IF 3.9 3区 工程技术 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Magali Parizzi, Aline Rosa Almeida, Gabriel Salvador, Diogo Dominguini, Mylena Fernandes, Daniela Becker, Michael Ramos Nunes, Anelise Viapiana Masiero, Cleonice Gonçalves da Rosa
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引用次数: 0

摘要

导言:口腔感染对公共卫生构成重大挑战,往往会加重其他并发症,增加全身健康风险。传统的治疗方法往往无法消除顽固的微生物,并导致抗菌药耐药性的上升。纳米颗粒系统提供了一种很有前景的解决方案,它能将活性制剂直接输送到目标部位,提供更有效的局部治疗选择。研究目的本研究旨在利用纳米沉淀法合成含有不同浓度亚甲基蓝的甲基纤维素纳米颗粒并对其进行表征。我们还评估了它们的生物相容性和对口腔感染中常见的主要微生物的抗菌活性。研究方法研究涉及物理化学和形态学表征,包括封装效率、粒度、多分散指数、ZETA电位和透射电子显微镜(TEM)。此外,还进行了控释剖面、对主要口腔病原体的抗菌效果和生物相容性的体外评估。结果显示结果表明,在亚甲基蓝和甲基纤维素浓度较低的情况下,封装效率在 99.1% 到 98.8% 之间,粒径在 186 纳米到 274 纳米之间,zeta 电位在 1.7 到 2.9 mV 之间。与纯亚甲基蓝相比,纳米颗粒表现出更高的抗菌活性。细胞存活率研究表明,纳米颗粒具有生物相容性,在较低浓度的纳米颗粒中,细胞存活率约为 40%。结论:这些研究结果表明,亚甲基蓝纳米粒子在牙科治疗中可作为一种前景广阔的辅助药物。它们具有针对性的抗菌作用,同时有可能减少抗菌药耐药性的产生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photosensitized Methylene Blue Nanoparticles: A Promising Approach for the Control of Oral Infections.

Introduction: Oral infections pose significant public health challenges, often exacerbating other comorbidities and increasing systemic health risks. Traditional treatments often fail to eliminate persistent micro-organisms and contribute to the rise of antimicrobial resistance. Nanoparticulate systems offer a promising solution by delivering active agents directly to targeted sites, providing more effective and localized treatment options. Objective: This study aimed to synthesize and characterize methylcellulose nanoparticles containing methylene blue at different concentrations using the nanoprecipitation method. We also evaluated their biocompatibility and antimicrobial activity against key micro-organisms commonly found in oral infections. Methods: The study involved physicochemical and morphological characterizations, including encapsulation efficiency, particle size, polydispersity index, zeta potential, and transmission electron microscopy (TEM). Additionally, controlled release profiles, antimicrobial efficacy against major oral pathogens, and biocompatibility in vitro assessments were performed. Results: The results revealed encapsulation efficiency between 99.1 and 98.8%, with particle sizes ranging from 186 to 274 nm and a zeta potential of 1.7 to 2.9 mV achieved at lower concentrations of methylene blue and methylcellulose. The nanoparticles demonstrated sustained drug release of 85% for the smaller particles and 45% for the larger particles for more than 10 h. The nanoparticles exhibited superior antimicrobial activity compared to pure methylene blue. Cell viability studies indicated that the nanoparticles were biocompatible with approximately 40% cell viability at lower concentrations of the nanoparticles. Conclusions: These findings suggest that methylene blue nanoparticles could serve as a promising adjunct in dental treatments. They offer targeted antimicrobial action while potentially reducing the development of antimicrobial resistance.

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来源期刊
Biomedicines
Biomedicines Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
5.20
自引率
8.50%
发文量
2823
审稿时长
8 weeks
期刊介绍: Biomedicines (ISSN 2227-9059; CODEN: BIOMID) is an international, scientific, open access journal on biomedicines published quarterly online by MDPI.
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