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Is essential fatty acid interconversion an important source of PUFA in humans?

机译:必需脂肪酸互联是人类Pufa的重要来源吗?

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摘要

Humans can obtain pre-formed long-chain PUFA from the diet and are also able to convert essential fatty acids (EFA) to longer-chain PUFA. The metabolic pathway responsible for EFA interconversion involves alternating desaturation and carbon chain elongation reactions, and carbon chain shortening by peroxisomal β-oxidation. Studies using stable isotope tracers or diets supplemented with EFA show that capacity for PUFA synthesis is limited in humans, such that DHA (22 : 6n-3) synthesis in men is negligible. PUFA synthesis is higher in women of reproductive age compared with men. However, the magnitude of the contribution of hepatic PUFA synthesis to whole-body PUFA status remains unclear. A number of extra-hepatic tissues have been shown to synthesise PUFA or to express genes for enzymes involved in this pathway. The precise function of extra-hepatic PUFA synthesis is largely unknown, although in T lymphocytes PUFA synthesis is involved in the regulation of cell activation and proliferation. Local PUFA synthesis may also be important for spermatogenesis and fertility. One possible role of extra-hepatic PUFA synthesis is that it may provide PUFA in a timely manner to facilitate specific cell functions. If so, this may suggest novel insights into the effect of dietary PUFA and/or polymorphisms in genes involved in PUFA synthesis on health and tissue function.
机译:人类可以从饮食中获得预先形成的长链PUFA,也能够将基本脂肪酸(EFA)转化为长链PUFA。负责EFA互连的代谢途径涉及交替的去饱和和碳链伸长反应,并通过过氧异相体β-氧化缩短的碳链。使用稳定同位素示踪剂或补充有EFA的饮食的研究表明,PUFA合成的能力在人类中有限,因此男性的DHA(22:6N-3)合成可忽略不计。与男性相比,PUFA合成患者妇女较高。然而,肝PUFA合成对全身PUFA状态的贡献的大小仍不清楚。已经显示了许多肝脏组织来合成PUFA或表达参与该途径中酶的基因。肝脏脓毒症合成的精确功能在很大程度上是未知的,尽管在T淋巴细胞中,PUFA合成参与细胞活化和增殖的调节。局部PUFA合成也可能对精子发生和生育是重要的。肝外PUFA合成的一种可能作用是它可以及时提供PUFA,以便于特定的细胞功能。如果是这样,这可能表明新的洞察力对膳食PUFA和/或多态性在涉及健康和组织功能的基因中的膳食PUFA和/或多态性。

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