生物
计算生物学
生化工程
线粒体
生物技术
行动方式
生物信息学
氧化磷酸化
代谢途径
神经科学
代谢组学
生物化学
生长激素
自然(考古学)
激素
化学
作者
Gyumin Kang,Su Bin Lee,Minseong Kim,Guangpeng Xu,Ke Ding,Jianheng Shen,Ji Youn Hong,M Foster Reaney,Jae Kyeom Kim,Yong Wook Kim,Youn Young Shim
标识
DOI:10.1080/10408398.2026.2681928
摘要
This is the first comprehensive review to systematically evaluate the entire family of natural alpha-glycerylphosphoryl derivatives (α-NGPs), redefining them as essential bioactive metabolites with critical impacts on neurocognition, membrane homeostasis, and mitochondrial dynamics. While α-glycerylphosphorylcholine (α-GPC) is widely studied for amplifying cholinergic neurotransmission and post-exercise growth hormone secretion, the physiological contributions of its structural analogs (α-GPA, α-GPE, α-GPI, and α-GPS) remain severely overlooked. We elucidate their interconnected biosynthetic pathways, highlighting synergistic benefits like the cooperative action of α-GPC and α-GPS in neuroprotection. Critically, we address an oxidative paradox where supraphysiological α-GPC intake induces localized stress, proposing a hypothetical mechanistic model in which α-GPA potentially neutralizes these adverse effects by inhibiting Drp1-mediated mitochondrial fission. To overcome severe analytical bottlenecks in quantifying trace α-NGPs, we advocate integrating multidimensional NMR, HRMS, FTIR, and HPLC. Furthermore, we highlight a commercial paradigm shift toward zero-waste, sustainable α-GPC production by valorizing fermentation by-products within a circular bioeconomy. Ultimately, exploiting the synergistic interplay among these metabolites necessitates a transition from single-molecule supplementation to multi-lipid strategies. Standardizing nomenclature and expanding rigorous analytical profiling are critical to fully harness the therapeutic potential of α-NGPs against neurodegeneration, metabolic dysfunction, and aging-related decline.
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