1.Progress in research of prophylactic therapy in contacts of rifampicin-resistant tuberculosis patients.
Zhan WANG ; Wen Jin WANG ; Xiao Yan DING ; Peng LU ; Li Mei ZHU ; Qiao LIU ; Wei LU
Chinese Journal of Epidemiology 2023;44(3):470-476
Tuberculosis (TB) prophylactic therapy for latent infection, which can reduce the risk for the development of active TB, is an important measure in TB control. China recommends prophylactic therapy for latent tuberculosis infection (LTBI) in some key populations to reduce the risk for TB. Contacts of patients with multi-drug and rifampicin-resistant TB (MDR/RR-TB) are at high risk for the infection with drug-resistant pathogen, however, no unified prophylactic therapy regimen has been recommended for LTBI due to exposure to MDR/RR-TB patients. This paper summarizes the current MDR/RR-TB prophylactic therapy regimen and its protection effect based on the results of the retrieval of literature, guidelines, expert consensus and technical specifications to provide reference for the prevention and control of LTBI.
Humans
;
Rifampin/therapeutic use*
;
Tuberculosis, Multidrug-Resistant/prevention & control*
;
Tuberculosis/drug therapy*
;
Latent Tuberculosis/chemically induced*
;
China
;
Antitubercular Agents/therapeutic use*
2.The past, present and future of tuberculosis treatment.
Kefan BI ; Dan CAO ; Cheng DING ; Shuihua LU ; Hongzhou LU ; Guangyu ZHANG ; Wenhong ZHANG ; Liang LI ; Kaijin XU ; Lanjuan LI ; Ying ZHANG
Journal of Zhejiang University. Medical sciences 2023;51(6):657-668
Tuberculosis (TB) is an ancient infectious disease. Before the availability of effective drug therapy, it had high morbidity and mortality. In the past 100 years, the discovery of revolutionary anti-TB drugs such as streptomycin, isoniazid, pyrazinamide, ethambutol and rifampicin, along with drug combination treatment, has greatly improved TB control globally. As anti-TB drugs were widely used, multidrug-resistant (MDR) and extensively drug-resistant (XDR) strains of Mycobacterium tuberculosis emerged due to acquired genetic mutations, and this now presents a major problem for effective treatment. Genes associated with drug resistance have been identified, including katG mutations in isoniazid resistance, rpoB mutations in rifampin resistance, pncA mutations in pyrazinamide resistance, and gyrA mutations in quinolone resistance. The major mechanisms of drug resistance include loss of enzyme activity in prodrug activation, drug target alteration, overexpression of drug target, and overexpression of the efflux pump. During the disease process, Mycobacterium tuberculosis may reside in different microenvironments where it is expose to acidic pH, low oxygen, reactive oxygen species and anti-TB drugs, which can facilitate the development of non-replicating persisters and promote bacterial survival. The mechanisms of persister formation may include toxin-antitoxin (TA) modules, DNA protection and repair, protein degradation such as trans-translation, efflux, and altered metabolism. In recent years, the use of new anti-TB drugs, repurposed drugs, and their drug combinations has greatly improved treatment outcomes in patients with both drug-susceptible TB and MDR/XDR-TB. The importance of developing more effective drugs targeting persisters of Mycobacterium tuberculosis is emphasized. In addition, host-directed therapeutics using both conventional drugs and herbal medicines for more effective TB treatment should also be explored. In this article, we review historical aspects of the research on anti-TB drugs and discuss the current understanding and treatments of drug resistant and persistent tuberculosis to inform future therapeutic development.
Humans
;
Pyrazinamide/therapeutic use*
;
Isoniazid/therapeutic use*
;
Antitubercular Agents/therapeutic use*
;
Tuberculosis, Multidrug-Resistant/microbiology*
;
Mycobacterium tuberculosis/genetics*
;
Tuberculosis/drug therapy*
;
Rifampin/therapeutic use*
;
Mutation
;
Drug Resistance, Multiple, Bacterial/genetics*
3.Clinical value of the MeltPro MTB assays in detection of drug-resistant tuberculosis in paraffin-embedded tissues.
Jia Lu CHE ; Zi Chen LIU ; Kun LI ; Wei Li DU ; Dan ZHAO ; Jing MU ; Yu Jie DONG ; Nan Ying CHE
Chinese Journal of Pathology 2023;52(5):466-471
Objective: To evaluate the clinical value of the MeltPro MTB assays in the diagnosis of drug-resistant tuberculosis. Methods: A cross-sectional study design was used to retrospectively collect all 4 551 patients with confirmed tuberculosis between January 2018 and December 2019 at Beijing Chest Hospital, Capital Medical University. Phenotypic drug sensitivity test and GeneXpert MTB/RIF (hereafter referred to as "Xpert") assay were used as gold standards to analyze the accuracy of the probe melting curve method. The clinical value of this technique was also evaluated as a complementary method to conventional assays of drug resistance to increase the detective rate of drug-resistant tuberculosis. Results: By taking the phenotypic drug susceptibility test as the gold standard, the sensitivity of the MeltPro MTB assays to detect resistance to rifampicin, isoniazid, ethambutol and fluoroquinolone was 14/15, 95.7%(22/23), 2/4 and 8/9,respectively; and the specificity was 92.0%(115/125), 93.2%(109/117), 90.4%(123/136) and 93.9%(123/131),respectively; the overall concordance rate was 92.1%(95%CI:89.6%-94.1%),and the Kappa value of the consistency test was 0.63(95%CI:0.55-0.72).By taking the Xpert test results as the reference, the sensitivity of this technology to the detection of rifampicin resistance was 93.6%(44/47), the specificity was100%(310/310), the concordance rate was 99.2%(95%CI:97.6%-99.7%), and the Kappa value of the consistency test was 0.96(95%CI:0.93-0.99). The MeltPro MTB assays had been used in 4 551 confirmed patients; the proportion of patients who obtained effective drug resistance results increased from 83.3% to 87.8%(P<0.01); and detection rate of rifampicin, isoniazid, ethambutol, fluoroquinolone resistance, multidrug and pre-extensive drug resistance cases were increased by 3.2%, 14.7%, 22.2%, 13.7%, 11.2% and 12.5%, respectively. Conclusion: The MeltPro MTB assays show satisfactory accuracy in the diagnosis of drug-resistant tuberculosis. This molecular pathological test is an effective complementary method in improving test positivity of drug-resistant tuberculosis.
Humans
;
Rifampin/therapeutic use*
;
Antibiotics, Antitubercular/therapeutic use*
;
Mycobacterium tuberculosis
;
Ethambutol/pharmacology*
;
Isoniazid/pharmacology*
;
Paraffin Embedding
;
Retrospective Studies
;
Cross-Sectional Studies
;
Drug Resistance, Bacterial
;
Sensitivity and Specificity
;
Tuberculosis, Multidrug-Resistant/drug therapy*
4.Cost-Effectiveness Analysis of Combined Chemotherapy Regimen Containing Bedaquiline in the Treatment of Multidrug-Resistant Tuberculosis in China.
Cai Hong XU ; Ying Peng QIU ; Zi Long HE ; Dong Mei HU ; Xiao YUE ; Zhong Dan CHEN ; Yuan Yuan XU ; Yan Lin ZHAO
Biomedical and Environmental Sciences 2023;36(6):501-509
OBJECTIVE:
This study aims to estimate the cost-effectiveness of the combined chemotherapy regimen containing Bedaquiline (BR) and the conventional treatment regimen (CR, not containing Bedaquiline) for the treatment of adults with multidrug-resistant tuberculosis (MDR-TB) in China.
METHODS:
A combination of a decision tree and a Markov model was developed to estimate the cost and effects of MDR patients in BR and CR within ten years. The model parameter data were synthesized from the literature, the national TB surveillance information system, and consultation with experts. The incremental cost-effectiveness ratio (ICER) of BR vs. CR was determined.
RESULTS:
BR ( vs. CR) had a higher sputum culture conversion rate and cure rate and prevented many premature deaths (decreased by 12.8%), thereby obtaining more quality-adjusted life years (QALYs) (increased by 2.31 years). The per capita cost in BR was as high as 138,000 yuan, roughly double that of CR. The ICER for BR was 33,700 yuan/QALY, which was lower than China's 1× per capita Gross Domestic Product (GDP) in 2020 (72,400 yuan).
CONCLUSION
BR is shown to be cost effective. When the unit price of Bedaquiline reaches or falls below 57.21 yuan per unit, BR is expected to be the dominant strategy in China over CR.
Adult
;
Humans
;
Antitubercular Agents/therapeutic use*
;
Cost-Effectiveness Analysis
;
Cost-Benefit Analysis
;
Tuberculosis, Multidrug-Resistant/drug therapy*
;
China/epidemiology*
5.Accuracy of Xpert® MTB/RIF for the detection of tuberculosis and rifampicin-resistance tuberculosis in China: A systematic review and meta-analysis.
Jing Nan FENG ; Le GAO ; Yi Xin SUN ; Ji Chun YANG ; Si Wei DENG ; Feng SUN ; Si Yan ZHAN
Journal of Peking University(Health Sciences) 2020;53(2):320-326
OBJECTIVE:
To systematically review the diagnostic accuracy of Xpert® Mycobacterium tuberculosis/rifampicin (Xpert® MTB/RIF) for the detection of active tuberculosis (TB) and rifampicin-resistance TB in Chinese patients.
METHODS:
Four Chinese databases (SinoMed, CNKI, WanFang database, and VIP) and three English databases (PubMed, Embase, and The Cochrane Library) were searched from January 1, 2000 to September 15, 2017, to identify diagnostic tests about the accuracy of Xpert® MTB/RIF in Chinese patients. Two investigators screened the articles and extracted the information independently, and then the quality of each included study was evaluated by Quality Assessment of Diagnostic Accuracy Studies (QUADAS)-2. Bivariate random-effects meta-analysis was conducted to pool the sensitivity and specificity. In addition, subgroup analyses were performed based on patient type (TB patient and TB suspected patient), sample type (sputum, bronchoalveolar lavage fluid and others). All statistical analyses were conducted with Stata version 13.0.
RESULTS:
A total of 47 articles were included in this systematic review. Most of them (38 articles) were in Chinese and only 9 articles were in English. All the articles were published during 2014 to 2017, and the sample size ranged from 31 to 3 151. Forty articles including 42 comparisons about TB were finally included with the pooled sensitivity of 0.94 (95%CI: 0.92, 0.95) and the pooled specificity of 0.87 (95%CI: 0.84, 0.91). Subgroup analysis showed that different patient and specimen types had no significant differences on sensitivity, but the specificity of sputum group was higher than that of bronchoalveolar lavage fluid. As for the detection of rifampicin-resistant TB, 33 articles (38 comparisons) were analyzed, the pooled sensitivity and specificity were 0.92 (95%CI: 0.89, 0.94) and 0.98 (95%CI: 0.97, 0.99) respectively. There were no significant differences between the patient and specimen in the subgroup analyses. The Deeks funnel plot showed a possible publication bias for detecting active tuberculosis (P=0.08) and no publication bias for rifampicin-resistant TB (P=0.24). The likelihood ratio scatter gram showed that in clinical applications, Xpert® MTB/RIF had a good diagnostic ability for detecting active tuberculosis, and it had good clinical diagnostic value in detecting rifampicin-resistant TB.
CONCLUSION
Xpert® MTB/RIF has good sensitivity and specificity in detecting TB and rifampicin-resistant TB in Chinese people. In particular, it has good clinical value in diagnosing rifampicin-resistance TB.
Antibiotics, Antitubercular/therapeutic use*
;
China
;
Diagnostic Tests, Routine
;
Drug Resistance, Bacterial
;
Humans
;
Rifampin/pharmacology*
;
Sensitivity and Specificity
;
Tuberculosis/drug therapy*
;
Tuberculosis, Multidrug-Resistant/drug therapy*
;
Tuberculosis, Pulmonary/drug therapy*
6.Activities of Biapenem against Mycobacterium tuberculosis in Macrophages and Mice.
Zhen Yong GUO ; Wei Jie ZHAO ; Mei Qin ZHENG ; Shuo LIU ; Chen Xia YAN ; Peng LI ; Shao Fa XU
Biomedical and Environmental Sciences 2019;32(4):235-241
OBJECTIVE:
To assess the activities of biapenem against multidrug-resistant and extensively drug-resistant Mycobacterium tuberculosis.
METHODS:
Biapenem/clavulanate (BP/CL) was evaluated for in vitro activity against Mycobacterium tuberculosis (Mtb) multidrug-resistant (MDR) isolates, extensively drug-resistant (XDR) isolates, and the H37RV strain. BP/CL activity against the H37Rv strain was assessed in liquid cultures, in macrophages, and in mice..
RESULTS:
BP/CL exhibited activity against MDR and XDR Mtb isolates in liquid cultures. BP/CL treatment significantly reduced the number of colony forming units (CFU) of Mtb within macrophages compared with control untreated infected macrophages. Notably, BP/CL synergized in pairwise combinations with protionamide, aminosalicylate, and capreomycin to achieve a fractional inhibitory concentration for each pairing of 0.375 in vitro. In a mouse tuberculosis infection model, the efficacy of a cocktail of levofloxacin + pyrazinamide + protionamide + aminosalicylate against Mtb increased when the cocktail was combined with BP/CL, achieving efficacy similar to that of the positive control treatment (isoniazid + rifampin + pyrazinamide) after 2 months of treatment.
CONCLUSION
BP/CL may provide a new option to clinically treat MDR tuberculosis.
Animals
;
Anti-Infective Agents
;
pharmacology
;
therapeutic use
;
Cell Line
;
Drug Evaluation, Preclinical
;
Macrophages
;
Mice
;
Mycobacterium tuberculosis
;
drug effects
;
Thienamycins
;
pharmacology
;
therapeutic use
;
Tuberculosis, Multidrug-Resistant
;
drug therapy
7.The Effects of Secondary Pneumonia on the Curative Efficacy of Multidrug-resistant Tuberculosis: A Retrospective Cohort Study.
Shou Yong TAN ; Zhuo Zhi LIANG ; Gift CHIWALA ; Hao Bin KUANG ; Zhi Pei HUANG ; Hong Juan QIN ; Yan LI ; Yan Qiong LI ; H M ADNAN HAMEED ; Tian Yu ZHANG
Biomedical and Environmental Sciences 2018;31(12):908-912
8.Patterns of rpoC Mutations in Drug-Resistant Mycobacterium tuberculosis Isolated from Patients in South Korea.
Yeo Jun YUN ; Jong Seok LEE ; Je Chul YOO ; Eunjin CHO ; Dahee PARK ; Yoon Hoh KOOK ; Keun Hwa LEE
Tuberculosis and Respiratory Diseases 2018;81(3):222-227
BACKGROUND: Rifampicin (RFP) is one of the principal first-line drugs used in combination chemotherapies against Mycobacterium tuberculosis, and its use has greatly shortened the duration of chemotherapy for the successful treatment of drug-susceptible tuberculosis. Compensatory mutations have been identified in rpoC that restore the fitness of RFP-resistant M. tuberculosis strains with mutations in rpoB. To investigate rpoC mutation patterns, we analyzed 93 clinical M. tuberculosis isolates from patients in South Korea. METHODS: Drug-resistant mycobacterial isolates were cultured to determine their susceptibility to anti-tubercular agents. Mutations in rpoC were identified by sequencing and compared with the relevant wild-type DNA sequence. RESULTS: In total, 93 M. tuberculosis clinical isolates were successfully cultured and tested for drug susceptibilities. They included 75 drug-resistant tuberculosis species, of which 66 were RFP-resistant strains. rpoC mutations were found in 24 of the 66 RFP-resistant isolates (36.4%). Fifteen different types of mutations, including single mutations (22/24, 91.7%) and multiple mutations (2/24, 8.3%), were identified, and 12 of these mutations are reported for the first time in this study. The most frequent mutation involved a substitution at codon 452 (nt 1356) resulting in amino acid change F452L. CONCLUSION: Fifteen different types of mutations were identified and were predominantly single-nucleotide substitutions (91.7%). Mutations were found only in dual isoniazid- and RFP-resistant isolates of M. tuberculosis. No mutations were identified in any of the drug-susceptible strains.
Base Sequence
;
Codon
;
Drug Resistance, Multiple
;
Drug Therapy
;
Drug Therapy, Combination
;
Humans
;
Korea*
;
Mycobacterium tuberculosis*
;
Mycobacterium*
;
Rifampin
;
Tuberculosis
;
Tuberculosis, Multidrug-Resistant
9.Discovery of the first macrolide antibiotic binding protein in Mycobacterium tuberculosis: a new antibiotic resistance drug target.
Qingqing ZHANG ; Huijuan LIU ; Xiang LIU ; Dunquan JIANG ; Bingjie ZHANG ; Hongliang TIAN ; Cheng YANG ; Luke W GUDDAT ; Haitao YANG ; Kaixia MI ; Zihe RAO
Protein & Cell 2018;9(11):971-975
10.Associations between Mycobacterium tuberculosis Beijing genotype and drug resistance to four first-line drugs: a survey in China.
Haican LIU ; Yuanyuan ZHANG ; Zhiguang LIU ; Jinghua LIU ; Yolande HAUCK ; Jiao LIU ; Haiyan DONG ; Jie LIU ; Xiuqin ZHAO ; Bing LU ; Yi JIANG ; Gilles VERGNAUD ; Christine POURCEL ; Kanglin WAN
Frontiers of Medicine 2018;12(1):92-97
Investigations on the genetic diversity of Mycobacterium tuberculosis in China have shown that Beijing genotype strains play a dominant role. To study the association between the M. tuberculosis Beijing genotype and the drug-resistance phenotype, 1286 M. tuberculosis clinical isolates together with epidemiological and clinical information of patients were collected from the center for tuberculosis (TB) prevention and control or TB hospitals in Beijing municipality and nine provinces or autonomous regions in China. Drug resistance testing was conducted on all the isolates to the four first-line anti-TB drugs (isoniazid, rifampicin, streptomycin, and ethambutol). A total of 585 strains were found to be resistant to at least one of the four anti-TB drugs. The Beijing family strains consisted of 499 (53.20%) drug-sensitive strains and 439 (46.80%) drug-resistant strains, whereas the non-Beijing family strains comprised 202 (58.05%) drug-sensitive strains and 146 (41.95%) drug-resistant strains. No significant difference was observed in prevalence (χ= 2.41, P > 0.05) between the drug-resistant and drugsensitive strains among the Beijing family strains. Analysis of monoresistance, multidrug-resistant TB, and geographic distribution of drug resistance did not find any relationships between the M. tuberculosis Beijing genotype and drug-resistance phenotype in China. Results confirmed that the Beijing genotype, the predominant M. tuberculosis genotype in China, was not associated with drug resistance.
Antitubercular Agents
;
therapeutic use
;
China
;
epidemiology
;
Drug Resistance, Multiple, Bacterial
;
Genetic Variation
;
Genotype
;
Humans
;
Microbial Sensitivity Tests
;
Mycobacterium tuberculosis
;
genetics
;
isolation & purification
;
Phenotype
;
Tuberculosis, Multidrug-Resistant
;
drug therapy
;
epidemiology

Result Analysis
Print
Save
E-mail