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山羊乳细胞外囊泡:用于诊疗应用的天然载体的分离比较

Goat milk extracellular vesicles: Separation comparison of natural carriers for theragnostic application.

作者信息

Santoro Jessie, Nuzzo Silvia, Franzese Monica, Salvatore Marco, Grimaldi Anna Maria

机构信息

IRCCS SYNLAB SDN, Via Emanuele Gianturco 113, 80143, Napoli, Italy.

出版信息

Heliyon. 2024 Mar 8;10(6):e27621. doi: 10.1016/j.heliyon.2024.e27621. eCollection 2024 Mar 30.

Abstract

Goat milk is a complex biological fluid, which in addition to having a high nutritional value, it is an interesting source of extracellular vesicles (EVs). Despite the countless potential applications that they offer in many biological fields, is not easy to compare the different proposed systems, and this is a major limitation for the real translatability of these natural nanoplatforms for theragnostic purposes. Thus, it is useful to further investigate reproducible methods to separate goat milk EVs. The choice of methods but also the preprocessing of milk has an immense impact on the separation, quality, and yield of EVs. Here, we tested four protocols to separate EVs from unpasteurised goat milk: two based on differential ultracentrifugation (DUC) and two on size-exclusion chromatography (SEC). Moreover, we assessed two different approaches of pre-treatment (acidification and precipitation) to facilitate milk protein discharge. To the best of our knowledge, a similar comparison of all performed protocols on raw goat milk has never been published before. Therefore, enriched EV samples were successfully obtained from goat milk using both DUC and SEC. Taken together, our results may be helpful to obtain natural carriers for future theragnostic applications in personalised medicine.

摘要

山羊奶是一种复杂的生物流体,除了具有很高的营养价值外,它还是细胞外囊泡(EVs)的一个有趣来源。尽管它们在许多生物学领域有无数潜在应用,但比较不同的提议系统并不容易,这是这些天然纳米平台用于治疗诊断目的实际可转化性的一个主要限制。因此,进一步研究可重复的方法来分离山羊奶EVs是有用的。方法的选择以及牛奶的预处理对EVs的分离、质量和产量有巨大影响。在这里,我们测试了四种从未经巴氏杀菌的山羊奶中分离EVs的方案:两种基于差速超速离心(DUC),两种基于尺寸排阻色谱(SEC)。此外,我们评估了两种不同的预处理方法(酸化和沉淀)以促进乳蛋白排出。据我们所知,之前从未发表过对生山羊奶所有执行方案的类似比较。因此,使用DUC和SEC都成功地从山羊奶中获得了富集的EV样本。综上所述,我们的结果可能有助于获得天然载体,用于未来个性化医学中的治疗诊断应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dce/10950560/f1d2e0c100f1/gr1.jpg

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