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Bilirubin Chemistry and Metabolism; Harmful and Protective Aspects

机译:胆红素化学与代谢;有害和保护方面

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Unconjugated bilirubin (UCB), the principal mammalian bile pigment, is the end product of heme catabolism. Both belong to the superfamily of tetrapyrrolic compounds that serve multiple biological functions in animals and plants. Its six internal hydrogen bonds give UCB a unique structure responsible for its physico-chemical properties and biological effects. Like many weakly-polar, poorly-soluble compounds, UCB is transported in blood tightly bound to albumin, with less than 0.01% of total bilirubin circulating in an unbound form (free bilirubin, Bf). This fraction governs the diffusion of UCB into tissues, and therefore Bf is responsible for both its beneficial and toxic effects on cells. Although, UCB was long thought to be a non-functional waste product, recent studies have shown that the antioxidant effects of mildly elevated serum bilirubin levels, as well as activation of heme oxygenase, may protect against diseases associated with oxidative stress, such as atherosclerosis. By contrast, markedly elevated serum UCB levels may cause severe neurological damage, especially in neonates. The regulation of cellular UCB content, by its conjugation, oxidation, and export, are, therefore of paramount importance to cellular health.
机译:非结合胆红素(UCB)是主要的哺乳动物胆汁色素,是血红素分解代谢的最终产物。两者都属于四吡咯化合物的超家族,其在动植物中具有多种生物学功能。它的六个内部氢键赋予UCB独特的结构,这是其物理化学性质和生物学效应的原因。像许多弱极性,难溶性化合物一样,UCB在血液中运输时与白蛋白紧密结合,少于0.01%的总胆红素以未结合形式(游离胆红素,Bf)循环。该部分控制着UCB向组织的扩散,因此Bf对其对细胞的有益和毒性作用负责。尽管长期以来人们一直认为UCB是一种无功能的废物,但最近的研究表明,血清胆红素水平轻度升高的抗氧化作用以及血红素加氧酶的活化可预防与氧化应激相关的疾病,例如动脉粥样硬化。相反,血清UCB水平明显升高可能会导致严重的神经系统损害,尤其是在新生儿中。因此,通过细胞的UCB含量的缀合,氧化和输出来进行调节,对细胞健康至关重要。

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