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用于口腔局部给药的聚合物生物材料:装置与制造技术的进展

Polymeric Biomaterials for Topical Drug Delivery in the Oral Cavity: Advances on Devices and Manufacturing Technologies.

作者信息

Remiro Paula de Freitas Rosa, Nagahara Mariana Harue Taniguchi, Azoubel Rafael Abboud, Franz-Montan Michelle, d'Ávila Marcos Akira, Moraes Ângela Maria

机构信息

Department of Engineering of Materials and of Bioprocesses, School of Chemical Engineering, University of Campinas, Campinas 13083-852, SP, Brazil.

Department of Manufacturing and Materials Engineering, School of Mechanical Engineering, University of Campinas, Campinas 13083-860, SP, Brazil.

出版信息

Pharmaceutics. 2022 Dec 20;15(1):12. doi: 10.3390/pharmaceutics15010012.

Abstract

There are several routes of drug administration, and each one has advantages and limitations. In the case of the topical application in the oral cavity, comprising the buccal, sublingual, palatal, and gingival regions, the advantage is that it is painless, non-invasive, allows easy application of the formulation, and it is capable of avoiding the need of drug swallowing by the patient, a matter of relevance for children and the elderly. Another advantage is the high permeability of the oral mucosa, which may deliver very high amounts of medication rapidly to the bloodstream without significant damage to the stomach. This route also allows the local treatment of lesions that affect the oral cavity, as an alternative to systemic approaches involving injection-based methods and oral medications that require drug swallowing. Thus, this drug delivery route has been arousing great interest in the pharmaceutical industry. This review aims to condense information on the types of biomaterials and polymers used for this functionality, as well as on production methods and market perspectives of this topical drug delivery route.

摘要

药物给药途径有多种,每种途径都有其优缺点。就口腔局部给药而言,包括颊部、舌下、腭部和牙龈区域,其优点是无痛、非侵入性,便于制剂的应用,并且能够避免患者吞服药物,这对于儿童和老年人来说至关重要。另一个优点是口腔黏膜具有高渗透性,它可以在不对胃造成显著损害的情况下,迅速将大量药物输送到血液中。这种给药途径还可以对影响口腔的病变进行局部治疗,作为涉及注射法和需要吞服药物的口服药物的全身治疗方法的替代方案。因此,这种药物递送途径在制药行业引起了极大的兴趣。本综述旨在汇总有关用于此功能的生物材料和聚合物类型的信息,以及这种局部药物递送途径的生产方法和市场前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aba9/9864928/f4d935dd6912/pharmaceutics-15-00012-g001.jpg

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