Department of Urology, Chonnam National University Medical School, Gwangju, Korea.
Department of Biomedical Sciences and Center for Global Future Biomedical Scientists at Chonnam National University, Chonnam National University Medical School, Gwangju, Korea.
Investig Clin Urol. 2023 Mar;64(2):182-188. doi: 10.4111/icu.20220366.
This study aimed to develop hyaluronic acid (HA)-based, retinoic acid (RA)-containing nanomicelles and to investigate the effects of these newly developed nanomicelles on regeneration of the vaginal epithelium and aquaporin 3 (AQP3) expression in a murine menopause model.
The HA-based, RA-loaded nanomicelles were developed, and the RA-loading rate, encapsulation efficiency, and hydrodynamic diameter were measured. Female BALB/c mice (8 weeks; n=30) were divided into control and experimental groups. Menopause was established in the experimental group by removing both ovaries. The experimental group was further divided into an ovariectomy group, an HA-C18 vehicle group, and an HA-C18-RA group (2.5 µg per mouse); vaginal administration of HA-C18 or HA-C18-RA was performed once daily. After 4 weeks of treatment, murine vaginal tissue was removed, and histological analysis was performed.
Three drug-loaded nanomicelles were synthesized: the RA content in HA-C18-RA-10, HA-C18-RA-20, and HA-C18-RA-30 was 3.13%, 2.52%, and 16.67%, respectively, and the RA encapsulation efficiency was 95.57%, 83.92%, and 93.24%, respectively. In the experimental versus control group, serum estrogen levels were significantly reduced, and the vaginal mucosal epithelial layer was significantly thinner. After 4 weeks of treatment, the thickness of the vaginal mucosal epithelial layer and AQP3 expression was increased in the HA-C18-RA group compared with the HA-C18 vehicle group.
The newly developed HA-based nanomicelles containing RA resulted in vaginal epithelial recovery and increased AQP3 expression. The results may contribute to the development of functional vaginal lubricants or moisturizers for the treatment of vaginal dryness.
本研究旨在开发透明质酸(HA)基、维甲酸(RA)载纳米胶束,并研究这些新开发的纳米胶束对小鼠绝经模型阴道上皮再生和水通道蛋白 3(AQP3)表达的影响。
开发了基于 HA 的 RA 载纳米胶束,并测量了 RA 载药率、包封效率和水动力直径。将 8 周龄雌性 BALB/c 小鼠(n=30)分为对照组和实验组。实验组通过切除双侧卵巢建立绝经模型。实验组进一步分为卵巢切除术组、HA-C18 载体组和 HA-C18-RA 组(每只小鼠 2.5μg);每日阴道给予 HA-C18 或 HA-C18-RA。治疗 4 周后,取出小鼠阴道组织进行组织学分析。
合成了 3 种载药纳米胶束:HA-C18-RA-10、HA-C18-RA-20 和 HA-C18-RA-30 中的 RA 含量分别为 3.13%、2.52%和 16.67%,RA 包封效率分别为 95.57%、83.92%和 93.24%。与对照组相比,实验组血清雌激素水平显著降低,阴道黏膜上皮层明显变薄。治疗 4 周后,与 HA-C18 载体组相比,HA-C18-RA 组阴道黏膜上皮层厚度和 AQP3 表达增加。
新开发的含有 RA 的基于 HA 的纳米胶束可促进阴道上皮恢复和增加 AQP3 表达。研究结果可能有助于开发用于治疗阴道干燥的功能性阴道润滑剂或保湿剂。