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基于共轭和包封的HPMA-PLA纳米聚合物胶束的一线抗结核药物双重递送:针对敏感和耐药结核分枝杆菌的改进且安全的药物递送

Conjugated and Entrapped HPMA-PLA Nano-Polymeric Micelles Based Dual Delivery of First Line Anti TB Drugs: Improved and Safe Drug Delivery against Sensitive and Resistant Mycobacterium Tuberculosis.

作者信息

Upadhyay Seema, Khan Iliyas, Gothwal Avinash, Pachouri Praveen K, Bhaskar N, Gupta Umesh D, Chauhan Devendra S, Gupta Umesh

机构信息

Department of Pharmacy, School of Chemical Sciences and Pharmacy, Central University of Rajasthan, Bandarsindri, Ajmer, Rajasthan, 305817, India.

National JALMA Institute for Leprosy and other Mycobacterial Diseases, Tajganj, Agra, Uttar Pradesh, 282001, India.

出版信息

Pharm Res. 2017 Sep;34(9):1944-1955. doi: 10.1007/s11095-017-2206-3. Epub 2017 Jul 6.

Abstract

PURPOSE

First line antiTB drugs have several physical and toxic manifestations which limit their applications. RIF is a hydrophobic drug and has low water solubility and INH is hepatotoxic. The main objective of the study was to synthesize, characterize HPMA-PLA co-polymeric micelles for the effective dual delivery of INH and RIF.

METHODS

HPMA-PLA co-polymer and HPMA-PLA-INH (HPI) conjugates were synthesized and characterized by FT-IR and H-NMR spectroscopy. Later on RIF loaded HPMA-PLA-INH co-polymeric micelles (PMRI) were formulated and characterized for size, zeta potential and surface morphology (SEM, TEM) as well as critical micellar concentration. The safety was assessed through RBC's interaction study. The prepared PMRI were evaluated through MABA assay against sensitive and resistant strains of M. Tuberculosis.

RESULTS

Size, zeta and entrapment efficiency for RIF loaded HPMA-PLA-INH polymeric micelles (PMRI) was 87.64 ± 1.98 nm, -19 ± 1.93 mV and 97.2 ± 1.56%, respectively. In vitro release followed controlled and sustained delivery pattern. Sustained release was also supported by release kinetics. Haemolytic toxicity of HPI and PMRI was 8.57 and 7.05% (p < 0.01, INH Vs PMRI; p < 0.0001, RIF Vs PMRI), respectively. MABA assay (cytotoxicity) based MIC values of PMRI formulation was observed as ≥0.0625 and ≥0.50 μg/mL (for sensitive and resistant strain). The microscopic analysis further confirmed that the delivery approach was effective than pure drugs.

CONCLUSIONS

RIF loaded and INH conjugated HPMA-PLA polymeric micelles (PMRI) were more effective against sensitive and resistant M tuberculosis. The developed approach can lead to improved patient compliance and reduced dosing in future, offering improved treatment of tuberculosis.

摘要

目的

一线抗结核药物存在多种物理和毒性表现,限制了它们的应用。利福平(RIF)是一种疏水性药物,水溶性低,而异烟肼(INH)具有肝毒性。本研究的主要目的是合成并表征聚(N-(2-羟丙基)甲基丙烯酰胺)-聚乳酸(HPMA-PLA)共聚物胶束,用于异烟肼和利福平的有效双重递送。

方法

合成了HPMA-PLA共聚物和HPMA-PLA-异烟肼(HPI)缀合物,并通过傅里叶变换红外光谱(FT-IR)和氢核磁共振光谱(H-NMR)进行表征。随后制备了载有利福平的HPMA-PLA-异烟肼共聚物胶束(PMRI),并对其粒径、zeta电位、表面形态(扫描电子显微镜(SEM)、透射电子显微镜(TEM))以及临界胶束浓度进行了表征。通过红细胞相互作用研究评估了其安全性。通过微量肉汤稀释法(MABA)测定制备的PMRI对结核分枝杆菌敏感株和耐药株的抗菌活性。

结果

载有利福平的HPMA-PLA-异烟肼聚合物胶束(PMRI)的粒径、zeta电位和包封率分别为87.64±1.98nm、-19±1.93mV和97.2±1.56%。体外释放遵循控释和缓释模式。释放动力学也支持缓释。HPI和PMRI的溶血毒性分别为8.57%和7.05%(p<0.01,异烟肼与PMRI比较;p<0.0001,利福平与PMRI比较)。基于MABA测定(细胞毒性)的PMRI制剂的最低抑菌浓度(MIC)值分别为≥0.0625和≥0.50μg/mL(针对敏感株和耐药株)。显微镜分析进一步证实,该递送方法比单纯药物更有效。

结论

载有利福平和缀合异烟肼的HPMA-PLA聚合物胶束(PMRI)对结核分枝杆菌敏感株和耐药株更有效。所开发的方法可能会提高患者的依从性,并在未来减少给药剂量,从而改善结核病的治疗效果。

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