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用于微调肠道激素分泌的智能控释脂质基纳米载体。

Smart control lipid-based nanocarriers for fine-tuning gut hormone secretion.

作者信息

Xu Yining, Michalowski Cécilia Bohns, Koehler Jackie, Darwish Tamana, Guccio Nunzio, Alcaino Constanza, Domingues Inês, Zhang Wunan, Marotti Valentina, Van Hul Matthias, Paone Paola, Koutsoviti Melitini, Boyd Ben J, Drucker Daniel J, Cani Patrice D, Reimann Frank, Gribble Fiona M, Beloqui Ana

机构信息

Louvain Drug Research Institute, Advanced Drug Delivery and Biomaterials, Université catholique de Louvain, 1200 Brussels, Belgium.

Department of Pharmacy, Institute of Metabolic Diseases and Pharmacotherapy, West China Hospital, Sichuan University, Chengdu 610041, China.

出版信息

Sci Adv. 2024 Dec 13;10(50):eadq9909. doi: 10.1126/sciadv.adq9909.

Abstract

Modulating the endogenous stores of gastrointestinal hormones is considered a promising strategy to mimic gut endocrine function, improving metabolic dysfunction. Here, we exploit mouse and human knock-in and knockout intestinal organoids and show that agents used as commercial lipid excipients can activate nutrient-sensitive receptors on enteroendocrine cells (EECs) and, when formulated as lipid nanocarriers, can bestow biological effects through the release of GLP-1, GIP, and PYY from K and L cells. Studies in wild-type, dysglycemic, and gut knockout mice demonstrated that the effect exerted by lipid nanocarriers could be modulated by varying the excipients (e.g., nature and quantities), the formulation methodology, and their physiochemical properties (e.g., size and composition). This study demonstrates the therapeutic potential of using nanotechnology to modulate release of multiple endogenous hormones from the enteroendocrine system through a patient-friendly, inexpensive, and noninvasive manner.

摘要

调节胃肠道激素的内源性储备被认为是一种有前景的策略,可模拟肠道内分泌功能,改善代谢功能障碍。在此,我们利用小鼠和人类的基因敲入和敲除肠道类器官,表明用作商业脂质辅料的试剂可激活肠内分泌细胞(EEC)上的营养敏感受体,并且当配制成脂质纳米载体时,可通过从K细胞和L细胞释放胰高糖素样肽-1(GLP-1)、葡萄糖依赖性促胰岛素多肽(GIP)和酪酪肽(PYY)赋予生物学效应。在野生型、血糖异常和肠道敲除小鼠中的研究表明,脂质纳米载体所发挥的作用可通过改变辅料(如种类和数量)、制剂方法及其物理化学性质(如大小和组成)来调节。本研究证明了利用纳米技术以患者友好、廉价且无创的方式调节来自肠内分泌系统的多种内源性激素释放的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a21/11641013/4cf671003abd/sciadv.adq9909-f1.jpg

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