Mukhtar Mahwash, Csaba Noemi, Robla Sandra, Varela-Calviño Rubén, Nagy Attila, Burian Katalin, Kókai Dávid, Ambrus Rita
Institute of Pharmaceutical Technology and Regulatory Affairs, Faculty of Pharmacy, University of Szeged, 6720 Szeged, Hungary.
Department of Pharmacology, Pharmacy and Pharmaceutical Technology, University of Santiago de Compostela, 15782 Santiago de Compostela, Spain.
Pharmaceutics. 2022 Jul 25;14(8):1543. doi: 10.3390/pharmaceutics14081543.
Marketed dosage forms fail to deliver anti-tubercular drugs directly to the lungs in pulmonary Tuberculosis (TB). Therefore, nanomediated isoniazid (INH)-loaded dry powder for inhalation (Nano-DPI) was developed for macrophage-targeted delivery in TB. Mannosylated chitosan (MC) and hyaluronic acid (HA) with an affinity for the surface mannose and CD44 receptors of macrophages were used in conjugation to prepare hybrid nanosuspension by ionic gelation method using cross-linker, sodium tri-polyphosphate (TPP) followed by freeze-drying to obtain a dry powder composed of nanoparticles (INH-MC/HA NPs). Nanoformulations were evaluated for aerodynamic characteristics, cytotoxicity, hemocompatibility, macrophage phenotype analysis, and immune regulation. Cellular uptake imaging was also conducted to evaluate the uptake of NPs. The nanopowders did not pose any significant toxicity to the cells, along with good compatibility with red blood cells (RBCs). The pro-inflammatory costimulatory markers were upregulated, demonstrating the activation of T-cell response. Moreover, the NPs did not show any tolerogenic effect on the macrophages. Furthermore, confocal imaging exhibited the translocation of NPs in the cells. Altogether, the findings present that nano-DPI was found to be a promising vehicle for targeting macrophages.
市售剂型无法将抗结核药物直接递送至肺结核(TB)患者的肺部。因此,研发了用于肺结核巨噬细胞靶向递送的纳米介导的载异烟肼(INH)吸入干粉(Nano-DPI)。将对巨噬细胞表面甘露糖和CD44受体具有亲和力的甘露糖基化壳聚糖(MC)和透明质酸(HA)结合使用,通过离子凝胶法,使用交联剂三聚磷酸钠(TPP)制备混合纳米混悬液,然后冷冻干燥以获得由纳米颗粒组成的干粉(INH-MC/HA NPs)。对纳米制剂进行了空气动力学特性、细胞毒性、血液相容性、巨噬细胞表型分析和免疫调节评估。还进行了细胞摄取成像以评估纳米颗粒的摄取情况。纳米粉末对细胞没有任何明显毒性,并且与红细胞(RBC)具有良好的相容性。促炎共刺激标志物上调,表明T细胞反应被激活。此外,纳米颗粒对巨噬细胞没有显示出任何耐受性作用。此外,共聚焦成像显示纳米颗粒在细胞内发生易位。总之,研究结果表明,纳米-DPI被发现是一种有前景的巨噬细胞靶向载体。