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用于制造口腔崩解膜的专利技术综述:专利分析证明(2000 - 2020年)

A Comprehensive Review of Patented Technologies to Fabricate Orodispersible Films: Proof of Patent Analysis (2000-2020).

作者信息

Gupta Maram Suresh, Gowda Devegowda Vishakante, Kumar Tegginamath Pramod, Rosenholm Jessica M

机构信息

Department of Pharmaceutics, JSS College of Pharmacy, JSS Academy of Higher Education and Research (JSSAHER), Sri Shivarathreeshwara Nagar, Mysore 570015, India.

Pharmaceutical Sciences Laboratory, Faculty of Science and Engineering, ÅboAkademi University, 20520 Turku, Finland.

出版信息

Pharmaceutics. 2022 Apr 8;14(4):820. doi: 10.3390/pharmaceutics14040820.

Abstract

Orodispersible films (ODFs)are ultra-thin, stamp-sized, rapidly disintegrating, and attractive oral drug delivery dosage forms best suited for the pediatric and geriatric patient populations. They can be fabricated by different techniques, but the most popular, simple, and industrially applicable technique is the solvent casting method (SCM). In addition, they can also be fabricated by extrusion, printing, electrospinning, and by a combination of these technologies (e.g., SCM + printing). The present review is aimed to provide a comprehensive overview of patented technologies of the last two decades to fabricate ODFs. Through this review, we present evidence to adamantly confirm that SCM is the most popular method while electrospinning is the most recent and upcoming method to fabricate ODFs. We also speculate around the more patent-protected technologies especially in the domain of printing (two or three-dimensional), extrusion (ram or hot-melt extrusion), and electrospinning, or a combination of the methods thereof.

摘要

口腔崩解膜(ODFs)是超薄的、邮票大小的、能快速崩解的、有吸引力的口服给药剂型,最适合儿科和老年患者群体。它们可以通过不同技术制备,但最流行、简单且适用于工业生产的技术是溶剂浇铸法(SCM)。此外,它们也可以通过挤出、印刷、静电纺丝以及这些技术的组合(如SCM + 印刷)来制备。本综述旨在全面概述过去二十年中制备口腔崩解膜的专利技术。通过本综述,我们提供证据坚定地证实溶剂浇铸法是最流行的方法,而静电纺丝是制备口腔崩解膜的最新且即将兴起的方法。我们还推测了更多受专利保护的技术,特别是在印刷(二维或三维)、挤出(柱塞或热熔挤出)和静电纺丝领域,或它们的组合方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a271/9031760/3b3bf3a06fa4/pharmaceutics-14-00820-g019.jpg

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