Advancing biofilm management through nanoformulation strategies: a review of dosage forms and administration routes.

IF 4.3 4区 医学 Q1 PHARMACOLOGY & PHARMACY Journal of Drug Targeting Pub Date : 2023-12-01 Epub Date: 2023-11-16 DOI:10.1080/1061186X.2023.2270619
Oyku Simsekli, Irfan Bilinmis, Sumeyye Celik, Gizem Arık, Abdullah Yucel Baba, Alptug Karakucuk
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Abstract

Biofilms are complex microbial communities formed by the attachment of bacteria or fungi to surfaces encased in a self-produced polymeric matrix. These biofilms are highly resistant to conventional antimicrobial therapies. The resistance mechanisms exhibited by biofilms include low antibiotic absorption, sluggish replication, adaptive stress response, and the formation of dormant-like phenotypes. The eradication of biofilms requires alternative strategies and approaches. Nanotechnological drug delivery systems allow excellent control over the drug chemistry, surface area, particle size, particle shape, and composition of nanostructures. Nanoformulations can enhance the efficacy of antimicrobial agents by improving their bioavailability, stability, and targeted delivery to the site of infection that helps biofilm eradication more effectively. In addition to nanoformulations, the route of administration and choice of dosage forms play a crucial role in treating biofilm infections. Systemic administration of antibiotics is effective in controlling systemic infection and sepsis associated with biofilms. Alternative routes of administration, such as inhalation, vaginal, ocular, or dermal, have been explored to target biofilm infections in specific organs. This review primarily examines the utilisation of nanoformulations in various administration routes for biofilm management. It also provides an overview of biofilms, current approaches, and the drawbacks associated with conventional methods.

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通过纳米制剂策略推进生物膜管理:剂型和给药途径综述。
生物膜是由细菌或真菌附着在自制聚合物基质中的表面形成的复杂微生物群落。这些生物膜对传统的抗菌疗法具有很高的耐药性。生物膜表现出的抗性机制包括低抗生素吸收、缓慢复制、适应性应激反应和休眠样表型的形成。根除生物膜需要替代策略和方法。纳米技术药物递送系统允许对药物化学、表面积、颗粒大小、颗粒形状和纳米结构的组成进行极好的控制。纳米制剂可以通过提高抗微生物剂的生物利用度、稳定性和靶向递送到感染部位来提高其疗效,从而有助于更有效地根除生物膜。除了纳米制剂外,给药途径和剂型的选择在治疗生物膜感染方面也起着至关重要的作用。抗生素的全身给药可有效控制与生物膜相关的全身感染和败血症。已经探索了替代给药途径,如吸入、阴道、眼部或真皮,以针对特定器官中的生物膜感染。这篇综述主要考察了纳米制剂在生物膜管理的各种给药途径中的应用。它还概述了生物膜、目前的方法以及与传统方法相关的缺点。
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来源期刊
CiteScore
9.10
自引率
0.00%
发文量
165
审稿时长
2 months
期刊介绍: Journal of Drug Targeting publishes papers and reviews on all aspects of drug delivery and targeting for molecular and macromolecular drugs including the design and characterization of carrier systems (whether colloidal, protein or polymeric) for both vitro and/or in vivo applications of these drugs. Papers are not restricted to drugs delivered by way of a carrier, but also include studies on molecular and macromolecular drugs that are designed to target specific cellular or extra-cellular molecules. As such the journal publishes results on the activity, delivery and targeting of therapeutic peptides/proteins and nucleic acids including genes/plasmid DNA, gene silencing nucleic acids (e.g. small interfering (si)RNA, antisense oligonucleotides, ribozymes, DNAzymes), as well as aptamers, mononucleotides and monoclonal antibodies and their conjugates. The diagnostic application of targeting technologies as well as targeted delivery of diagnostic and imaging agents also fall within the scope of the journal. In addition, papers are sought on self-regulating systems, systems responsive to their environment and to external stimuli and those that can produce programmed, pulsed and otherwise complex delivery patterns.
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