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评价贮存过程中地黄来源的纳米囊泡的稳定性和生物活性。

Evaluating stability and bioactivity of Rehmannia-derived nanovesicles during storage.

机构信息

Fujian Key Laboratory of Oral Diseases, School and Hospital of Stomatology, Fujian Medical University, Fuzhou, China.

Department of Preventive Dentistry, School and Hospital of Stomatology, Fujian Medical University, Fuzhou, China.

出版信息

Sci Rep. 2024 Aug 28;14(1):19966. doi: 10.1038/s41598-024-70334-5.

Abstract

Plant-derived nanovesicles (PDNVs) have garnered growing attention in the biomedical field owing to their abundance in plant-derived ribonucleic acids (RNA), proteins, lipids and metabolites. The question about the preservation of PDNVs is a crucial and unavoidable concern in both experiments' settings and their potential clinical application. The objective of this research was to examine the impact of varying storage temperatures on the stability and bioactivity of Rehmannia-derived nanovesicles (RDNVs). The results showed that RDNVs aggregated after 2 weeks of storage period at 4 °C, and the particle size of some RDNVs gradually increased with time, along with the increase of solution potential. After 2 months of storage, all RDNVs exhibited varying levels of aggregation irrespective of storage temperature. The bioactivities of nanovesicles under different temperature storage conditions revealed a gradual decline in cell proliferation inhibition bioactivity over time, significantly lower than that of freshly prepared RDNVs. In contrast, the preservation of anti-migratory activity in RDNVs was found to be more effective when subjected to rapid freezing in liquid nitrogen followed by storage at - 80 °C, as opposed to direct storage at - 80 °C. These findings suggest that temperature alone may not be sufficient in safeguarding the activity and stability of RDNVs, highlighting the necessity for the development of novel protective agents for PDNVs.

摘要

植物来源的纳米囊泡(PDNVs)因其在植物源性 RNA、蛋白质、脂质和代谢物中的丰富含量,在生物医学领域引起了越来越多的关注。PDNVs 的保存问题是实验设置及其潜在临床应用中一个至关重要且不可避免的关注点。本研究旨在考察不同储存温度对地黄来源的纳米囊泡(RDNVs)稳定性和生物活性的影响。结果表明,RDNVs 在 4°C 下储存 2 周后会聚集,部分 RDNVs 的粒径随时间逐渐增大,同时溶液电位也逐渐增大。储存 2 个月后,所有 RDNVs 均表现出不同程度的聚集,与储存温度无关。不同温度储存条件下纳米囊泡的生物活性显示,细胞增殖抑制生物活性随时间逐渐下降,明显低于新制备的 RDNVs。相比之下,液氮中快速冷冻后再储存在-80°C 下,比直接储存在-80°C 下更能有效地保持 RDNVs 的抗迁移活性。这些发现表明,仅温度可能不足以保护 RDNVs 的活性和稳定性,这凸显了开发新型 PDNVs 保护剂的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bc3/11358329/b0ce0839a204/41598_2024_70334_Fig1_HTML.jpg

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