body cannot produce, new research discovered that omega-3 fatty acids can reduce autoimmune responses of the disease.
Omega-3 fatty acids can stop inflammatory process in the body, this process can stop or prevent autoimmune diseases.
Non-obese diabetic mice were used for an experiment, omega-3 was increased in their diet and were tested every 3 months to detect glucose and insulin tolerance.
The researchers examined the pancreas of the mice for insulitis, they discovered that adding omega-3 to the diet of mice improved glucose metabolism and control blood sugar and insulin for 182 days and prevents autoimmunity.
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