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Melatonin is a potential drug for the prevention of bone loss during space flight

机译:褪黑激素是预防太空飞行期间骨质流失的潜在药物

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摘要

Astronauts experience osteoporosis‐like loss of bone mass because of microgravity conditions during space flight. To prevent bone loss, they need a riskless and antiresorptive drug. Melatonin is reported to suppress osteoclast function. However, no studies have examined the effects of melatonin on bone metabolism under microgravity conditions. We used goldfish scales as a bone model of coexisting osteoclasts and osteoblasts and demonstrated that mRNA expression level of acetylserotonin O‐methyltransferase, an enzyme essential for melatonin synthesis, decreased significantly under microgravity. During space flight, microgravity stimulated osteoclastic activity and significantly increased gene expression for osteoclast differentiation and activation. Melatonin treatment significantly stimulated Calcitonin (an osteoclast‐inhibiting hormone) mRNA expression and decreased the mRNA expression of receptor activator of nuclear factor κB ligand (a promoter of osteoclastogenesis), which coincided with suppressed gene expression levels for osteoclast functions. This is the first study to report the inhibitory effect of melatonin on osteoclastic activation by microgravity. We also observed a novel action pathway of melatonin on osteoclasts via an increase in CALCITONIN secretion. Melatonin could be the source of a potential novel drug to prevent bone loss during space flight.
机译:由于太空飞行中的微重力条件,宇航员会经历类似骨质疏松的骨质流失。为了防止骨质流失,他们需要一种无风险且抗吸收的药物。据报道,褪黑素可抑制破骨细胞功能。然而,没有研究检查褪黑激素在微重力条件下对骨骼代谢的影响。我们使用金鱼鳞片作为破骨细胞和成骨细胞共存的骨骼模型,并证明了乙酰5-羟色胺O-甲基转移酶(褪黑素合成所必需的一种酶)的mRNA表达水平在微重力作用下显着降低。在太空飞行期间,微重力刺激了破骨细胞的活性,并显着增加了破骨细胞分化和激活的基因表达。褪黑素治疗显着刺激了降钙素(一种破骨细胞抑制激素)的mRNA表达,并降低了核因子κB配体(破骨细胞生成的启动子)受体激活剂的mRNA表达,这与抑制破骨细胞功能的基因表达水平相吻合。这是第一个报道褪黑激素通过微重力抑制破骨细胞活化的研究。我们还观察到褪黑激素通过降钙素分泌的增加对破骨细胞的新作用途径。褪黑激素可能是防止太空飞行期间骨质流失的潜在新药来源。

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