壳聚糖/卡波姆纳米颗粒原位凝胶用于改善噻吗洛尔的眼部给药:体外、体内和体外研究。

IF 5.7 3区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL Drug Delivery and Translational Research Pub Date : 2025-04-01 Epub Date: 2024-07-08 DOI:10.1007/s13346-024-01663-1
Nadereh Rahbar, Sarah Darvish, Fereydoun Farrahi, Maryam Kouchak
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引用次数: 0

摘要

由于眼腔容量较小,而且液体会迅速排入鼻泪管,因此患者必须经常滴眼药水。纳米颗粒(NPs)和原位凝胶系统已分别证明了其独立实现眼部保留的能力。本研究采用聚电解质复合法制备了噻吗洛尔负载壳聚糖-卡波姆 NPs,并将其加入到由卡波姆制成的 pH 响应原位凝胶系统中。研究了 NPs 原位凝胶在室温和生理条件下的流变行为。研究了 NPS 和 NPs 原位凝胶制剂的 zeta 电位、表面张力、折射率、粘附性、药物释放、角膜渗透性和降低眼压(IOP)活性等特性。最佳增益 NPs 系统的封装效率约为 69%,粒径为 196 nm。NP 和添加 NPs 的原位凝胶的 zeta 电位分别为 - 16 和 + 11 mV。添加了 NPs 的原位凝胶在生理 pH 值下粘度增强。两种制剂的所有理化特性均可接受。事实证明,NPs 和添加 NPs 的原位凝胶系统可持续释放药物。它们都具有粘液粘附性,而添加 NPs 的原位凝胶的粘液粘附性更强。与噻吗洛尔溶液和 NPs 相比,添加 NPs 的原位凝胶降低眼压的效果明显更高、更持久。总之,所开发的含有 NPs 的原位凝胶是一种很有前景的眼部给药载体,因为它具有从纳米颗粒中缓慢释放药物的特性、粘附性以及与角膜前膜接触时的高粘度获取性,从而提高了疗效。
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Chitosan/carbomer nanoparticles- laden in situ gel for improved ocular delivery of timolol: in vitro, in vivo, and ex vivo study.

Due to the small capacity of the eye cavity and the rapid drainage of liquid into the nasolacrimal duct, patients must frequently administer the drops. Nanoparticles (NPs) and in situ gel systems have each proven their ability to achieve eye retention independently. In this study, timolol-loaded chitosan-carbomer NPs were prepared using the polyelectrolyte complexation method, and incorporated into a pH-responsive in situ gel system made of carbomer. The rheological behavior of NPs-laden in situ gel was examined at room and physiological conditions. Characteristics such as zeta potential, surface tension, refractive index, mucoadhesive properties, drug release, transcorneal permeability, and intra-ocular pressure (IOP) lowering activity were investigated on NPS and NPs-laden in situ gel formulations. The optimum gained NPs system had an encapsulation efficiency of about 69% with a particle size of 196 nm. The zeta potential of the NP and NPs-laden in situ gel were - 16 and + 11 mV respectively. NPs-laden in situ gel presented enhanced viscosity at physiological pH. All physicochemical properties were acceptable for both formulations. NPs and NPs-laden in situ gel systems proved to sustain drug release. They showed mucoadhesive properties which were greater for NPs-laden in situ gel. IOP reduction by NPs-laden in situ gel was significantly higher and more long-lasting than the timolol solution and NPs. In conclusion, the developed NPs-laden in situ gel is a promising carrier for ocular drug delivery due to the slow release of drug from nanoparticles, its mucoadhesive properties, and high viscosity acquisition in contact with precorneal film, which lead to improved therapeutic efficacy.

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来源期刊
Drug Delivery and Translational Research
Drug Delivery and Translational Research MEDICINE, RESEARCH & EXPERIMENTALPHARMACOL-PHARMACOLOGY & PHARMACY
CiteScore
11.70
自引率
1.90%
发文量
160
期刊介绍: The journal provides a unique forum for scientific publication of high-quality research that is exclusively focused on translational aspects of drug delivery. Rationally developed, effective delivery systems can potentially affect clinical outcome in different disease conditions. Research focused on the following areas of translational drug delivery research will be considered for publication in the journal. Designing and developing novel drug delivery systems, with a focus on their application to disease conditions; Preclinical and clinical data related to drug delivery systems; Drug distribution, pharmacokinetics, clearance, with drug delivery systems as compared to traditional dosing to demonstrate beneficial outcomes Short-term and long-term biocompatibility of drug delivery systems, host response; Biomaterials with growth factors for stem-cell differentiation in regenerative medicine and tissue engineering; Image-guided drug therapy, Nanomedicine; Devices for drug delivery and drug/device combination products. In addition to original full-length papers, communications, and reviews, the journal includes editorials, reports of future meetings, research highlights, and announcements pertaining to the activities of the Controlled Release Society.
期刊最新文献
Correction: Immunomodulatory potential of rapamycin-loaded mesoporous silica nanoparticles: pore size-dependent drug loading, release, and in vitro cellular responses. Retraction Note: Ameliorative effect of rubiadin-loaded nanocarriers in STZ-NA-induced diabetic nephropathy in rats: formulation optimization, molecular docking, and in vivo biological evaluation. Correction: Long-acting parenteral formulations of hydrophilic drugs, proteins, and peptide therapeutics: mechanisms, challenges, and therapeutic benefits with a focus on technologies. Chitosan/carbomer nanoparticles- laden in situ gel for improved ocular delivery of timolol: in vitro, in vivo, and ex vivo study. Efficacy of a Zn-based metalorganic framework doped with benznidazole on acute experimental Trypanosoma cruzi infection.
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