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采用新型联合生物物理方法分离山羊乳小细胞外囊泡。

Isolation of goat milk small extracellular vesicles by novel combined bio-physical methodology.

作者信息

González María Isabel, Gallardo Begoña, Cerón Carlos, Aguilera-Jiménez Elena, Cortes-Canteli Marta, Peinado Héctor, Desco Manuel, Salinas Beatriz

机构信息

Unidad de Medicina y Cirugía Experimental, Instituto de Investigación Sanitaria Gregorio Marañón, IiSGM, Madrid, Spain.

Unidad de Imagen Avanzada, Centro Nacional de Investigaciones Cardiovasculares (CNIC) Carlos III, Madrid, Spain.

出版信息

Front Bioeng Biotechnol. 2023 Sep 27;11:1197780. doi: 10.3389/fbioe.2023.1197780. eCollection 2023.

Abstract

Goat milk is notable as a cost-effective source of exosomes, also known as small extracellular vesicles (sEVs). These nanoparticle-like structures are naturally secreted by cells and have emerged as potential diagnostic agents and drug delivery systems, also supported by their proven therapeutic effects. However, the complexity of goat milk and the lack of standardized protocols make it difficult to isolate pure sEVs. This work presents an optimized approach that combines well-established physical isolation methods with the biological treatment of milk with rennet. sEVs derived from goat milk were purified using a methodology that combines differential ultracentrifugation, rennet, and size-exclusion chromatography. This novel strategy was compared with two of the main methodologies developed for isolating extracellular vesicles from bovine and human milk by means of physico-chemical characterization of collected vesicles using Transmission Electron Microscopy, Western blot, Bradford Coomassie assay, Dynamic Light Scattering, Nanoparticle Tracking Analysis and Zeta Potential. Vesicles isolated with the optimized protocol had sEV-like characteristics and high homogeneity, while samples obtained with the previous methods were highly aggregated, with significant residual protein content. This work provides a novel biophysical methodology for isolating highly enriched goat milk sEVs samples with high stability and homogeneity, for their further evaluation in biomedical applications as diagnostic tools or drug delivery systems.

摘要

山羊奶是一种值得注意的外泌体(也称为小细胞外囊泡,即sEVs)的经济有效来源。这些纳米颗粒状结构由细胞自然分泌,并已成为潜在的诊断试剂和药物递送系统,其已证实的治疗效果也支持了这一点。然而,山羊奶的复杂性以及缺乏标准化方案使得难以分离出纯的sEVs。这项工作提出了一种优化方法,该方法将成熟的物理分离方法与用凝乳酶对牛奶进行生物处理相结合。使用结合了差速超速离心、凝乳酶和尺寸排阻色谱的方法纯化了源自山羊奶的sEVs。通过透射电子显微镜、蛋白质免疫印迹、考马斯亮蓝染色法、动态光散射、纳米颗粒跟踪分析和zeta电位对收集的囊泡进行物理化学表征,将这种新策略与为从牛和人乳中分离细胞外囊泡而开发的两种主要方法进行了比较。用优化方案分离的囊泡具有类似sEV的特征和高均一性,而用以前的方法获得的样品高度聚集,蛋白质残留量显著。这项工作提供了一种新的生物物理方法,用于分离具有高稳定性和均一性的高度富集的山羊奶sEVs样品,以便在生物医学应用中作为诊断工具或药物递送系统对其进行进一步评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ba5/10564981/db41f8b236e0/fbioe-11-1197780-g001.jpg

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