Particle surface coating for dry powder inhaler formulations.

IF 5.4 Expert opinion on drug delivery Pub Date : 2025-05-01 Epub Date: 2025-03-26 DOI:10.1080/17425247.2025.2482052
Yijing Huang, Chanakya D Patil, Kinnari Santosh Arte, Qi Tony Zhou, Li Lily Qu
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Abstract

Introduction: The development of dry powder inhalers (DPIs) is challenging due to the need for micronized particles to achieve lung delivery. The high specific surface area of micronized particles renders them cohesive and adhesive. Addition of certain excipients like magnesium stearate has been reported to coat the particles and improve the aerosolization in the carrier-based DPI. Therefore, application of particle coating in DPI developments has been investigated and expanded over the years, along with the growing need of high-dose carrier-free DPIs.

Area covered: In addition to modifying inter-particulate forces, particle coating has also been demonstrated to effectively provide moisture resistance, modify particle morphology, improve the stability of biologics, alter dissolution behaviors for DPI developments. These different coating functions have been discussed in the current work. Moreover, various coating techniques including solvent-based coating, dry coating, and vapor coating, as well as coating characterization have been summarized in the present review.

Expert opinion: The extent of particle coating is critical to DPI performance; however, there is a demand for advanced characterization techniques to quantify and understand the coating quality. Further advancements in coating materials, methods, characterization techniques are needed to better relate coating properties to performance, especially for complex drug modalities.

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干粉吸入器配方的颗粒表面涂层。
简介:干粉吸入器(dpi)的发展是具有挑战性的,因为需要微粉颗粒来实现肺输送。微粉颗粒的高比表面积使它们具有内聚性和粘性。据报道,添加某些赋形剂如硬脂酸镁可以包裹颗粒并改善载体DPI中的雾化效果。因此,随着对高剂量无载体DPI的需求不断增长,颗粒涂层在DPI开发中的应用已经被研究和扩展了多年。覆盖领域:除了改变颗粒间的作用力外,颗粒涂层还被证明可以有效地提供抗湿性,改变颗粒形态,提高生物制剂的稳定性,改变DPI开发的溶解行为。本文对这些不同的涂层功能进行了讨论。综述了溶剂型涂层、干式涂层和气相涂层等各种涂层技术及其表征。专家意见:颗粒涂层的程度对DPI性能至关重要;然而,需要先进的表征技术来量化和了解涂层质量。涂层材料、方法和表征技术的进一步发展需要更好地将涂层性能与性能联系起来,特别是对于复杂的药物模式。
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