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基于泊洛沙姆407的原位系统的新生物制药特性

New Biopharmaceutical Characteristics of In Situ Systems Based on Poloxamer 407.

作者信息

Bakhrushina Elena O, Novozhilova Elizaveta V, Shumkova Marina M, Pyzhov Victor S, Nikonenko Maria S, Bardakov Alexander I, Demina Natalia B, Krasnyuk Ivan I, Krasnyuk Ivan I

机构信息

Department of Pharmaceutical Technology, A.P. Nelyubin Institute of Pharmacy, I.M. Sechenov First Moscow State Medical University (Sechenov University), Moscow 119048, Russia.

Department of Chemistry "Ugo Schiff", Università di Firenze, Via Della Lastruccia 3-13, 50019 Sesto Fiorentino, Italy.

出版信息

Gels. 2023 Jun 21;9(7):508. doi: 10.3390/gels9070508.

Abstract

Thermosensitive systems based on poloxamer 407 are widely used in targeted drug delivery; however, the stability of the phase transition temperature remains insufficiently studied. This article presents the results of a study on the effect of adding polyethylene glycols (PEG) with different molecular weights and some classical gel-forming polymers on the gelation temperature of thermoreversible compositions based on poloxamer 407 in a long-term experiment. The study showed a positive effect of PEG addition with average molecular weights at concentrations of 1.5-2.0%, as well as gelling agents at a concentration below the critical gelation concentration. The proposed rheological test for studying the samples' adhesion can give an indirect forecast of the composition adhesive rate. Based on the conducted studies, three experimental binary systems based on poloxamer 407 were selected, with the addition of HPMC 0.5%, sodium alginate 0.5%, and PEG 1500 1.5%. These systems are the most promising for the further development of in situ targeted drug delivery systems.

摘要

基于泊洛沙姆407的热敏系统广泛应用于靶向给药;然而,相变温度的稳定性仍未得到充分研究。本文介绍了一项长期实验的研究结果,该实验研究了添加不同分子量的聚乙二醇(PEG)和一些经典的凝胶形成聚合物对基于泊洛沙姆407的热可逆组合物凝胶化温度的影响。研究表明,添加平均分子量为1.5-2.0% 的PEG以及浓度低于临界凝胶化浓度的胶凝剂具有积极效果。所提出的用于研究样品粘附性的流变学测试可以间接预测组合物的粘附速率。基于所进行的研究,选择了三种基于泊洛沙姆407的实验二元系统,分别添加0.5% 的羟丙基甲基纤维素、0.5% 的海藻酸钠和1.5% 的PEG 1500。这些系统对于原位靶向给药系统的进一步开发最具前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5d3/10379042/9b6344274fdc/gels-09-00508-g001.jpg

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