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L型氨基酸转运体1在血脑屏障中的多方面作用:结构意义与治疗潜力

The Multifaceted Role of L-Type Amino Acid Transporter 1 at the Blood-Brain Barrier: Structural Implications and Therapeutic Potential.

作者信息

Ahmed H Shafeeq

机构信息

Bangalore Medical College and Research Institute, Bangalore, 560002, Karnataka, India.

出版信息

Mol Neurobiol. 2025 Mar;62(3):3813-3832. doi: 10.1007/s12035-024-04506-9. Epub 2024 Sep 26.

Abstract

L-type amino acid transporter 1 (LAT1) is integral to the transport of large neutral amino acids across the blood-brain barrier (BBB), playing a crucial role in brain homeostasis and the delivery of therapeutic agents. This review explores the multifaceted role of LAT1 in neurological disorders, including its structural and functional aspects at the BBB. Studies using advanced BBB models, such as induced pluripotent stem cell (iPSC)-derived systems and quantitative proteomic analyses, have demonstrated LAT1's significant impact on drug permeability and transport efficiency. In Alzheimer's disease, LAT1-mediated delivery of anti-inflammatory and neuroprotective agents shows promise in overcoming BBB limitations. In Parkinson's disease, LAT1's role in transporting L-DOPA and other therapeutic agents highlights its potential in enhancing treatment efficacy. In phenylketonuria, studies have revealed polymorphisms and genetic variations of LAT1, which could be correlated to disease severity. Prodrugs of valproic acid, pregabalin, and gabapentin help use LAT1-mediated transport to increase the therapeutic activity and bioavailability of the prodrug in the brain. LAT1 has also been studied in neurodevelopment disorders like autism spectrum disorders and Rett syndrome, along with neuropsychiatric implications in depression. Its implications in neuro-oncology, especially in transporting therapeutic agents into cancer cells, show immense future potential. Phenotypes of LAT1 have also shown variations in the general population affecting their ability to respond to painkillers and anti-inflammatory drugs. Furthermore, LAT1-targeted approaches, such as functionalized nanoparticles and prodrugs, show promise in overcoming chemoresistance and enhancing drug delivery to the brain. The ongoing exploration of LAT1's structural characteristics and therapeutic applications reiterates its critical role in advancing treatments for neurological disorders.

摘要

L型氨基酸转运体1(LAT1)对于大型中性氨基酸跨血脑屏障(BBB)的转运至关重要,在脑稳态和治疗药物递送中发挥着关键作用。本综述探讨了LAT1在神经系统疾病中的多方面作用,包括其在血脑屏障处的结构和功能方面。使用先进的血脑屏障模型(如诱导多能干细胞(iPSC)衍生系统和定量蛋白质组学分析)的研究表明,LAT1对药物通透性和转运效率有重大影响。在阿尔茨海默病中,LAT1介导的抗炎和神经保护剂递送有望克服血脑屏障的限制。在帕金森病中,LAT1在转运左旋多巴和其他治疗药物中的作用突出了其在提高治疗效果方面的潜力。在苯丙酮尿症中,研究揭示了LAT1的多态性和基因变异,这可能与疾病严重程度相关。丙戊酸、普瑞巴林和加巴喷丁的前药有助于利用LAT1介导的转运来提高前药在脑中的治疗活性和生物利用度。LAT1也在自闭症谱系障碍和雷特综合征等神经发育障碍以及抑郁症的神经精神影响方面进行了研究。其在神经肿瘤学中的意义,特别是在将治疗药物转运到癌细胞中的作用,显示出巨大的未来潜力。LAT1的表型在普通人群中也表现出差异,影响他们对止痛药和抗炎药的反应能力。此外,靶向LAT1的方法,如功能化纳米颗粒和前药,有望克服化疗耐药性并增强药物向脑内的递送。对LAT1结构特征和治疗应用的持续探索重申了其在推进神经系统疾病治疗中的关键作用。

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