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负载亲脂性铋纳米颗粒和十六烷基氯化吡啶的阴道栓剂抑制人宫颈癌及其生长。

Vaginal Ovule Loaded with Bismuth Lipophilic Nanoparticles and Cetylpyridinium Chloride Inhibits Human Cervical Carcinoma and Growth.

作者信息

Cabral-Romero Claudio, Hernández-Delgadillo Rene, Torres-Betancourt Jesús Alejandro, García-Cuellar Claudia María, Sánchez-Pérez Yesennia, Solis-Soto Juan Manuel, Meester Irene, Pineda-Aguilar Nayely, Nakagoshi-Cepeda Sergio Eduardo, Cauich-Rodríguez Juan Valerio, Nakagoshi-Cepeda María Argelia Akemi

机构信息

Laboratorio de Biología Molecular, Facultad de Odontología, Universidad Autónoma de Nuevo León (UANL), Monterrey 66455, Nuevo León, Mexico.

Subdirección de Investigación Básica, Instituto Nacional de Cancerología, Ciudad de México 14080, Distrito Federal, Mexico.

出版信息

J Funct Biomater. 2024 Jul 25;15(8):206. doi: 10.3390/jfb15080206.

Abstract

Bismuth lipophilic nanoparticles (BisBAL NPs) and cetylpyridinium chloride (CPC) are antineoplastic and antimicrobial in vitro. As a next pre-clinical step, a clinically viable dosage form for vaginal application was developed. Compendial pharmacopeial tests (mass uniformity, disintegration, and compressive mechanics) and inductively coupled plasma optical emission spectroscopy were conducted on in-house developed glycerinated gelatin (60:15 /) vaginal ovules containing BisBAL NP-CPC. The antimycotic activity of BisBAL NP-CPC vaginal ovules was analyzed using disk diffusion and cell viability XTT assays. The antitumor properties of BisBAL NP-CPC vaginal ovules were assessed by cell viability MTT tests. BisBAL NP-CPC and drug-free vaginal ovules deposited into ex vivo porcine vaginas disaggregated without signs of adverse cytotoxicity within the timespan of clinical efficacy. BisBAL NP-CPC vaginal ovules demonstrated antifungal efficacy comparable to miconazole: growth inhibition haloes in diffusion tests were 23 ± 0.968 mm (n = 3) for BisBAL NP-CPC and 20.35 ± 0.899 mm (n = 3) for miconazole. Likewise, BisBAL NP-CPC vaginal ovules reduced HeLa cell growth by 81%, outperforming the clinical reference of 500 μM 5-fluouracil, which induced a 70% growth inhibition. BisBAL NP-CPC incorporated into glycerinated gelatin vaginal ovules constitute an innovative drug delivery system for topical antimycotic and anti-cervical carcinoma treatments.

摘要

铋亲脂性纳米颗粒(BisBAL NPs)和十六烷基吡啶氯化物(CPC)在体外具有抗肿瘤和抗菌作用。作为下一步临床前研究,开发了一种临床上可行的阴道给药剂型。对内部研发的含有BisBAL NP-CPC的甘油明胶(60:15/)阴道栓进行了药典测试(质量均匀度、崩解度和压缩力学性能)以及电感耦合等离子体发射光谱分析。使用纸片扩散法和细胞活力XTT分析评估了BisBAL NP-CPC阴道栓的抗真菌活性。通过细胞活力MTT试验评估了BisBAL NP-CPC阴道栓的抗肿瘤特性。在临床疗效时间段内,沉积到离体猪阴道中的BisBAL NP-CPC和不含药物的阴道栓会分解,且没有不良细胞毒性迹象。BisBAL NP-CPC阴道栓显示出与咪康唑相当的抗真菌疗效:在扩散试验中,BisBAL NP-CPC的生长抑制圈为23±0.968毫米(n = 3),咪康唑为20.35±0.899毫米(n = 3)。同样,BisBAL NP-CPC阴道栓使HeLa细胞生长减少了81%,优于500μM 5-氟尿嘧啶的临床参考值,后者诱导的生长抑制率为70%。掺入甘油明胶阴道栓中的BisBAL NP-CPC构成了一种用于局部抗真菌和抗宫颈癌治疗的创新药物递送系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24b0/11355390/6702c232c5df/jfb-15-00206-g001.jpg

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