工程利福平包封可吸入微粒用于精确治疗肺结核:体内分布和治疗评价。

IF 3.9 4区 医学 Q1 PHARMACOLOGY & PHARMACY
Ruchi Tiwari, Patibandla Jahnavi, Dhakshnamoorthy Vellingiri, Saroj Yadav, Aniruddha B Jadhav, Tatapudi Naga Aparna, V Sekar, Pankaj Sharma
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引用次数: 0

摘要

结核病继续在全球造成大量死亡,这突出表明需要改进给药系统。本文的目的是描述利福平胶囊化PLGA微颗粒用于部位特异性吸入治疗的处方,优化和体内评估。通过喷雾干燥产生吸入微粒,并采用DoE方法获得最合适的空气动力学特性(质量中位数空气动力学直径(MMAD) 2.5µm,细颗粒分数(FPF) 62%)。利福平微颗粒包封可延长BALB/c小鼠和Wistar大鼠的肺停留时间,比游离口服利福平浓度高2.4倍。此外,通过计算流体动力学(CFD)模拟和使用人工智能确定的预测模型,在吸入流速为30L/min时,针对肺泡区域的气溶胶沉积达到最大,该区域的气溶胶沉积占52.8%。结核感染小鼠肺组织细菌负荷降低至3.2 log菌落形成单位(CFU), TNF-α水平降低,IL-10水平升高。通过这种加速稳定性试验,确定该制剂的保质期为24个月。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineering rifampicin-encapsulated inhalable microparticles for precision tuberculosis therapy: in vivo distribution and therapeutic evaluation.

Tuberculosis (TB) continues to cause significant global mortality, highlighting the need for improved drug delivery systems. The objective of this paper focuses in describing the formulation, optimisation and in vivo assessment of rifampicin encapsulated PLGA microparticles for site-specific inhalation therapy. Microparticles for inhalation were produced by spray drying, and the DoE methodology was applied to reach the most suitable aerodynamic properties (mass median aerodynamics diameter (MMAD) 2.5 µm, fine particle fraction (FPF) 62%). Microparticles encapsulation of rifampicin led to prolongation of the pulmonary residence time both in BALB/c mice and Wistar rats and was 2.4 times higher than the concentration of the free oral rifampicin. Further, via Computational Fluid Dynamics (CFD) simulations and the use of AI-determined predictive modelling, aerosol deposition was maximised at an inhalation flow rate of 30 L/min targeting the alveolar region indicated by having 52.8% of the aerosol deposition at this region. The TB-infected mice, which showed the lung tissue bacterial load was reduced to 3.2 log colony forming unit (CFU) and the levels of TNF-α were decreased while IL-10 levels were increased. With this kind of accelerated stability testing it was ascertained that the type of formulation had a shelf-life of 24 months.

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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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