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一种新型局部眼用原位凝胶系统治疗眼部感染的实验设计、配方和体内评价。

Experimental design, formulation and in vivo evaluation of a novel topical in situ gel system to treat ocular infections.

机构信息

Department of Pharmaceutical Sciences, College of Clinical Pharmacy, King Faisal University, Al-Ahsa, Saudi Arabia.

Department of Pharmaceutics, Institute of Pharmacy, Nirma University, Ahmedabad, Gujarat, India.

出版信息

PLoS One. 2021 Mar 19;16(3):e0248857. doi: 10.1371/journal.pone.0248857. eCollection 2021.

Abstract

In situ gels have been extensively explored as ocular drug delivery system to enhance bioavailability and efficacy. The objective of present study was to design, formulate and evaluate ion-activated in situ gel to enhance the ocular penetration and therapeutic performance of moxifloxacin in ophthalmic delivery. A simplex lattice design was utilized to examine the effect of various factors on experimental outcomes of the in situ gel system. The influence of polymers (independent variables) such as gellan gum (X1), sodium alginate (X2), and HPMC (X3) on gel strength, adhesive force, viscosity and drug release after 10 h (Q10) were assessed. Selected formulation (MH7) was studied for ex vivo permeation, in vivo irritation and pharmacokinetics in rabbits. Data revealed that increase in concentration of polymers led to higher gel strength, adhesive force and viscosity, however, decreases the drug release. MH7 exhibited all physicochemical properties within acceptable limits and was stable for 6 months. Release profile of moxifloxacin from MH7 was comparable to the check point batches and followed Korsmeyer-Peppas matrix diffusion-controlled mechanism. Ocular irritation study signifies that selected formulation is safe and non-irritant for ophthalmic administration. In vivo pharmacokinetics data indicates significant improvement of moxifloxacin bioavailability (p < 0.0001) from MH7, as evidenced by higher Cmax (727 ± 56 ng/ml) and greater AUC (2881 ± 108 ng h/ml), when compared with commercial eye drops (Cmax; 503 ± 85 ng/ml and AUC; 978 ± 86 ng h/ml). In conclusion, developed in situ gel system (MH7) could offers a more effective and extended ophthalmic therapy of moxifloxacin in ocular infections when compared to conventional eye drops.

摘要

原位凝胶已被广泛探索作为眼部药物传递系统,以提高生物利用度和疗效。本研究的目的是设计、制备和评价离子激活的原位凝胶,以增强莫西沙星在眼部传递中的眼部穿透和治疗效果。利用单纯形格子设计来考察各种因素对原位凝胶系统实验结果的影响。考察了聚合物(独立变量)如结冷胶(X1)、海藻酸钠(X2)和 HPMC(X3)对凝胶强度、粘附力、粘度和 10 小时后药物释放(Q10)的影响。选择的配方(MH7)用于兔眼的体外渗透、体内刺激性和药代动力学研究。数据表明,聚合物浓度的增加导致凝胶强度、粘附力和粘度增加,但药物释放减少。MH7 表现出所有物理化学性质都在可接受的范围内,并且在 6 个月内稳定。莫西沙星从 MH7 的释放曲线与对照批次相当,并遵循 Korsmeyer-Peppas 基质扩散控制机制。眼部刺激性研究表明,所选配方对眼部给药是安全的,无刺激性。体内药代动力学数据表明,MH7 显著提高了莫西沙星的生物利用度(p < 0.0001),表现在 MH7 的 Cmax(727 ± 56 ng/ml)和 AUC(2881 ± 108 ng h/ml)更高,与市售眼药水(Cmax;503 ± 85 ng/ml 和 AUC;978 ± 86 ng h/ml)相比。总之,与传统眼药水相比,开发的原位凝胶系统(MH7)可为眼部感染提供更有效和更持久的莫西沙星眼部治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be47/7978349/2617c1b56f47/pone.0248857.g001.jpg

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