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一种新型口服褪黑素制剂的开发、表征及潜在全身毒性评估

Development, Characterization, and Evaluation of Potential Systemic Toxicity of a Novel Oral Melatonin Formulation.

作者信息

Cheaburu-Yilmaz Catalina N, Atmaca Kemal, Yilmaz Onur, Orhan Hilmi

机构信息

Biochemistry Division, Department of Chemistry, Faculty of Science, Dokuz Eylul University, 35390 Konak, Izmir, Türkiye.

Pharmaceutical Toxicology Department, Faculty of Pharmacy, Ege University, 35040 Bornova, Izmir, Türkiye.

出版信息

Pharmaceutics. 2024 Jun 28;16(7):871. doi: 10.3390/pharmaceutics16070871.

Abstract

The need to create safe materials for biomedical and pharmaceutical applications has become a significant driving force for the development of new systems. Therefore, a chitosan-coated copolymer of itaconic acid, acrylic acid, and N-vinyl caprolactam (IT-AA-NVC) was prepared by radical polymerization and subsequent coating via nanoprecipitation to give a system capable of sustained delivery of melatonin. Although melatonin brings undoubted benefits to the human body, aspects of the optimal dose, route, and time of administration for the obtaining of suitable treatment outcomes remain under discussion. The entrapment of melatonin in biocompatible polymeric systems can prevent its oxidation, decrease its toxicity, and provide an increased half-life, resulting in an enhanced pharmacokinetic profile with improved patient compliance. The structures of the biopolymer and conjugate were proven by FTIR, thermal properties were tested by DSC, and the morphologies were followed by SEM. The loading efficiency and in vitro release profile were studied by means of HPLC, and a delayed release profile with an initial burst was obtained. The potential systemic toxicity of the formulation was studied in vivo; a mild hepatotoxicity was observed following administration of the melatonin-loaded formulation to mice, both by histopathology and blood clinical biochemistry. Histopathology showed a mild nephrotoxicity as well; however, kidney clinical biochemistry did not support this.

摘要

为生物医学和制药应用创造安全材料的需求已成为新系统开发的重要驱动力。因此,通过自由基聚合和随后的纳米沉淀包覆制备了衣康酸、丙烯酸和N-乙烯基己内酰胺的壳聚糖包覆共聚物(IT-AA-NVC),以得到能够持续递送褪黑素的系统。尽管褪黑素给人体带来了毋庸置疑的益处,但关于获得合适治疗效果的最佳剂量、给药途径和时间等方面仍在讨论中。将褪黑素包封在生物相容性聚合物系统中可以防止其氧化、降低其毒性并延长半衰期,从而改善药代动力学特征并提高患者依从性。通过傅里叶变换红外光谱(FTIR)证实了生物聚合物和共轭物的结构,通过差示扫描量热法(DSC)测试了热性能,并通过扫描电子显微镜(SEM)观察了形态。通过高效液相色谱(HPLC)研究了负载效率和体外释放曲线,并获得了具有初始突释的延迟释放曲线。在体内研究了该制剂的潜在全身毒性;通过组织病理学和血液临床生物化学研究发现,给小鼠施用负载褪黑素的制剂后观察到轻度肝毒性。组织病理学也显示出轻度肾毒性;然而,肾脏临床生物化学结果并不支持这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cd3/11279405/fc633e84bb7d/pharmaceutics-16-00871-g001.jpg

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