Gupta Anuj K, Chauhan D S, Srivastava K, Das R, Batra Shweta, Mittal Mayank, Goswami Pooja, Singhal Neelja, Sharma V D, Venkatesan K, Hasnain S E, Katoch V M
National JALMA Institute for Leprosy and Other Mycobacterial Diseases (ICMR), Agra- 282001, India.
J Commun Dis. 2006 Mar;38(3):246-54.
Multidrug resistance has been posing an increasing problem in the treatment of tuberculosis. Mutations in the genomic targets of drugs have been identified as the major mechanism behind this resistance. However, high degree of resistance in some isolates towards major drugs like rifampicin, isoniazid, ethambutol and streptomycin can not be explained solely on the basis of mutations. Besides this, certain other mechanisms like efflux pumps have also been considered as alternative mechanisms in the drug resistant isolates where there is no mutation and these mechanisms are specially important for drug resistance in non-tuberculous mycobacteria (NTM). In this study, we have estimated efflux pump mediated drug resistance in different mycobacterial species with the help of efflux pump inhibitors. All major anti-tuberculous drugs have been shown to be extruded by efflux pumps and the degree to which these drugs are extruded, vary in different mycobacterial species and isolates. The correlation of this resistance with functional activity of two major efflux pump genes pstB and Rv1258c was also assessed by reverse transcription PCR. Besides the significant role of these pumps observed, other efflux pumps, present in mycobacteria, may also be involved in drug resistance and need to be investigated.
多重耐药性在结核病治疗中一直是一个日益严重的问题。药物基因组靶点的突变已被确定为这种耐药性背后的主要机制。然而,一些分离株对利福平、异烟肼、乙胺丁醇和链霉素等主要药物的高度耐药性不能仅基于突变来解释。除此之外,某些其他机制,如外排泵,也被认为是无突变的耐药分离株中的替代机制,并且这些机制对非结核分枝杆菌(NTM)的耐药性尤为重要。在本研究中,我们借助外排泵抑制剂估计了不同分枝杆菌物种中外排泵介导的耐药性。所有主要的抗结核药物都已被证明可被外排泵排出,并且这些药物被排出的程度在不同的分枝杆菌物种和分离株中有所不同。还通过逆转录PCR评估了这种耐药性与两个主要外排泵基因pstB和Rv1258c功能活性的相关性。除了观察到这些泵的重要作用外,分枝杆菌中存在的其他外排泵也可能参与耐药性,需要进行研究。