Literature DB >> 29595695

Comamonas kerstersii bacteremia in a patient with acute perforated appendicitis: A rare case report.

Yun-Heng Zhou1, Hong-Xia Ma, Zhao-Yang Dong, Mei-Hua Shen.   

Abstract

RATIONALE: Comamonas species are rarely associated with human infections. Recent reports found that Comamonas kerstersii was associated with severe diseases such as abdominal infection and bacteremia. However, C. kerstersii maybe be confused with Comamonas testosteroni using the automatic bacterial identification systems currently available. PATIENT CONCERNS: A 31-year-old man who had onset of left upper abdominal pain developed clinical manifestations of right lower abdominal pain and classic migration of pain at the temperature of 39°C. The positive strain of aerobic and anaerobic bottles of blood cultures was identified. DIAGNOSES: The patient was diagnosed as acute peritonitis and perforated appendix with abdominal abscess.
INTERVENTIONS: The bacterium was identified by routine methods, MALDI-TOF-MS and PCR amplification of the 16S rRNA. The patient was treated with exploratory laparotomy, appendectomy, tube drainage, and prescribing antibiotic treatment. OUTCOMES: The patients were discharged with complete recovery. The organisms were confirmed as C. kerstersii by MALDI-TOF-MS and a combination of the other results. LESSONS: Our findings suggest that C. kerstersii infection occurs most often in association with perforated appendix and bacteremia. We presume that C. kerstersii is an opportunistic pathogen or commensal with the digestive tract and appendix bacteria.

Entities:  

Mesh:

Substances:

Year:  2018        PMID: 29595695      PMCID: PMC5895375          DOI: 10.1097/MD.0000000000009296

Source DB:  PubMed          Journal:  Medicine (Baltimore)        ISSN: 0025-7974            Impact factor:   1.889


Introduction

The genus Comamonas was originally created in 1985, and it included a single species, Comamonas terrigena (C. terrigena).[ In 1987, Comamonas testosteroni and Comamonas acidovorans were reclassified as members of the Comamonas genus. C. acidovorans was subsequently reclassified as Delftia acidovorans on the basis of its 16S rRNA gene sequence in 1999.[Comamonas kerstersii (C. kerstersii) was described as 1 of 3 genotypically separate groups of C. terrigena in 2003.[ Now, Comamonas genus contains 17 species including C. terrigena,C. aquatica, C. kerstersii, C. testosteroni, C. denitrificans, C. nitrativorans, C. koreensis and others. Comamonas species have a wide geographic distribution and are commonly found in soil, plants, animal, water saprophytes, and in humidifier reservoir water.[ Comamonas species are rarely associated with human infections.[ However, in recent years, several publications have incriminated C. testosteroni and C. kerstersii in human diseases, including severe invasive infections, such as abdominal infection and bacteremia.[ However, C. kerstersii maybe be confused with C. testosteroni because of the difficulties in accurately identifying it using the automatic bacterial identification systems currently available. Some important biochemical tests, matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF-MS) and gene sequencing by polymerase chain reaction (PCR) amplification of the 16S rRNA can confirm the specific Comamonas species. To the best of our knowledge, this is the first report of C. kerstersii bacteremia in a patient with acute perforated appendicitis.

Case presentation

A 31-year-old man presented to the emergency department of our hospital with onset of left upper abdominal pain followed by nausea and vomiting at a temperature of 37.5°C. His white blood cell was 11.6 × 109/L, and differential white blood count were: neutrophils 59.4%, lymphocytes 29.2%, monocytes 7.2%, eosinophils 4.1%. Serum C-reactive protein level was 23.5 mg/L. Elevated alanine transaminase level (101 U/L) was found. Other laboratory data were within the normal range. His chest and abdominal X-ray and ultrasonography were normal. The patient was treated with cefuroxime axetil according to empirical antibiotic routines. The next day, he had a temperature of 39°C with right lower abdominal pain and classic migration of pain. Aerobic and anaerobic bottles of blood cultures were drawn and incubated at 35°C; However, he refused to accept surgical intervention due to personal reason. A follow-up visit revealed that he was diagnosed with acute peritonitis and perforated appendix with abdominal abscess. He was discharged with complete recovery after exploratory laparotomy, appendectomy, tube drainage, prescribing antibiotic treatment for 14 days (Cefuroxime and metronidazole) and an observation period of 6 days. As soon as the aerobic blood culture bottle became positive 18 hours after sampling and the anaerobic blood culture bottle became positive 20 hours after sample collection, they were transferred into Colombia blood agar, macconkey, nutrition agar and chocolate agar. After 24 hours of incubation at 35°C in ambient air, growth of a nonfermenting Gram-negative bacillus was observed. Other tests showed that oxidase and catalase activities were positive. 4-hour rapid urea hydrolysis was negative. Strains also grew on the 4 types of agar at 30°C and 42°C. The strain was initially identified as Bordetella bronchiseptica by SIEMENS MicroScan walkaway 96 plus system (Siemens, New York, NY). The minimum inhibitory concentration results showed that all the antibiotics except ciprofloxacin [(minimum inhibitory concentration, MIC) S≤1, R≥4], levofloxacin(MIC S≤2, R≥8) and trimethoprim-sulfamethoxazole (MIC S≤2/38, R≥4/36) were sensitive. The isolates were identified as C. testosteroni by VITEK 2, BD phoenix100 and ATB expression systems at different hospitals in Shanghai. Identification was also carried by MALDI-TOF-MS. The spectral score for C. kerstersii was 1.815, followed by Comamonas aquatic of the score 1.673. Because the score was less than 2.0, we proceeded to extract DNA and performed PCR amplification of the 16s rRNA gene sequencing for bacterial identification, which showed it was closest with Comamonas kerstersii strain 8943 sequence (CP020121.1, complete genome, Max 2534, Total score 12673, Query cover 100%, Identity 99%) and C. kerstersii strain LMG 5323 sequence (AJ430348.1, partial 16S rRNA gene, Max 2525, Total score 2525, Query cover 100%, Identity 99%). Considered that the biochemical tests, the organisms were confirmed as C. kerstersii by MALDI-TOF-MS and a combination of the other results.

Discussion

Since 1987,[ 34 patients infected with C. testosteroni around the world have been reported: 16 with bloodstream infections, 10 with abdominal cavity infections, 8 with other kinds of infections. Among these, Gul et al were the first to report C. testosteroni from the blood cultures of a 22-year-old man with a perforated appendix in Turkey, and the organism was identified by Mini API to be sensitive to all antibiotics tested.[ Tsui et al presented 2 strains from bacteremia identified by the Phoenix100 System in 2011: a 54-year-old alcoholic patient with left leg cellulitis and a 73-year-old male with chronic hepatitis B infection, liver cirrhosis, and hepatocellular carcinoma after transarterial embolization. The 2 strains were sensitive to a broad range of antibiotics, including all tested cephalosporins and quinolones.[ Opota et al also commented that there were 32 Comamonas sp. strains and 38 D. acidovorans strains isolated from 1997 to 2013 in his hospital, which were isolated primarily from respiratory tract samples (33%), urogenital tract samples (23%), and digestive tract samples (21%), while bacteremia represented 5% (3 patients) of the cases.[ However, it is possible that some of the isolates identified as C. testosteroni might have been C. kerstersii, as C. kerstersii is not found in the VITEK, ATB, API, Siemens, and BD system databases, in which there are only 2 types of Comamonadaceae: D. acidovorans and C. testosteroni. In the present case, the organisms were initially identified as B. bronchiseptica, which was obviously not correct because it is a strict aerobe that grows slowly and forms small colonies in 48 hours.[ To date, there are only 8 cases of C. kerstersii reported in the literature,[ therefore, our patient represents the ninth reported case of C. kerstersii infection (Table 1). All of the C. kerstersii isolates were identified by MALDI-TOF-MS, which is a rapid and accurate method to differentiate between Comamonas species. Some tests can also differentiate C. kerstersii from other Comamonas species according to schemes proposed by Wauters et al,[ such as sensitivity to colistin and deferoxamine, nonuse of testosterone, a negative pyrrolidone arylamidase test, growth at 42°C, and a positive tyrosine hydrolysis.
Table 1

Clinical and microbiological characteristics of the 9 cases of C. kerstersii infections.

Clinical and microbiological characteristics of the 9 cases of C. kerstersii infections. Drug sensitivity tests showed that the isolates were sensitive to a broad range of antibiotics. Among the 9 cases, 2 were identified in bacteremia patients with diverticulosis and perforated appendixes and the predominant source of infection were in the peritoneal fluid of the abdominal cavity(7/9). The main clinical diagnosis of these patients is perforated appendix(7/9), followed by sigmoid perforation and diverticulosis, which demonstrates the association of C. kerstersii with severe diseases. Aside from the previously reported cases of C. testosteroni infections, Opota et al[ reported the first C. kerstersii bloodstream infection in a patient with diverticulosis. The present case is the first report of C. kerstersii bacteremia in a patient with acute perforated appendicitis. Comamonas species infection has been associated with exposure to contaminated fish tank water or exploration of the abdominal cavity.[ Thus, we presume that C. kerstersii is an opportunistic pathogen or commensal with the digestive tract and appendix bacteria.

Conclusion

In summary, Comamonas kerstersii infection occurs most often in association with severe diseases, such as perforated appendix and bacteremia. This strain is always sensitive to a broad range of antibiotics. However, C. kerstersii is easily confused with C. testosteroni by automatic bacterial identification systems currently available on the market. Overall, MALDI-TOF-MS and gene sequencing are a more accurate approach to identify the species than others. Further research is required to clarify the origins of this organism.

Author contributions

Data curation: Y.H. Zhou. Formal analysis: H.X. Ma. Formal analysis: Y.H. Zhou. Funding acquisition: M.H. Shen. Methodology: H.X. Ma. Resources: M.H. Shen. Supervision: Z.Y. Dong. Writing – original draft: Y.H. Zhou. Writing – review & editing: Y.H. Zhou.

Acknowledgments

We are grateful to all of the contributors of the departments of laboratory medicine in different hospitals for their identification of this strain. This work was supported by the Key Programs of Science and Technology Commission Foundation of Changning District, Shanghai (CNKW2016Z05) and the National Nature Science Foundation of China (No. 81401855).
  14 in total

1.  Evaluation of the contaminant organisms of humidifier reservoir water and investigation of the source of contamination in a university hospital in Turkey.

Authors:  Yasar Nakipoglu; Zayre Erturan; Ozden Buyukbaba-Boral; Alper Aksozek; Selda Aydin; Sengul Derbentli
Journal:  Am J Infect Control       Date:  2005-02       Impact factor: 2.918

2.  Catheter-related bacteremia caused by Comamonas testosteroni in a hemodialysis patient.

Authors:  William Nseir; Julnar Khateeb; Mohammad Awawdeh; Murad Ghali
Journal:  Hemodial Int       Date:  2011-01-12       Impact factor: 1.812

3.  Comamonas testosteroni: An Unusual Bacteria Associated with Acute Appendicitis.

Authors:  Gülsüm İclal Bayhan; Gönül Tanır; Ibrahim Karaman; Sengül Ozkan
Journal:  Balkan Med J       Date:  2013-12-01       Impact factor: 2.021

4.  Comamonas kerstersii and the perforated appendix.

Authors:  Jason S Biswas; Joseph Fitchett; Geraldine O'Hara
Journal:  J Clin Microbiol       Date:  2014-05-14       Impact factor: 5.948

Review 5.  Two cases of bacteremia due to an unusual pathogen, Comamonas testosteroni in Iran and a review literature.

Authors:  Shohreh Farshad; Fatemeh Norouzi; Maneli Aminshahidi; Behzad Heidari; Abdolvahab Alborzi
Journal:  J Infect Dev Ctries       Date:  2012-06-15       Impact factor: 0.968

Review 6.  Bacteremia due to Comamonas species possibly associated with exposure to tropical fish.

Authors:  Marcus D Smith; Jeremy D Gradon
Journal:  South Med J       Date:  2003-08       Impact factor: 0.954

7.  Comamonas testosteroni bacteremia in a patient with perforated acute appendicitis. Short communication.

Authors:  Mustafa Gul; Pinar Ciragil; Ertan Bulbuloglu; Murat Aral; Sumeyra Alkis; Fikret Ezberci
Journal:  Acta Microbiol Immunol Hung       Date:  2007-09       Impact factor: 2.048

8.  Pseudomonas testosteroni infections: eighteen recent cases and a review of the literature.

Authors:  D J Barbaro; P A Mackowiak; S S Barth; P M Southern
Journal:  Rev Infect Dis       Date:  1987 Jan-Feb

9.  Intra-abdominal infections due to Comamonas kerstersii.

Authors:  Marisa N Almuzara; Rosana Cittadini; Cecilia Vera Ocampo; Romina Bakai; German Traglia; Maria S Ramirez; Marcelo del Castillo; Carlos A Vay
Journal:  J Clin Microbiol       Date:  2013-04-10       Impact factor: 5.948

10.  Bacteremia caused by Comamonas kerstersii in a patient with diverticulosis.

Authors:  Onya Opota; Barbara Ney; Giorgio Zanetti; Katia Jaton; Gilbert Greub; Guy Prod'hom
Journal:  J Clin Microbiol       Date:  2013-12-26       Impact factor: 5.948

View more
  11 in total

1.  A young child with acute perforated appendicitis due to Comamonas kerstersii: a rare case report.

Authors:  Hind Bennani; Assia El Ouarradi; Asmaa Lamrani Hanchi; Nabila Soraa
Journal:  Pan Afr Med J       Date:  2022-03-08

2.  Complete genome sequencing of Comamonas kerstersii 8943, a causative agent for peritonitis.

Authors:  Xiawei Jiang; Wenhong Liu; Beiwen Zheng
Journal:  Sci Data       Date:  2018-11-06       Impact factor: 6.444

3.  Does the endometrial cavity have a molecular microbial signature?

Authors:  Andrew D Winters; Roberto Romero; Maria Teresa Gervasi; Nardhy Gomez-Lopez; Maria Rosa Tran; Valeria Garcia-Flores; Percy Pacora; Eunjung Jung; Sonia S Hassan; Chaur-Dong Hsu; Kevin R Theis
Journal:  Sci Rep       Date:  2019-07-09       Impact factor: 4.379

4.  First report of urinary tract infection caused by Comamonas kerstersii in a goat.

Authors:  Silvia Pavone; Roberto Rinoldo; Elisa Albini; Alessandro Fiorucci; Biagio Caponi; Anna Fratto; Elisabetta Manuali; Paola Papa; Chiara Francesca Magistrali
Journal:  BMC Vet Res       Date:  2021-03-25       Impact factor: 2.741

5.  Emergence of IMP-8-Producing Comamonas thiooxydans Causing Urinary Tract Infection in China.

Authors:  Xiaobing Guo; Qian Wang; Hao Xu; Xiaohong He; Lihua Guo; Shuxiu Liu; Peipei Wen; Jianjun Gou
Journal:  Front Microbiol       Date:  2021-03-15       Impact factor: 5.640

6.  Adalimumab Therapy Restores the Gut Microbiota in Patients With Ankylosing Spondylitis.

Authors:  Zena Chen; Xuqi Zheng; Xinyu Wu; Jialing Wu; Xiaomin Li; Qiujing Wei; Xi Zhang; Linkai Fang; Ou Jin; Jieruo Gu
Journal:  Front Immunol       Date:  2021-09-01       Impact factor: 7.561

7.  Comamonas kerstersii Bacteremia of Unknown Origin.

Authors:  Kassie Rong; Johan Delport; Fatimah AlMutawa
Journal:  Case Rep Infect Dis       Date:  2022-03-27

8.  Comamonas thiooxydans Expressing a Plasmid-Encoded IMP-1 Carbapenemase Isolated From Continuous Ambulatory Peritoneal Dialysis of an Inpatient in Japan.

Authors:  Yuki Suzuki; Ryuichi Nakano; Akiyo Nakano; Hikari Tasaki; Tomoko Asada; Saori Horiuchi; Kai Saito; Mako Watanabe; Yasumistu Nomura; Daisuke Kitagawa; Sang-Tae Lee; Koji Ui; Akira Koizumi; Yuji Nishihara; Takahiro Sekine; Ryuji Sakata; Miho Ogawa; Masahito Ohnishi; Kazuhiko Tsuruya; Kei Kasahara; Hisakazu Yano
Journal:  Front Microbiol       Date:  2022-02-21       Impact factor: 5.640

9.  Maternal peripartum bacteremia caused by intrauterine infection with Comamonas kerstersii: A case report.

Authors:  Hai Qu; Yi-Hong Zhao; Wen-Mei Zhu; Lu Liu; Ming Zhu
Journal:  World J Clin Cases       Date:  2022-07-26       Impact factor: 1.534

10.  Changes in Gut Microbiota Composition Associated with the Presence of Enteric Protist Blastocystis in Captive Forest Musk Deer (Moschus Berezovskii).

Authors:  Lei Deng; Shanyu Chen; Wanyu Meng; Ziyao Zhou; Haifeng Liu; Zhijun Zhong; Hualin Fu; Liuhong Shen; Suizhong Cao; Kevin S W Tan; Guangneng Peng
Journal:  Microbiol Spectr       Date:  2022-06-23
View more

北京卡尤迪生物科技股份有限公司 © 2022-2023.