Omidian Hossein, Nokhodchi Ali, Babanejad Niloofar
Barry and Juddy Silverman College of Pharmacy, Nova Southeastern University, Fort Lauderdale, FL 33328, USA.
Lupin Inhalation Research Center, 4006 NW 124th Ave, Coral Springs, FL 33065, USA.
Pharmaceuticals (Basel). 2025 Jan 27;18(2):175. doi: 10.3390/ph18020175.
This manuscript provides a comprehensive review of advancements in dry powder inhaler (DPI) technology for pulmonary and systemic drug delivery, focusing on proteins, peptides, nucleic acids, and small molecules. Innovations in spray-drying (SD), spray freeze-drying (SFD), and nanocarrier engineering have led to enhanced stability, bioactivity, and aerosol performance. Studies reveal the critical role of excipients, particle morphology, and device design in optimizing deposition and therapeutic efficacy. Applications include asthma, cystic fibrosis, tuberculosis (TB), and lung cancer, with emerging platforms such as ternary formulations and siRNA-loaded systems demonstrating significant clinical potential. Challenges such as stability, scalability, and patient adherence are addressed through novel strategies, including Quality by Design (QbD) approaches and advanced imaging tools. This work outlines pathways for future innovation in pulmonary drug delivery.
本手稿全面综述了用于肺部和全身给药的干粉吸入器(DPI)技术的进展,重点关注蛋白质、肽、核酸和小分子。喷雾干燥(SD)、喷雾冷冻干燥(SFD)和纳米载体工程方面的创新提高了稳定性、生物活性和气溶胶性能。研究揭示了辅料、颗粒形态和装置设计在优化沉积和治疗效果方面的关键作用。应用包括哮喘、囊性纤维化、结核病(TB)和肺癌,三元制剂和载siRNA系统等新兴平台显示出巨大的临床潜力。通过新颖的策略应对稳定性、可扩展性和患者依从性等挑战,包括质量源于设计(QbD)方法和先进的成像工具。这项工作概述了肺部药物递送未来创新的途径。