The Existence of Mycobacterium tuberculosis in Microenvironment of Bone

R. Jabir, Andriansjah Rukmana, Ifran Saleh, T. Kurniawati
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引用次数: 5

Abstract

Mycobacterium tuberculosis is an obligate aerobe bacteria requiring oxygen in its metabolism. In normal condition, bones have pH of 6.9–7.4 and temperature of 37°C. With the composition mentioned, bones fall in the group of tissue with less rich oxygen (<35%) which theoretically means, M. tuberculosis is hard to grow in the bone environment. Bone microliving environment is formed by the cells constructing the bone itself and the active cells which periodically interact with the bone cells. Activation of these cells gives impact to the temperature, pH, gas concentration, and liquid concentration, and at the same time triggers calcium, phosphor, and other minerals to be deposited in the bone. In the process of new bone formation, the osteoblast cells produce matrix and release them to the microenvironment that needs a high concentration of calcium and phosphor. The survival of M. tuberculosis in the microenvironment of bone is reflected in interaction of the bacteria and the non-immune cells, the bacteria and the organic environment, and the bacteria and the inorganic environment. In addition, the immune system also threatens the survival of M. tuberculosis. The results of these interactions will affect the lives of bacteria and has an impact on the bone microenvironment.
骨微环境中结核分枝杆菌的存在
结核分枝杆菌是一种专性需氧细菌,在其代谢过程中需要氧气。正常情况下,骨骼的pH值为6.9-7.4,温度为37°C。根据上述成分,骨骼属于含氧量较低的组织组(<35%),理论上意味着结核分枝杆菌很难在骨骼环境中生长。骨微生活环境是由构成骨自身的细胞和与骨细胞周期性相互作用的活性细胞形成的。这些细胞的激活会对温度、pH值、气体浓度和液体浓度产生影响,同时触发钙、磷和其他矿物质沉积在骨骼中。在新骨形成过程中,成骨细胞产生基质并释放到需要高浓度钙和磷的微环境中。结核分枝杆菌在骨微环境中的生存表现为细菌与非免疫细胞、细菌与有机环境、细菌与无机环境的相互作用。此外,免疫系统也威胁到结核分枝杆菌的生存。这些相互作用的结果将影响细菌的生命,并对骨微环境产生影响。
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