1.Study on drug sensitivity against Comamonas testosteroni by Kirby-Bauer disk diffusion method.
Changsheng KONG ; Jun CHEN ; Xiaoyan ZOU ; Yi ZHANG ; Lingna ZHU
Journal of Central South University(Medical Sciences) 2016;41(8):856-859
OBJECTIVE:
To determine the drug resistance of Comamonas testosteroni (C. testosteroni) by the Kirby-Bauer (K-B) method without Clinical and Laboratory Standards Institute (CLSI) explanation or the minimum inhibitory concentration (MIC) method with the standard CLSI explanation to evaluate the sensitivity of K-B method in detection of C. testosteroni.
METHODS:
K-B method and MIC method was used to determine the sensitivity of C. testosteroni to Piperacillin, Cefepime, Piperacillin/tazobactam, Imipenem, Meropenem, Amikacin, Gentamicin, Tobramycin, Ceftazidime and Ciprofloxacin. The interpretation standard for Pseudomonas aeruginosa was temporary used for the K-B method. The coincident rate was compared between the two methods.
RESULTS:
The complete or partial coincident rate for K-B method and MIC method to detect Piperacillin and Cefepime was 97.4% or 2.6%; the complete coincidence rate to detect Piperacillin/tazobactam, Imipenem and Meropenem was 100%; the complete or partial coincident rate to detect Amikacin, Gentamicin and Tobramycin 94.7% or 5.3%; the complete or partial coincident rate to detect Ceftazidime was 97.4% or 2.6%; the complete or partial coincident rate to detect Ciprofloxacin 86.8% or 10.6%, and the full non-coincidence rate was 2.6%.
CONCLUSION
The results of drug sensitive test from the two methods are highly consistent. We suggest that the microbiology labs do not report the interpretive results for C. testosteroni with K-B method but report the test results.
Anti-Bacterial Agents
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Cefepime
;
Cephalosporins
;
Comamonas testosteroni
;
Imipenem
;
Meropenem
;
Microbial Sensitivity Tests
;
Penicillanic Acid
;
analogs & derivatives
;
Piperacillin
;
Piperacillin, Tazobactam Drug Combination
;
Pseudomonas aeruginosa
;
Thienamycins
2.A single-center study on the distribution and antibiotic resistance of pathogens causing bloodstream infection in patients with hematological malignancies.
Lin Jing CAI ; Xiao Lei WEI ; Yong Qiang WEI ; Xu Tao GUO ; Xue Jie JIANG ; Yu ZHANG ; Guo pan YU ; Min DAI ; Jie Yu YE ; Hong Sheng ZHOU ; Dan XU ; Fen HUANG ; Zhi Ping FAN ; Na XU ; Peng Cheng SHI ; Li XUAN ; Ru FENG ; Xiao Li LIU ; Jing SUN ; Qi Fa LIU
Chinese Journal of Hematology 2023;44(6):479-483
Objective: To study the incidence of bloodstream infections, pathogen distribution, and antibiotic resistance profile in patients with hematological malignancies. Methods: From January 2018 to December 2021, we retrospectively analyzed the clinical characteristics, pathogen distribution, and antibiotic resistance profiles of patients with malignant hematological diseases and bloodstream infections in the Department of Hematology, Nanfang Hospital, Southern Medical University. Results: A total of 582 incidences of bloodstream infections occurred in 22,717 inpatients. From 2018 to 2021, the incidence rates of bloodstream infections were 2.79%, 2.99%, 2.79%, and 2.02%, respectively. Five hundred ninety-nine types of bacteria were recovered from blood cultures, with 487 (81.3%) gram-negative bacteria, such as Klebsiella pneumonia, Escherichia coli, and Pseudomonas aeruginosa. Eighty-one (13.5%) were gram-positive bacteria, primarily Staphylococcus aureus, Staphylococcus epidermidis, and Enterococcus faecium, whereas the remaining 31 (5.2%) were fungi. Enterobacteriaceae resistance to carbapenems, piperacillin/tazobactam, cefoperazone sodium/sulbactam, and tigecycline were 11.0%, 15.3%, 15.4%, and 3.3%, with a descending trend year on year. Non-fermenters tolerated piperacillin/tazobactam, cefoperazone sodium/sulbactam, and quinolones at 29.6%, 13.3%, and 21.7%, respectively. However, only two gram-positive bacteria isolates were shown to be resistant to glycopeptide antibiotics. Conclusions: Bloodstream pathogens in hematological malignancies were broadly dispersed, most of which were gram-negative bacteria. Antibiotic resistance rates vary greatly between species. Our research serves as a valuable resource for the selection of empirical antibiotics.
Humans
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Bacteremia/epidemiology*
;
Cefoperazone
;
Sulbactam
;
Retrospective Studies
;
Drug Resistance, Bacterial
;
Microbial Sensitivity Tests
;
Hematologic Neoplasms
;
Sepsis
;
Anti-Bacterial Agents/pharmacology*
;
Gram-Negative Bacteria
;
Gram-Positive Bacteria
;
Piperacillin, Tazobactam Drug Combination
;
Escherichia coli
3.Clinical analysis for patients with continuous ambulatory peritoneal dialysis associated peritonitis.
Jian LIU ; Xun HUANG ; Yao LIU ; Hui XU ; Rui'e GONG ; Chunhui LI
Journal of Central South University(Medical Sciences) 2016;41(12):1328-1333
To analyze the clinical characteristics of continuous ambulatory peritoneal dialysis (CAPD) associated peritonitis in the tertiary hospitals and to discuss the preventive and therapeutic strategy.
Methods: The clinical characteristics, pathogens, resistance and outcomes of 126 CAPD associated peritonitis in 104 patients from Jan, 2013 to June, 2016, were retrospectively analyzed.
Results: Among the patients, the incidence rates of abdominal pain, fever, diarrhea and emesis were 104 (82.54%), 56 (44.44%), 49 (38.89%), and 31 (23.60%), respectively. Among them, 88 patients suffered peritonitis once, other 16 patients suffered multiple peritonitis or recurrent peritonitis for 38 times. Among the 38 times, the numbers for recurrent, repeated or catheter-associated peritonitis were 2, 2, or 3, respectively. Peritoneal fluids from 103 cases were cultured, and 64 cases were positive in bacteria, with a rate of 62.14%. A total of 70 strains of bacteria were separated, including 42 strains of gram-positive bacteria, 21 strains of gram-negative bacteria, and 7 strains of fungus. The most common gram-positive pathogens were Staphylococcus epidermidis, Enterococcus faecalis and Staphylococcus haemolyticus, while Escherichia coli, Klebsiella pneumoniae and Klebsiella pneumoniae were the most common gram-negative bacteria. Candida albicans was the major fungal pathogens. Gram-positive cocci showed resistance to gentamycin, levofloxacin, moxifloxacin, vancomycin and linezolid, with a rate at 20.00%, 36.11%, 5%, 0%, and 0%, respectively. The gram-negative bacilli were resistent to cefoperazone/sulbactam, gentamycin, cephazolin, and ceftazidime, with a rate at 6.25%, 10.53%, 64.29%, and 15.38%, respectively. There were no imipenem, amikacin, piperacillin/tazobactam-resistant strains were found.
Conclusion: The most common pathogen causing CAPD associated peritonitis is gram-positive bacteria. It is crucial to take the anti-infection therapy for CAPD associated peritonitis early. The positive rates for bacterial culture need to be enhanced through improvement of methods. At the same time, doctors could improve the outcome of CAPD associated peritonitis by adjusting the medication according to the drug sensitivity results.
Abdominal Pain
;
epidemiology
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Anti-Bacterial Agents
;
Bacteria
;
Bacterial Infections
;
epidemiology
;
microbiology
;
Candidiasis
;
epidemiology
;
Catheters
;
adverse effects
;
microbiology
;
Diarrhea
;
epidemiology
;
Drug Resistance, Bacterial
;
Enterococcus faecalis
;
Escherichia coli
;
Fever
;
epidemiology
;
Gram-Negative Bacteria
;
Gram-Positive Bacteria
;
Humans
;
Imipenem
;
Klebsiella pneumoniae
;
Microbial Sensitivity Tests
;
Mycoses
;
epidemiology
;
Penicillanic Acid
;
analogs & derivatives
;
Peritoneal Dialysis
;
Peritoneal Dialysis, Continuous Ambulatory
;
adverse effects
;
Peritonitis
;
complications
;
epidemiology
;
microbiology
;
Piperacillin
;
Piperacillin, Tazobactam Drug Combination
;
Recurrence
;
Retrospective Studies
;
Staphylococcus epidermidis
;
Staphylococcus haemolyticus
;
Vomiting
;
epidemiology