Safety Critical System








Home INTRODUCTION HOW CANCER DEVELOPS Safety Systems Fail Proto-Oncogenes Become Oncogenes Tumor Suppressor Genes Stop Working Cell Cycle Clock Malfunctions Cells Achieve Immortality Cells Break Free and Spread Tumor Forms Tumors Spread CAUSES OF CANCER Carcinogens Tobacco Smoke Diet Pathogens Radiation Environmental and Occupational Chemicals Hereditary Factors Steroid Hormones Population Demographics TYPES OF CANCER Prostate Cancer Breast Cancer Lung Cancer Colorectal Cancer Lymphoma Bladder Cancer Uterine Cancer Skin Cancer Kidney Cancer Leukemia Pancreatic Cancer Ovarian Cancer Stomach Cancer Bone Cancer Cervical Cancer Blood Cancer DIAGNOSIS Detection Staging TREATMENT Surgery Radiation Therapy Chemotherapy Hormone Therapy Immunotherapy PREVENTION Lifestyle Changes Screening and Early Detection CANCER RESEARCH Clinical Trials Basic Research TROPIC OF CANCER Polyp (Tumor) Ketoconazole Home

HEALTH EDUCATION PROGRAMS
Health safety system

 While each human cell performs its own specialized function, it also exerts influence on the cells around it. Cells communicate with one another via receptors, protein molecules on the cell surface. A cell releases chemical messages, which fit into the surface receptors of cells nearby, much as a key fits into a lock. A cell may instruct other cells in its neighborhood to divide, for example, by releasing a growth-promoting signal, or growth factor. The growth factor binds to receptors on adjacent cells, activating a message within each individual cell. This message travels to the nucleus, where a cell’s genes are located.


Health safety system - Safety Critical System


 Cancer begins in the genes, segments of the long, coiled molecule known as deoxyribonucleic acid (DNA). Genes govern the body’s development and specific characteristics by providing critical instructions that trigger the production of proteins within the body. In cancer, certain genes fail to perform their jobs correctly. This computer-generated model shows two strands of deoxyribonucleic acid (DNA) and its double-helical structure.

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