糖酵解调节维持血糖稳态

Karzan Salih, D. Sabir, H. Abdoul
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引用次数: 0

摘要

碳水化合物是生命细胞的主要能量来源,是绿色植物通过吸收太阳光,在光合作用过程中由二氧化碳和水合成的第一批细胞成分。作为能量的来源,碳水化合物需要在细胞内经历一系列的酶代谢阶段。除了产生能量外,碳水化合物的分解代谢为脂肪酸、氨基酸、DNA和RNA等生物分子的合成提供了不同的中间分子。在单糖的三个主要例子中(即葡萄糖、半乳糖和甘露糖),葡萄糖被认为是碳水化合物代谢的中心分子,碳水化合物代谢的所有主要途径都与葡萄糖有关。葡萄糖也是维持碳稳态的细胞代谢的重要组成部分。肝脏在监测和稳定血糖水平方面发挥着关键作用,因此,肝脏可以被认为是葡萄糖状态监测仪。本文就碳水化合物代谢的主要代谢途径、它们在细胞能量产生中的生化作用以及这些领域的最新研究进展作一综述。此外,我们还讨论了参与血糖浓度调节的因素。我们相信了解这些过程对于控制与碳水化合物相关的人类疾病至关重要。
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Glycolysis Regulation to Maintain Blood Glucose homeostasis
Carbohydrates are the major source of energy for the living cells, they  are the first cellular constituents that synthesized during photosynthesis from carbon dioxide and water by green plants through absorption of sun light. To be used as source of  energy,  carbohydrates  compounds should undergo series of enzymatic metabolic stages in the cell. Beside the energy productions, catabolism of carbohydrates provides different intermediates molecules for the synthesis of biomolecules like fatty acids, amino acids, DNA, and RNA. Among the three main examples  of monosaccharide (i.e: glucose, galactose, and mannose), glucose is considered as the central molecule in carbohydrate metabolism that all the major pathways of carbohydrate metabolism relate to it. Glucose is also an essential component of cellular metabolism in maintaining carbon homeostasis. Liver has shown to play a key role in monitoring and stabilizing blood glucose levels, therefore, it can be considered as glucostate monitor. In this article, we will review  the major metabolic pathways of carbohydrate metabolism, their biochemical role in cellular energy production, and latest development in the understanding in these fields. Also, we discuss about the factors that participate in regulation of blood glucose concentration. We believe understand these process is essential for control scarbohydrate-related human disorders.
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发文量
16
审稿时长
12 weeks
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