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Unveiling the potential: Extracellular vesicles from plant cell suspension cultures as a promising source

细胞外 小泡 胞外囊泡 细胞生物学 生物化学 脂质双层 植物细胞 生物物理学 生物 化学 囊泡转运蛋白 微泡 膜 基因 小RNA
作者
Oğuz Kaan Kırbaş,Derya Sağraç,Özgün Cem Çiftçi,Gökçeçiçek Özdemir,Dilek Öztürkoğlu,Batuhan Turhan Bozkurt,Ümit Cem Derman,Ezgi Taşkan,Pakize Neslihan Taşlı,Bahar Soğutmaz Özdemir,Fikrettin Şahi̇n
出处
期刊:Biofactors [Wiley]
卷期号:51 (1): e2090-e2090 被引量:18
标识
DOI:10.1002/biof.2090
摘要

Extracellular vesicles are secreted by all eukaryotic cells and they have an important role in intercellular signaling. Plant extracellular vesicles (PEVs) are a novel area of research that has gained attention due to their potential implications in biomolecule transport and therapeutic applications. PEVs are lipid bilayer-enclosed structures that contain a diverse cargo of biomolecules such as proteins and lipids. Moreover, it is known that PEVs have a noticeable therapeutic potential for various conditions such as inflammation and oxidative stress. However, there are critical problems such as removing the endosomes and plant-derived biomolecules that decrease the standardization and therapeutic efficacy of PEVs. In our study, the aim was to characterize plant cell suspension-derived extracellular vesicles (PCSEVs) obtained from two different plant cell suspension cultures: Stevia rebaudiana and Vaccaria hispanica. These vesicles were isolated using ultrafiltration and characterized with nanoparticle tracking analysis (NTA) and atomic force microscopy (AFM). The molecular composition of PCSEVs was profiled and the cellular uptake assay was performed. Our results demonstrated that PCSEVs have a spherical shape, less than 200 nm. In the fatty acid analysis, the primary components in PCSEVs were palmitic acid, linoleic acid, and cis-vaccenic acid. The protein content of Stevia rebaudiana-derived EVs (SDEVs) was largely associated with proteins involved in extracellular structures and functions. Conversely, Vaccaria hispanica-derived EVs (HDEVs) displayed a higher presence of cytosolic proteins. These findings contribute to the understanding of PCSEVs and open up potential avenues in extracellular vesicle research, pointing to promising prospects for future innovations in various fields.
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