• 제목/요약/키워드: multidrug resistance 1 gene

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국내에서 분리된 다제 내성 결핵균의 katG 와 inhA 변이 다양성 및 그 빈도 (Mutations of katG and inhA in MDR M. tuberculosis)

  • 림해화;김희연;윤여준;박찬근;김범준;박영길;국윤호
    • Tuberculosis and Respiratory Diseases
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    • 제63권2호
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    • pp.128-138
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    • 2007
  • 연구배경: INH 내성은 katG 와 inhA(ORF와 promoter)의 변이에 의한 것으로 알려져 있다. 유전자 변이는 지역적으로 종류와 빈도가 다르게 나타날 수 있는데 기존 국내의 연구보고들은 흔하다고 알려진 katG의 463 코돈만을 추적한 것들이었다. 따라서 본 연구는 국내에서 분리된 INH 내성균들의 두 유전자에서 나타날 수 있는 변이의 종류와 빈도를 확인하고자 하였다. 연구방법: 대한결핵협회 결핵연구원에서 MDR-TB로 판명된 INH 내성 결핵균 29주로부터 bead beater-phenol법으로 DNA를 추출하여 katG(2,223 bp), inhA ORF(-77~897, 975 bp) 및 inhA promoter(-168~80, 248 bp) 염기서열 결정 및 분석은 ABI PRISM 3730 XL Analyzer 및 MegAlign package를 사용하였다. 결과: 모든 균주들은 분석 표적으로 사용한 세 유전자 부위 중에서 적어도 한 개 이상의 유전자 부위에 변이가 있었다. INH 내성균은 거의 대부분(>93%) katG의 변이를 갖고 inhA 유전자 변이만 있는 경우는 드물어 INH 내성을 결정하는 중요한 요인은 katG의 변이 인 것을 확인할 수 있었다. katG 부위에서 Arg463Leu 변이와 Ser315Thr 변이가 높은 빈도(62.1% 및 55.2%)로 발견되었고, katG 완전결실과 inhA promoter-15($C{\rightarrow}T$) 변이도 일정한 빈도로 나타남을 볼 수 있었다. 그 외 inhA ORF 변이도 1주에서 1종류의 변이가 발견되었다. 결론: 기존 연구결과에서는 보고되지 않고 본 연구에서 처음으로 확인된 변이들도 14 종류나 있어서, INH 내성은 주로 katG 혹은 일부 inhA 특정 부위의 변이가 주도하지만 이들 외에도 다양한 변이가 존재한다는 것을 알 수 있었다. 이들 새로이 확인된 변이들은 염기서열 분석에 의한 INH 내성 여부 판단 시, 기존 알려진 변이 외에 보조 자료로 사용할 수 있을 것으로 생각한다.

Diagnostic Evaluation of Non-Interpretable Results Associated with rpoB Gene in Genotype MTBDRplus Ver 2.0

  • Singh, Binit Kumar;Sharma, Rohini;Kodan, Parul;Soneja, Manish;Jorwal, Pankaj;Nischal, Neeraj;Biswas, Ashutosh;Sarin, Sanjay;Ramachandran, Ranjani;Wig, Naveet
    • Tuberculosis and Respiratory Diseases
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    • 제83권4호
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    • pp.289-294
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    • 2020
  • Background: Line probe assay (LPA) is standard diagnostic tool to detect multidrug resistant tuberculosis. Non-interpretable (NI) results in LPA (complete missing or light wild-type 3 and 8 bands with no mutation band in rpoB gene region) poses a diagnostic challenge. Methods: Sputum samples obtained between October 2016 and July 2017 at the Intermediate Reference Laboratory, All India Institute of Medical Sciences Hospital, New Delhi, India were screened. Smear-positive and smear-negative culture-positive specimens were subjected to LPA Genotype MTBDRplus Ver 2.0. Smear-negative with culture-negative and culture contamination were excluded. LPA NI samples were subjected to phenotypic drug susceptibility testing (pDST) using MGIT-960 and sequencing. Results: A total of 1,614 sputum specimens were screened and 1,340 were included for the study (smear-positive [n=1,188] and smear-negative culture-positive [n=152]). LPA demonstrated 1,306 (97.5%) valid results with TUB (Mycobacterium tuberculosis) band, 24 (1.8%) NI, three (0.2%) valid results without TUB band, and seven (0.5%) invalid results. Among the NI results, 22 isolates (91.7%) were found to be rifampicin (RIF) resistant and two (8.3%) were RIF sensitive in the pDST. Sequencing revealed that rpoB mutations were noted in all 22 cases with RIF resistance, whereas the remaining two cases had wild-type strains. Of the 22 cases with rpoB mutations, the most frequent mutation was S531W (n=10, 45.5%), followed by S531F (n=6, 27.2%), L530P (n=2, 9.1%), A532V (n=2, 9.1%), and L533P (n=2, 9.1%). Conclusion: The present study showed that the results of the Genotype MTBDRplus assay were NI in a small proportion of isolates. pDST and rpoB sequencing were useful in elucidating the cause and clinical meaning of the NI results.

항생제 노출에 따른 Klebsiella pneumoniae의 내성 특성 (Characteristics of Klebsiella pneumoniae exposed to serial antibiotic treatments)

  • 정래승;조아라;김정진;안주희
    • 미생물학회지
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    • 제52권4호
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    • pp.428-436
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    • 2016
  • 항균제에 대한 내성 증가는 국내뿐만 아니라 세계적으로도 인류 건강에 큰논란이 되고 있다. 박테리아에 의한 감염을 치료하기 위해 같은 혹은 다른 계열의 항생제에 순차적으로 노출된다. 따라서, 본 연구는 ciprofloxacin과 meropenem의 순차적 처리에 따른 폐렴간균(Klebsiella pneumoniae)의 생육, 항생제 민감성, 돌연변이 빈도, ${\beta}$-lactamase activity, 생물막 형성 및 내성 관련 유전자 발현을 평가하기 위해 설계되었다. 처리군은 대조군(control; CON), 1/2 MIC ciprofloxacin (1/2CIP), 2 MIC ciprofloxacin (2CIP), 1/2 MIC ciprofloxacin+1/2 MIC meropenem+2 MIC ciprofloxacin (1/2CIP-1/2MEM-2CIP), 1/2 MIC ciprofloxacin+1/2 MIC meropenem+2 MIC meropenem(1/2CIP-1/2MEM-2MEM), 1/2 MIC ciprofloxacin+2 MIC ciprofloxacin+2 MIC meropenem (1/2CIP-2CIP-2MEM)을 포함한다. 24시간의 배양 동안 2CIP처리군에서 K. pneumoniae의 생육이 관찰되지 않았다. 모든 처리군에서 planktonic cell의 수는 7에서 10 log CFU/ml의 유의적인 차이를 보였으나 biofilm cell의 수는 7 log CFU/ml로 비슷하였다. 돌연변이 빈도는 1/2CIP-1/2MEM-2CIP에서 가장 낮은 14%을 보였다. 대조군과 비교하여 1/2CIP-2CIP-2MEM 처리 K. pneumoniae는 piperacillin, cefotaxime, nalidixic에 대한 민감도가 감소되었다. 1/2CIP-1/2MEM-2CIPrk 가장 높은 ${\beta}$-lactamase activity(22 nmol/min/ml)을 보인 반면 1/2CIP-2CIP-2MEM은 가장 낮은 ${\beta}$-lactamase activity (6 nmol/min/ml)을 보였다. Multidrug efflux pump 관련 유전자(acrA, acrB, and ramA)의 발현은 1/2CIP-1/2MER-2MER and 1/2CIP2CIP-2MER 처리된 K. pneumoniae에서 2배 이상 증가하였다. 따라서 순차적 항생제의 처리는 K. pneumoniae의 항생제 내성 양상을 변화시킬 수 있다.

Induction of Phase I, II and III Drug Metabolism/Transport by Xenobiotics

  • Xu Chang Jiang;Li Christina YongTao;Kong AhNg Tony
    • Archives of Pharmacal Research
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    • 제28권3호
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    • pp.249-268
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    • 2005
  • Drug metabolizing enzymes (DMEs) play central roles in the metabolism, elimination and detoxification of xenobiotics and drugs introduced into the human body. Most of the tissues and organs in our body are well equipped with diverse and various DMEs including phase I, phase II metabolizing enzymes and phase III transporters, which are present in abundance either at the basal unstimulated level, and/or are inducible at elevated level after exposure to xenobiotics. Recently, many important advances have been made in the mechanisms that regulate the expression of these drug metabolism genes. Various nuclear receptors including the aryl hydrocarbon receptor (AhR), orphan nuclear receptors, and nuclear factor-erythoroid 2 p45-related factor 2 (Nrf2) have been shown to be the key mediators of drug-induced changes in phase I, phase II metabolizing enzymes as well as phase III transporters involved in efflux mechanisms. For instance, the expression of CYP1 genes can be induced by AhR, which dimerizes with the AhR nuclear translocator (Arnt) , in response to many polycyclic aromatic hydrocarbon (PAHs). Similarly, the steroid family of orphan nuclear receptors, the constitutive androstane receptor (CAR) and pregnane X receptor (PXR), both heterodimerize with the ret-inoid X receptor (RXR), are shown to transcriptionally activate the promoters of CYP2B and CYP3A gene expression by xenobiotics such as phenobarbital-like compounds (CAR) and dexamethasone and rifampin-type of agents (PXR). The peroxisome proliferator activated receptor (PPAR), which is one of the first characterized members of the nuclear hormone receptor, also dimerizes with RXR and has been shown to be activated by lipid lowering agent fib rate-type of compounds leading to transcriptional activation of the promoters on CYP4A gene. CYP7A was recognized as the first target gene of the liver X receptor (LXR), in which the elimination of cholesterol depends on CYP7A. Farnesoid X receptor (FXR) was identified as a bile acid receptor, and its activation results in the inhibition of hepatic acid biosynthesis and increased transport of bile acids from intestinal lumen to the liver, and CYP7A is one of its target genes. The transcriptional activation by these receptors upon binding to the promoters located at the 5-flanking region of these GYP genes generally leads to the induction of their mRNA gene expression. The physiological and the pharmacological implications of common partner of RXR for CAR, PXR, PPAR, LXR and FXR receptors largely remain unknown and are under intense investigations. For the phase II DMEs, phase II gene inducers such as the phenolic compounds butylated hydroxyanisol (BHA), tert-butylhydroquinone (tBHQ), green tea polyphenol (GTP), (-)-epigallocatechin-3-gallate (EGCG) and the isothiocyanates (PEITC, sul­foraphane) generally appear to be electrophiles. They generally possess electrophilic-medi­ated stress response, resulting in the activation of bZIP transcription factors Nrf2 which dimerizes with Mafs and binds to the antioxidant/electrophile response element (ARE/EpRE) promoter, which is located in many phase II DMEs as well as many cellular defensive enzymes such as heme oxygenase-1 (HO-1), with the subsequent induction of the expression of these genes. Phase III transporters, for example, P-glycoprotein (P-gp), multidrug resistance-associated proteins (MRPs), and organic anion transporting polypeptide 2 (OATP2) are expressed in many tissues such as the liver, intestine, kidney, and brain, and play crucial roles in drug absorption, distribution, and excretion. The orphan nuclear receptors PXR and GAR have been shown to be involved in the regulation of these transporters. Along with phase I and phase II enzyme induction, pretreatment with several kinds of inducers has been shown to alter the expression of phase III transporters, and alter the excretion of xenobiotics, which implies that phase III transporters may also be similarly regulated in a coordinated fashion, and provides an important mean to protect the body from xenobiotics insults. It appears that in general, exposure to phase I, phase II and phase III gene inducers may trigger cellular 'stress' response leading to the increase in their gene expression, which ultimately enhance the elimination and clearance of these xenobiotics and/or other 'cellular stresses' including harmful reactive intermediates such as reactive oxygen species (ROS), so that the body will remove the 'stress' expeditiously. Consequently, this homeostatic response of the body plays a central role in the protection of the body against 'environmental' insults such as those elicited by exposure to xenobiotics.

Molecular Target Therapy of AKT and NF-kB Signaling Pathways and Multidrug Resistance by Specific Cell Penetrating Inhibitor Peptides in HL-60 Cells

  • Davoudi, Zahra;Akbarzadeh, Abolfazl;Rahmatiyamchi, Mohammad;Movassaghpour, Ali Akbar;Alipour, Mohsen;Nejati-Koshki, Kazem;Sadeghi, Zohre;Dariushnejad, Hassan;Zarghami, Nosratollah
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권10호
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    • pp.4353-4358
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    • 2014
  • Background: PI3/AKT and NF-kB signaling pathways are constitutively active in acute myeloid leukemia and cross-talk between the two has been shown in various cancers. However, their role in acute myeloid leukemia has not been completely explored. We therefore used cell penetrating inhibitor peptides to define the contributions of AKT and NF-kB to survival and multi drug resistance (MDR) in HL-60 cells. Materials and Methods: Inhibition of AKT and NF-kB activity by AKT inhibitor peptide and NBD inhibitor peptide, respectively, resulted in decreased expression of mRNA for the MDR1 gene as assessed by real time PCR. In addition, treatment of HL-60 cells with AKT and NBD inhibitor peptides led to inhibition of cell viability and induction of apoptosis in a dose dependent manner as detected by flow cytometer. Results: Finally, co-treatment of HL-60 cells with sub-optimal doses of AKT and NBD inhibitor peptides led to synergistic apoptotic responses in AML cells. Conclusions: These data support a strong biological link between NF-kB and PI3-kinase/AKT pathways in the modulation of antiapoptotic and multi drug resistant effects in AML cells. Synergistic targeting of these pathways using NF-kB and PI3-kinase/AK inhibitor peptides may have a therapeutic potential for AML and possibly other malignancies with constitutive activation of these pathways.