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用于眼部给药的载环丙沙星双分子层原位凝胶的研制:优化、体外表征、离体渗透及抗菌研究。

Development of Ciprofloxacin-Loaded Bilosomes In-Situ Gel for Ocular Delivery: Optimization, In-Vitro Characterization, Ex-Vivo Permeation, and Antimicrobial Study.

作者信息

Alsaidan Omar Awad, Zafar Ameeduzzafar, Yasir Mohd, Alzarea Sami I, Alqinyah Mohammed, Khalid Mohammad

机构信息

Department of Pharmaceutics, College of Pharmacy, Jouf University, Sakaka 72341, Saudi Arabia.

Department of Pharmacy, College of Health Sciences, Arsi University, Asella 396, Ethiopia.

出版信息

Gels. 2022 Oct 25;8(11):687. doi: 10.3390/gels8110687.

Abstract

Conventional eye drops are most commonly employed topically in the eye for the management of bacterial conjunctivitis. Eye drops have a low corneal residence time and 90−95% of the administered dose is eliminated from the eye by blinking and the nasolacrimal drainage system. This problem can be minimized by formulating a mucoadhesive ocular in-situ gel system that undergoes sol-gel transition upon stimulation by temperature, pH, and ions. The goal of this study was to develop ciprofloxacin (CIP) loaded bilosomes (BLO) in-situ gel for the improvement of therapeutic efficacy. The BLO was prepared by the thin-film hydration method and optimized by the Box−Behnken design. Cholesterol (CHO), surfactant (Span 60), and bile salt (sodium deoxycholate/SDC) were used as formulation factors. The vesicle size (nm) and entrapment efficiency (%) were selected as responses (dependent factors). The optimized CIP-BLO (CIP-BLO-opt) formulation displayed a vesicle size of 182.4 ± 9.2 nm, a polydispersity index of 0.274, a zeta potential of −34,461.51 mV, and an entrapment efficiency of 90.14 ± 1.24%. Both x-ray diffraction and differential scanning calorimetry spectra did not exhibit extensive peaks of CIP in CIP-BLO-opt, revealing that CIP is encapsulated in the BLO matrix. The CIP-BLO-opt formulation was successfully incorporated into an in-situ gel system using a gelling agent, i.e., Carbopol 934P and hydroxyl propyl methyl cellulose (HPMC K100 M). CIP-BLO-opt in-situ gel formulation (CIP-BLO-opt-IG3) was evaluated for gelling capacity, clarity, pH, viscosity, in-vitro CIP release, bio-adhesive, ex-vivo permeation, toxicity, and antimicrobial study. The CIP-BLO-opt-IG3 exhibited satisfactory gelling properties with a viscosity of 145.85 ± 9.48 cP in the gelling state. CIP-BLO-opt-IG3 displayed sustained CIP release (83.87 ± 5.24%) with Korsmeyer−Peppas kinetic as a best-fitted model (R2 = 0.9667). CIP-BLO-opt-IG3 exhibited a 1.16-fold than CIP-IG and a 2.08-fold higher permeability than pure CIP. CIP-BLO-opt-IG3 displayed a significantly greater bio-adhesion property (924.52 ± 12.37 dyne/cm2) than tear film. Further, CIP-BLO-opt-IG3 does not display any toxicity as confirmed by corneal hydration (76.15%), histology, and the HET-CAM test (zero scores). CIP-BLO-opt-IG3 shows significantly higher (p < 0.05) antimicrobial activity against P. aeruginosa and S. aureus than pure CIP. From all these findings, it could be concluded that CIP-BLO-opt-IG3 might be an effective strategy for the increment of corneal residence time and therapeutic activity of CIP.

摘要

传统眼药水最常用于眼部局部治疗细菌性结膜炎。眼药水在角膜的停留时间较短,90 - 95%的给药剂量会通过眨眼和鼻泪引流系统从眼部排出。通过制备一种在温度、pH值和离子刺激下发生溶胶-凝胶转变的粘膜粘附性眼用原位凝胶系统,可以将这个问题最小化。本研究的目的是开发载有环丙沙星(CIP)的双分子层脂质体(BLO)原位凝胶,以提高治疗效果。BLO通过薄膜水化法制备,并采用Box - Behnken设计进行优化。胆固醇(CHO)、表面活性剂(司盘60)和胆盐(脱氧胆酸钠/SDC)用作配方因素。囊泡大小(nm)和包封率(%)被选为响应指标(因变量)。优化后的CIP - BLO(CIP - BLO - opt)配方显示囊泡大小为182.4 ± 9.2 nm,多分散指数为0.274,zeta电位为−34,461.51 mV,包封率为90.14 ± 1.24%。X射线衍射和差示扫描量热法光谱在CIP - BLO - opt中均未显示出CIP的广泛峰,表明CIP被包裹在BLO基质中。CIP - BLO - opt配方使用胶凝剂即卡波姆934P和羟丙基甲基纤维素(HPMC K100 M)成功地并入原位凝胶系统。对CIP - BLO - opt原位凝胶配方(CIP - BLO - opt - IG3)进行了胶凝能力、澄清度、pH值、粘度、体外CIP释放、生物粘附性、离体渗透、毒性和抗菌研究。CIP - BLO - opt - IG3在胶凝状态下表现出令人满意的胶凝特性,粘度为145.85 ± 9.48 cP。CIP - BLO - opt - IG3显示CIP持续释放(83.87 ± 5.24%),以Korsmeyer - Peppas动力学作为最佳拟合模型(R² = 0.9667)。CIP - BLO - opt - IG3的表现比CIP - IG高1.16倍,渗透率比纯CIP高2.08倍。CIP - BLO - opt - IG3显示出比泪膜显著更高的生物粘附性(924.52 ± 12.37达因/cm²)。此外,角膜水化(76.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b55e/9688993/62ff448238e3/gels-08-00687-g001.jpg

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