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Georgia Esoteric and Molecular Laboratory at Augusta


Georgia Esoteric and Molecular Laboratory at Augusta University Now Offers Diagnostic Service for Constitutional Genetic Disorders based on Optical Genome Mapping with Bionano’s Saphyr System
May 03, 2021 08:00 ET
| Source:
Bionano Genomics
Bionano Genomics
San Diego, California, UNITED STATES
SAN DIEGO, May 03, 2021 (GLOBE NEWSWIRE) Bionano Genomics, Inc. (Nasdaq: BNGO), announced today that the Georgia Esoteric and Molecular (GEM) Laboratory at the Medical College of Georgia (MCG) at Augusta University is now offering diagnostic services for constitutional genetic disorders through a laboratory-developed test (LDT) based on optical genome mapping (OGM) with the Saphyr® System. The LDT developed by Dr. Ravindra Kolhe and his team is designed for pediatric patients suspected to have a neurodevelopmental genetic disorder. Dr. Kolhe is developing additional OGM-based LDTs for prenatal genetic disorders an ....

United States , Erik Holmlin , Bionano Saphyr , Amy Conrad , Ravindra Kolhe , Company Contact , College Of Georgia , Bionano Genomics Inc , University Of Iowa Hospitals , Exchange Commission , Augusta University , Georgia Esoteric , Medical College , Bionano Genomics , Perkinelmer Genomics , Iowa Hospitals , Private Securities Litigation Reform Act , Annual Report , ஒன்றுபட்டது மாநிலங்களில் , ஆமி கான்ராட் , ரவின்ற கொள்ே , நிறுவனம் தொடர்பு , கல்லூரி ஆஃப் ஜார்ஜியா , பல்கலைக்கழகம் ஆஃப் ஐயுவா மருத்துவமனைகள் , பரிமாற்றம் தரகு , அகஸ்டா பல்கலைக்கழகம் ,

High expression of cell death genes may increase risk of early death from lung cancer


High expression of cell death genes may increase risk of early death from lung cancer
Patients with a high number of genes most associated with pathways that lead to cell death in lung cancer are at increased risk of dying early from their disease, researchers report.
Also seemingly paradoxically, patients with high expression of this 21-gene cell death signature the researchers have identified, have indicators that their immune system is attacking the cancer, like higher levels of cytotoxic T cells, which typically kill cancer.
But they also have high levels of molecules that can suppress those T cells, helping transform them into dysfunctional, exhausted T cells, they report in the journal ....

United States , Ravindra Kolhe , Emily Henderson , Centers For Disease , National Cancer Institute , National Human Genome Research Institute , Drug Administration , Cancer Research Institute , College Of Georgia Department Pathology , Georgia Esoteric , Medical College , Georgia Department , Cancer Genome Atlas , National Human Genome Research , Disease Control , Cancer Research , Cell Death , Lung Cancer , Immune System , Pd L1 , ஒன்றுபட்டது மாநிலங்களில் , ரவின்ற கொள்ே , எமிலி ஹென்டர்சன் , மையங்கள் க்கு நோய் , தேசிய புற்றுநோய் நிறுவனம் , தேசிய மனிதன் மரபணு ஆராய்ச்சி நிறுவனம் ,