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首页> 外文期刊>ACS Omega >Developing Biodegradable Nanoparticles Loaded with Mometasone Furoate for Potential Nasal Drug Delivery
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Developing Biodegradable Nanoparticles Loaded with Mometasone Furoate for Potential Nasal Drug Delivery

机译:研发富马酸莫米松的可生物降解纳米颗粒用于潜在的鼻腔药物输送。

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Intranasal drug administration is considered a routine in the treatment of many nasal conditions including chronic rhinosinusitis (CRS), which is a common disease involving long-term inflammation of the nasal mucosa. Topical nasal steroid treatment is safe and easy to use and plays a basic role in both nonsurgical and surgical treatments for CRS. Intranasal steroid therapy for various time intervals is commonly used before and after endoscopic CRS nasal surgeries to reduce inflammation and edema and to improve mucosal healing. The medication is currently administered via conventional nasal sprays; therefore, there is an incentive to develop more efficient drug delivery systems for the controlled release of topical steroids into the sinonasal cavities over a prolonged period of time. In this study, poly(lactic-co -glycolic acid) (PLGA) nanoparticles (NPs) loaded with mometasone furoate (MF) were generated using the nanoprecipitation method and characterized physicochemically and morphologically. MF NPs exhibited adequate physicochemical properties and high drug encapsulation efficiency and loading content. MF exhibited sustained release from NPs over 7 days in vitro with an initial burst release; various mathematical models were applied to determine the kinetics of drug release. Having demonstrated the ability to load MF in PLGA-NPs using the nanoprecipitation method for the first time, these NPs urge the need for additional investigations to demonstrate their therapeutic potential in nasal delivery applications.
机译:鼻内给药被认为是治疗许多鼻部疾病的常规方法,包括慢性鼻-鼻窦炎(CRS),这是一种涉及鼻粘膜长期炎症的常见疾病。局部鼻激素治疗是安全且易于使用的,并且在非手术和CRS的手术治疗中都起着基本作用。内镜CRS鼻腔手术前后通常使用鼻内激素治疗各种时间间隔,以减少炎症和水肿并改善粘膜愈合。目前,该药物是通过常规的鼻腔喷雾剂给药的。因此,有动力开发更有效的药物递送系统,以在较长的时间内将局部类固醇控制释放到鼻窦腔中。在这项研究中,使用纳米沉淀法生成了糠酸莫米松(MF)负载的聚乳酸-乙醇酸共聚物(PLGA)纳米颗粒(NPs),并对其进行了物理化学和形态学表征。 MF NPs表现出足够的理化特性以及高的药物包封效率和负载量。在体外,MF在7天内表现出从NP的持续释放,并具有初始爆发释放。应用各种数学模型确定药物释放动力学。首次证明了使用纳米沉淀法将PL中的MF负载MF的能力后,这些NP迫切需要进行进一步的研究,以证明其在鼻腔输送应用中的治疗潜力。

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