• Title/Summary/Keyword: drug resistance

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Drug Resistance and R-plasmid of E. coli Isolated from Patients, Domestic Animals and Drainages (환자, 가축 및 하천에서 분리한 대장균의 약제내성과 전달성 R-plasmid)

  • 김현주;정규선
    • YAKHAK HOEJI
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    • v.35 no.2
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    • pp.61-72
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    • 1991
  • These studies were made to assess the present stage of resistance to antibiotics, incidence and transferability of R-factors against E. coli. From March to July 1987, 59 strains of E. coli were isolated from specimens of patients collected at university hospitals in Seoul, 64 strains from stools of domestic animals and 66 strains from drainages in Seoul. These specimens were tested for resistance to 12 kinds of antimicrobial agents by means of agar dilution method. Using Muller-Hinton agar for the assay of drug resistance and tryptic soy broth as propagating medium for conjugation. The strains of E. coli were found to be resistant to one or more antibiotics and were considered to be potential donors of R-plasmid. The resistant strains of E. coli isolated from patients, domestic animals and drainages were found to be 55(93%), 33(52%) and 31(47%), respectively. Resistance to Tc, Ap and Cb was the highest in those isolated from patients and drainages, and resistance to Tc, Cm and Sm was the highest in those isolated from domestic animals. In the transfer test of drug resistance by conjugation method, 17 strains (47%) isolated from patients, 15(54%) isolated from domestic animals and 15(56%) isolated from drainages showed positive results, transperable resistant plasmid molecules with variable range in each strain.

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Modulation of Drug Resistance in Ovarian Cancer Cells by Inhibition of Protein Kinase C-alpha (PKC-α) with Small Interference RNA (siRNA) Agents

  • Zhao, Li-Jun;Xu, Heng;Qu, Jun-Wei;Zhao, Wan-Zhou;Zhao, Yi-Bing;Wang, Jin-Hua
    • Asian Pacific Journal of Cancer Prevention
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    • v.13 no.8
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    • pp.3631-3636
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    • 2012
  • Objective: To determine whether silence of $PKC-{\alpha}$ expression by small interference RNA (siRNA) might regulate MDR1 expression and reverse chemoresistance of ovarian cancer. Methods: We measured gene and protein expression of MDR1 and $PKC-{\alpha}$ in ovarian cancer cells and assessed their correlation with cell drug resistance. We also examined whether blocking $PKC-{\alpha}$ by RNA interference (RNAi) affected MDR1 expression and reversed drug resistance in drug sensitivity tests. Results: The drug resistance cell lines, OV1228/DDP and OV1228/Taxol, had higher gene and protein expression of MDR1 and $PKC-{\alpha}$ than their counterpart sensitive cell line, OV1228. SiRNA depressed $PKC-{\alpha}$ gene protein expression, as well as MDR1 and protein expression and improved the drug sensitivity in OV1228/DDP and OV1228/Taxol cells. Conclusion: These results indicated that decreasing $PKC-{\alpha}$ expression with siRNA might be an effective method to improve drug sensitivity in drug resistant cells with elevated levels of $PKC-{\alpha}$ and MDR1. A new siRNA-based therapeutic strategy targeting $PKC-{\alpha}$ gene could be designed to overcome the chemoresistance of ovarian cancer.

A Trend in Acquired Drug Resistances of Tuberculosis Patients Registered in Health Centers from 1981 to 2004 (1981년부터 2004년까지 보건소 재치료 결핵 환자의 항결핵제 내성률 추이)

  • Chang, Chulhun L.;Lee, Eun Yup;Park, Soon Kew;Jeong, Seok Hoon;Park, Young Kil;Choi, Yong Woon;Kim, Hee Jin;Lew, Woo Jin;Bai, Gill-Han
    • Tuberculosis and Respiratory Diseases
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    • v.59 no.6
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    • pp.619-624
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    • 2005
  • Background : The drug resistance rate in tuberculosis patients with history of chemotherapy is an important indicator of for evaluation of appropriateness of treatment regimens and compliance of patients. This study examined the long-term changes in the drug resistance rates among TB patients failed in treatment or reactivated. Methods : The results of drug susceptibility testing data from patients registered in health centers from 1981 to 2004 were analyzed. Results : The rate of resistance to isoniazid decreased from 90% to 20%, and the resistance to ethambutol decreased from 45% to 6%. The rate of resistance to rifampicin varied from 13% to 28% and the resistance to pyrazinamide was 5% to 10%. Multidrug resistance was about 2-3% lower than any rifampicin resistance rates. The second-line drug resistance was ranged from 1% to 3%. There was no difference between patients' genders. Patient numbers per 100,000 population increased with age. The regional distribution was even at 4-6 patients per 100,000 population, and drug resistance rates were significantly lower in big city areas than in small towns and rural areas. Conclusion : The rates of resistance of Mycobacterium tuberculosis isolated from TB patients with history of chemotherapy to isoniazid, rifampin, ethambutol, and isoniazid plus rifampin were significantly decreased during over two decades.

Drug Resistance and R-Plasmids of Shigella Strains Isolated from Humans, Korea (Shigella균속의 항균제내성 및 전달성 R-Plasmid에 관한 연구)

  • Kim, Ji-Youn;Lee, Yun-Tai
    • The Journal of the Korean Society for Microbiology
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    • v.19 no.1
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    • pp.11-24
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    • 1984
  • Shigella remains to be an important enteric pathogen in this country for the present. Moreover, most of the isolates have become multiple resistant to various antibiotics which used to be drugs of choice for shigellosis. This study was made as an attempt to assess the present stage of antibiotic resistance and the incidence and transferability of R factors of Shigella. A total of one hundred and seventeen strains of Shigella isolated from patients in Seoul and provincial area between 1982 and 1983 were tested for their resistant to antimicrobial agents and transmission of R-plasmid. Antibiotic susceptibilities were determined by an agar dilution method. Muller hinton agar were used for the assay of drug resistance and tryptic soy broth were used for propagating medium for conjugation. Shigella isolated found to be one or more antibiotics were considered potential donor of R-plasmid. The following results were obtained. 1. Among 117 strains of Shigella isolated, 111 strains(94.9%) were found to be resistant to one or more drugs tested and 97.3% of these resistant strains were multiply resistant, indicating the multiply resistant strains were more than the single resistant strains. Only six strains were susceptible to all drugs tested. 2. Among 117 strains of Shigella isolated, 107 strains(91.5%) were resistant to Tetracyclin(Tc), 106 strains(90.6%) to Chloramphenicol(Cp) and Streptomycin(Sm), 97 strains(82.9%) to Ampicillin(Ap), 68 strains(58.1%) to Cephaloridine(Cr), 10 strains(8.5%) to Nalidixic acid(Na), 5 strains(4.3%) to Kanamycin(Km) and 2 strains(1.7%) to Rifampicin. No strain was resisfant to Amikacin(Ak) and Gentamicin(Gm). 3. All drug-resistant Shigella strains, except three, were multiply resistant to two or more drugs. Fifty eight strains were resistant to five drugs, followed by 26 strains resistant to dour drugs, 12 strains resistant to three drugs and 11 strains resistant to six drugs. 4. The 73% of multiply drug-resistant Shigella transferred their resistance to E. coli by conjugation and the resistance was considered to be mediated by R-plasmid. Resistance to Nalidixic acid and Rifampicin were not transferred by conjugation to recipient. As for the transferability of resistance to each seperate drug, Ap resistance was transferred with 73.2% frequence and Cm and Tc resistance were transferred with approximately 50-60% frequence whereas Sm and Cr resistance were transferred in 19.1-21.4% The other four drugs resistant failed to transfer their resistance to recipient. 5. As for the incidence and transferability of resistance to each seperate drug, the strains resistant to Tc and Cm were encountered most frequently with the rate of 91-92%, whereas transfer of Tc and Cm were low, 51-52%. The incidence of Sm resistance was very high(90.6%) but transferability of drugs resistance was much lower(25.4%). Though the incidence of Km reristance was much lower(4.3%) transferability of Km resistance was considerably higher(60%). 6. The greater the multiplicity of resistance, the greater was the likelihood that part of all of the resistance markers would be transferable.

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Influence of Ribosomal Protein L39-L in the Drug Resistance Mechanisms of Lacrimal Gland Adenoid Cystic Carcinoma Cells

  • Ye, Qing;Ding, Shao-Feng;Wang, Zhi-An;Feng, Jie;Tan, Wen-Bin
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.12
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    • pp.4995-5000
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    • 2014
  • Background: Cancer constitutes a key pressure on public health regardless of the economy state in different countries. As a kind of highly malignant epithelial tumor, lacrimal gland adenoid cystic carcinoma can occur in any part of the body, such as salivary gland, submandibular gland, trachea, lung, breast, skin and lacrimal gland. Chemotherapy is one of the key treatment techniques, but drug resistance, especially MDR, seriously blunts its effects. As an element of the 60S large ribosomal subunit, the ribosomal protein L39-L gene appears to be documented specifically in the human testis and many human cancer samples of different origins. Materials and Methods: Total RNA of cultured drug-resistant and susceptible lacrimal gland adenoid cystic carcinoma cells was seperated, and real time quantitative RT-PCR were used to reveal transcription differences between amycin resistant and susceptible strains of lacrimal gland adenoid cystic carcinoma cells. Viability assays were used to present the amycin resistance difference in a RPL39-L transfected lacrimal gland adenoid cystic carcinoma cell line as compared to control vector and null-transfected lacrimal gland adenoid cystic carcinoma cell lines. Results: The ribosomal protein L39-L transcription level was 6.5-fold higher in the drug-resistant human lacrimal gland adenoid cystic carcinoma cell line than in the susceptible cell line by quantitative RT-PCR analysis. The ribosomal protein L39-L transfected cells revealed enhanced drug resistance compared to plasmid vector-transfected or null-transfected cells as determined by methyl tritiated thymidine (3H-TdR) incorporation. Conclusions: The ribosomal protein L39-L gene could possibly have influence on the drug resistance mechanism of lacrimal gland adenoid cystic carcinoma cells.

Decreased Interaction of Raf-1 with Its Negative Regulator Spry2 as a Mechanism for Acquired Drug Resistance

  • Ahn, Jun-Ho;Kim, Yun-Ki;Lee, Michael
    • Biomolecules & Therapeutics
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    • v.19 no.2
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    • pp.174-180
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    • 2011
  • Experiments were carried out to determine the role of Raf-1 kinase in the development of drug resistance to paclitaxel in v-H-ras transformed NIH 3T3 fibroblasts (Ras-NIH 3T3). We established a multidrug-resistant cell line (Ras-NIH 3T3/Mdr) from Ras-NIH 3T3 cells by stepwise increases in paclitaxel. Drug sensitivity assays indicated that the $IC_{50}$ value for drug-resistant Ras-NIH 3T3/Mdr cells was more than 1 ${\mu}M$ paclitaxel, 10- or more-fold higher than for the parental Ras-NIH 3T3 cells. Western blot and RT-PCR analysis showed that the drug efflux pump a P-glycoprotein were highly expressed in Ras-NIH 3T3/Mdr cells, while not being detectable in Ras-NIH 3T3 cells. Additionally, verapamil, which appears to inhibit drug efflux by acting as a substrate for P-glycoprotein, completely reversed resistance to paclitaxel in Ras-NIH 3T3/Mdr cell line, indicating that resistance to paclitaxel is associated with overexpression of the multidrug resistance gene. Interestingly, Ras-NIH 3T3/Mdr cells have higher basal Raf-1 activity compared to Ras-NIH 3T3 cells. Unexpectedly, however, the colocalization of Raf-1 and its negative regulator Spry2 was less observed in cytoplasm of Ras-NIH 3T3/Mdr cells due to translocation of Spry2 around the nucleus in the perinuclear zone, implying that Raf-1 may be released from negative feedback inhibition by interacting with Spry2. We also showed that shRNA-mediated knockdown of Raf-1 caused a moderate increase in cell susceptibility to paclitaxel. Thus, the results presented here suggest that a Raf-1-dependent pathway plays an important role in the development of acquired drug-resistance.

A Study on Bioserotype and Drug Resistance of Salmonella and Escherichia coli Isolated from Feces in Zoological Animals (동물원의 야생동물 분변에서 분리한 살모넬라균과 대장균의 생물형, 혈청형 및 약제내성에 관한 연구)

  • 윤은선;박석기;문현칠;최원식
    • Korean Journal of Veterinary Service
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    • v.16 no.1
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    • pp.41-50
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    • 1993
  • This study was undertaken the bioserotype and drug resistance of Salmonella and Escherichia coli isolated from feces for the prevention and treatment of salmonellosis and colibacillosis in zoological animals. The results obtained from the research were as follows 1. Salmonella were isolated 19, or 4.7% from 408 samples and E. coli were isolated 12, or 40.0% from 30 diarrheal samples. 2. The biotypes in 19 Salmonella were Subspecies 1. 3. The serogroups of Salmonella isolated were 47.4% in B group, 31.6% in C, 5.3% in D and 15.8% in other, and serotype of E. coli was 100% in 0127a. 4. The antibiotic resistance of Salmonella and E. coli isolated were 13, or 68.4% and 7, or 58.3% strains, respectively 5. The multiple resistant patterns of antibiotics in Salmonella were 2drugs- and 3 drugs-resistance 30.8%, respectively, and those in E. coli were mono drug-, 2 drugs- and 7 drugs-resistance 28.6%, respectively. 6. The transferred rate of resistance to recipients (E. coli ML 1410 NA$^{r}$ ) in Salmonella was 38.5%, but that in E. coli was 71.4%.

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Drug Resistance Effects of Ribosomal Protein L24 Overexpression in Hepatocellular Carcinoma HepG2 Cells

  • Guo, Yong-Li;Kong, Qing-Sheng;Liu, Hong-Sheng;Tan, Wen-Bin
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.22
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    • pp.9853-9857
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    • 2014
  • Background: The morbidity and mortality rate of liver cancer continues to rise in China and advanced cases respond poorly to chemotherapy. Ribosomal protein L24 has been reported to be a potential therapeutic target whose depletion or acetylation inhibits polysome assembly and cell growth of cancer. Materials and Methods: Total RNA of cultured amycin-resistant and susceptible HepG2 cells was isolated, and real time quantitative RT-PCR were used to indicate differences between amycin-resistant and susceptible strains of HepG2 cells. Viability assays were used to determine amycin resistance in RPL24 transfected and control vector and null-transfected HepG2 cell lines. Results: The ribosomal protein L24 transcription level was 7.7 times higher in the drug-resistant HepG2 cells as compared to susceptible cells on quantitative RT-PCR analysis. This was associated with enhanced drug resistance as determined by methyl tritiated thymidine (3H-TdR) incorporation. Conclusions: The ribosomal protein L24 gene may have effects on drug resistance mechanisms in hepatocellular carcinoma HepG2 cells.

Cellular Prion Protein Enhances Drug Resistance of Colorectal Cancer Cells via Regulation of a Survival Signal Pathway

  • Lee, Jun Hee;Yun, Chul Won;Lee, Sang Hun
    • Biomolecules & Therapeutics
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    • v.26 no.3
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    • pp.313-321
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    • 2018
  • Anti-cancer drug resistance is a major problem in colorectal cancer (CRC) research. Although several studies have revealed the mechanism of cancer drug resistance, molecular targets for chemotherapeutic combinations remain elusive. To address this issue, we focused on the expression of cellular prion protein ($PrP^C$) in 5-FU-resistant CRC cells. In 5-FU-resistant CRC cells, $PrP^C$ expression is significantly increased, compared with that in normal CRC cells. In the presence of 5-FU, $PrP^C$ increased CRC cell survival and proliferation by maintaining the activation of the PI3K-Akt signaling pathway and the expression of cell cycle-associated proteins, including cyclin E, CDK2, cyclin D1, and CDK4. In addition, $PrP^C$ inhibited the activation of the stress-associated proteins p38, JNK, and p53. Moreover, after treatment of 5-FU-resistant CRC cells with 5-FU, silencing of $PrP^C$ triggered apoptosis via the activation of caspase-3. These results indicate that $PrP^C$ plays a key role in CRC drug resistance. The novel strategy of combining chemotherapy with $PrP^C$ targeting may yield efficacious treatments of colorectal cancer.

DOWN-REGULATION OF RAF-1 KINASE IS ASSOCIATED WITH PACLITAXEL RESISTANCE IN HUMAN BREAST CANCER MCF-7/ADR CELLS

  • Lee, Michael;Jung Kwon;Wayne B. Anderson;Chung, Moon-Koo
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2002.11b
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    • pp.136-136
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    • 2002
  • Experiments were carried out to determine the role of Raf-1 kinase in the development of drug resistance and apoptosis induced by paclitaxel. In the present study, paclitaxel sensitivity, Raf-1 activity and MAPKs activation were compared in 2 cell lines: parental human breast cancer cells and its drug resistant variant (MCF-7/Adr) cells.(omitted)

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