Skip to main content

Liver abscess in the caudate lobe caused by Klebsiella pneumoniae: a rare case report and literature review

Abstract

Background

K. pneumoniae liver abscess (KPLA) mostly involves the right lobe. We present a case of K. pneumoniae caudate liver abscess with invasive liver abscess syndrome (ILAS) was rarely identified.

Case presentation

A 53-year-old man with elevated glycated hemoglobin with chills, rigors and a fever of five days. The patient presented with tachycardia and fever. Physical examination revealed tenderness over the right abdomen was elicited. In particular, the inflammatory markers were markedly elevated, and computerized tomography (CT) showed pulmonary abscess, pulmonary embolism and caudate liver abscess. The patient’s sequential organ failure assessment (SOFA) score was 10 points. Klebsiella pneumoniae was isolated from sputum, urine and blood. With the suspicion of liver abscesses, ILAS and sepsis. The patient was successfully treated with antibiotics. He returned to close to his premorbid function.

Conclusion

K. pneumoniae caudate liver abscess was rare. This is the first detailed report of K. pneumoniae caudate liver abscess with invasive liver abscess syndrome. Patients with cryptogenic K. pneumoniae liver abscess are advised to undergo an examination of intestinal barrier function. The study indicates that in patients with K. pneumoniae liver abscess, a caudate liver abscess size of ≤ 9.86 cm² may be characteristic of those suitable for conservative treatment of invasive liver abscess syndrome.

Peer Review reports

Background

Pyogenic liver abscess (PLA) is caused by various bacteria (e.g., K. pneumonia, E. coli, Streptococcus, etc.) [1], and a mortality rate of 2.8–31.8% in patients with liver abscesses [2, 3].

It has been determined that K. pneumoniae is the most common PLA pathogen in Asia [4], the range for the rate of metastatic infection is 3.5–20% [5]. Patients with KPLA had an 8 − 24% chance of developing ILAS. ILAS is deceiving because it commonly manifests as a metastatic infection with sites of infection including, but not limited to, the liver, eye, central nervous system, lungs, musculoskeletal system, and urinary tract [6]. ILAS involving the lung manifested as pulmonary infection, septic pulmonary embolism or lung abscess. The delayed diagnosis and treatment of KPLA patients with initially stable hemodynamics can result in rapid progression to sepsis [7]. PLA is associated with numerous risk factors, including diabetes, biliary tract disease and history of cancer [8]. The overall mortality in ILAS patients was significantly higher than those of the non-metastatic [9]. KPLA were more likely to appear as a single abscess cavity to involve single lobe and the right lobe was affected more frequently [7]. We hereby describe a rare case of K. pneumoniae caudate liver abscess with septic pulmonary embolism. We used initiation of continuous renal replacement therapy (CRRT) and antibiotics sequential therapy instead of surgical invasive treatment, and achieved good therapeutic results.

Case presentation

A 53 years old man presented with intermittent high fever (39.6℃(135.04 °F), normal range,36 –37 °C (96.8 –98.6 °F)) and chills of 5 days. The patient did not exhibit gastrointestinal symptoms such as abdominal pain and diarrhea, nor did he have respiratory symptoms like cough and expectoration of sputum. There was no significant past medical history of liver disease or diabetes mellitus, intraperitoneal surgery, or immune deficiency. On admission, he had a temperature of 37.5 °C (99.5 °F), a blood pressure of 100/68(normal range, 60–90/90–140) mmHg, dyspneic (RR = 38 breaths/min, normal range, 16–20 breaths/min). Lung sounds were clear, and no rales, wheezing, or rhonchi were appreciated. The patient presented with tachycardia (heart rate, 154 beats per minute, normal range, 60–100 beats per minute) without murmur, rub, or gallop. Tenderness was elicited on the right upper quadrant. Murphy’s sign was not elicited. The liver and spleen were not palpable. Skin lesions were absent. arterial blood gas analysis showed a pH of 7.31(normal range, 7.35–7.45), PaO2 118 (normal range, 80–100) mmHg under conditions of oxygen administration at 5 L/min via mask, PaCO2 29.2 (normal range, 35–45) mmHg, cGlu 16.6 (normal range, 3.8–5.9) mmol/L, cLac 2.9(normal range, 0.5–1.6) mmol/L. A full blood count revealed WBC count was 17.77 (normal range, 3.5–9.5) ×109/L with neutrophil predominance (90.1%). C reactive protein (CRP) and procalcitonin (PCT) were elevated to 234.35 (normal range, 0–5) mg/L and 57.62(normal range, 0–0.046) ng/mL, respectively. His platelet count was 18(normal range, 100–350) ×109/L. Fibrinogen also was increased to 6.8 (normal range, 2–4) g/L. Laboratory results included a prothrombin time of 16.0 (normal range, 9.0–14.0) seconds, an INR of 1.45(normal range, 0.77–1.25), an APTT of 37.6(normal range, 24–35) seconds, and D-dimer of 17.54 (normal range, < 0.55) mg/L. Creatinine and blood urea nitrogen (URN) were elevated to 128.9(normal range, 57–97) umol/L and 9.8 (normal range, 3.1–8.0) umol/L, respectively. His Hba1c was 7.88% (normal range, 4.6 − 6.2%). HIV was negative. CT scan of the lung demonstrated that there were multiple nodules and patchy shadows in each lobe of both lungs, the largest of which was located in the lower lobe of the right lung, with a larger cross-section of about 3 cm  × 2.2 cm (Fig. 1). CT scan of the liver showed a low- density area(3.0 cm × 1.3 cm) in the caudate liver lobe (Fig. 1). Combined with the CT imaging, the patient was determined to have metastatic infection in the lungs, in addition to liver, the suspected source of infection. For a suspected liver abscess with ILAS, intravenous imipenem-cilastatin sodium (3 g/day) was started. Sepsis treatment was initiated. The patient had an increased oxygen requirement 4 h after admission. Under conditions of oxygen administration at 5 L/min via mask, arterial blood work done revealed an obviously decreased pH of 7.28 (normal range, 7.35–7.45), PaO2 of 63.5 (normal range, 80–100) mmHg, PaCO2 of 31.8 (normal range, 35–45) mmHg, actual bicarbonate HCO3 of 15 (normal range, 22–30) mmol/L, cGlu of 18.6 (normal range, 3.8–5.9) mmol/L, cLac of 2.6 (normal range, 0.5–1.6) mmol/L. Initiation of continuous renal replacement therapy in patients with severe lactic acidosis.

Fig. 1
figure 1

CT scans taken one day after admission demonstrating lung and liver findings. (a) and (b) Lung CT scans at admission show multiple nodules and patchy shadows across all lobes of both lungs. The most significant nodule, located in the lower lobe of the right lung, has a cross-section measuring about 3 cm × 2.2 cm, as indicated by the red arrow. (c) and (d) Hepatic CT scans reveal an increased volume of the caudate lobe and a low-density area(3.0 cm × 1.3 cm) in the caudate liver lobe, highlighted by the red arrow

He had a high fever of up to 39.9 °C (103.8 °F) 3 days after admission. Abdominal CT 3 days after admission revealed a 3.3 cm × 2.1 cm × 2.2 cm low-density area in the caudate lobe (Fig. S1). Chest CT demonstrated that increased local infection (Fig. S1). K. pneumoniae was isolated from blood culture, urine and phlegm, which was susceptible to imipenem, meropenem, ceftriaxone, amikacin, and ciprofloxacin. Eight days after admission, the improved CT examination suggested pulmonary embolism (Fig. 2), while cardiac ultrasound suggested pulmonary hypertension. Deep venous thrombosis was not observed by ultrasonography of the lower limbs. With the suspicion of liver abscesses, septic pulmonary embolism. The patient was treated with antibiotics and did not receive anticoagulation. Fifteen days after admission, there were no pulmonary embolism occurred (Fig. S2). The antibiotic therapy was successful (Fig. S3). The antibiotic regimen included intravenous Imipenem with cilastatin, levofloxacin, cefoperazone-sulbactam sodium and ceftazidime. The patient received antibiotics for 54 days and was hospitalized for 57 days. His data was collected through the follow in the outpatient department. A repeat CT performed 3 months after he was out of the hospital revealed resolution of the lung and liver infection (Fig. 3).

Fig. 2
figure 2

CT imaging findings eight days after admission. (a) and (b) Contrast-enhanced chest CTs reveal an increase in local infection, as indicated by the red arrow. (c) and (d) Improved CT scans suggest the presence of a pulmonary embolism. (e) and (f) Abdominal CT scans show an area of abnormal attenuation in the caudate lobe of the liver, measuring 3.3 cm × 2.1 cm × 2.2 cm

Fig. 3
figure 3

A repeat CT performed three months after discharge from the hospital showed resolution of lung and liver infections. (a-d) The CT images demonstrate the successful resolution of the infections in both the lung and liver, indicating a positive outcome of the treatment

Discussion

KPLA is a potentially life-threatening suppurating infection. The liver has double blood supplies including the hepatic artery and the portal vein. Since the gastrointestinal tract and the portal vein are linked, the pathogenic bacteria that cause liver abscesses primarily begin there. Diabetes mellitus and elderly male patients are most likely to develop abscesses [10, 11].

Our patient was a middle-aged man with elevated glycated hemoglobin, whose most obvious signs and symptoms at presentation (which included chills, rigors and fever) were suggestive of infection. The CT showed pulmonary abscess, pulmonary embolism and caudate liver abscess. Cultures of samples from blood, urine, and sputum were positive for K. pneumoniae. Our diagnosis was primarily based on the results from imaging and culture.

A review of the previously published cases of liver abscesses demonstrated that involvement of the right lobe was predominant (Table 1), rarely in the left lobe and bilateral lobes. However, the abscess in this case occurred in the caudate lobe. Rare infections bring great challenges to diagnosis and treatment. Liver abscesses contain both primary and secondary infections. In this case, the patient had no history of abdominal surgery or biliary tract infection, so we considered primary liver abscess. Hepatic abscess formation can occur through various routes, including biliary disorders, portal venous, hematogenous spread, direct infection and cryptogenic infection [12]. In this case, the absence of infection in the biliary system as seen on the liver CT scan does not support a biliary source of infection. Fig. S4 shows the main blood supply to the caudate lobe of the patient’s liver is derived from the portal vein, the blood supply of the portal vein to the caudate lobe is rich, and there is no obstruction in the inferior vena cava, excluding the possibility of retrograde infection. The likely reason for the infection in the caudate lobe of this patient may be due to K. pneumoniae, a conditional pathogen that entered through the portal vein, leading to a PLA. However, the patient had no evidence of intra-abdominal infection or intestinal infection, which does not align with the portal venous infection route. Therefore, we believe that the infection route for the caudate lobe liver abscess in this case is of cryptogenic origin. It was regrettable that the patient did not undergo endoscopy (gastroscopy, colonoscopy and small bowel endoscopy), serological tests or assessments of intestinal permeability to evaluate the integrity of the gastrointestinal mucosal barrier function.

Table 1 Summary of liver abscess sites from the last 20 years

Persistent thrombocytopenia is related to poor prognosis in Intensive Care Unit (ICU) patients [22]. The patient’s platelet count is very low, amounting to 6 × 109/L. K. pneumoniae infections can create thrombocytopenia. Platelets accelerate the development of hyperinflammation and microthrombosis. Patients with diabetes and ILAS showed elevated platelet reactivity. The main factor in the development of a widespread infection is the formation of a circulating platelet-leukocyte complex, which is facilitated by platelets [23]. Lancet Infectious Diseases reported that K. pneumoniae liver abscess is as a new invasive syndrome. The main risk factors for the development of metastatic infection in K. pneumoniae liver abscess are diabetes, the high virulence of the isolated strains (serotypes K1 and K2), and the expression of the gene rmpA [6]. The classification of the invasive liver abscess syndrome included endophthalmitis, empyema, septic pulmonary embolism, meningitis, osteomyelitis, psoas muscle abscess, chest wall abscess, and necrotizing fasciitis [6, 24]. In this case, he developed a septic pulmonary embolism.

Standard treatment for patients with liver abscesses is using adequate antibiotics (third-generation cephalosporins, fluoroquinolones, carbapenems) and drainage [25]. Carbapenem antibiotics should be preferred when the pathogen is unclear, sepsis, or septic shock. The caudate lobe of the liver has the dual characteristics of deep anatomical position and small size. Drainage treatment of caudate lobe liver abscess is very easy to cause damage to the surrounding structures and may lead to greater morbidity or even mortality. Therefore, some scholars suggest conservative treatment [26]. Currently, there are no guidelines for the drainage of caudate lobe liver abscesses. A review of past cases regarding the drainage treatment of caudate lobe abscesses found that abscesses with a maximum cross-sectional area greater than 9.86 cm² were treated with drainage (table S1). The maximum cross-sectional area of the abscess in this patient was 5.7 cm². Therefore, this patient was treated with antibiotic therapy for infection and was successfully cured.

Conclusion

The rarity of cases of K. pneumoniae caudate lobe abscess has also contributed to the lack of formal guidance. We describe the case of a K. pneumoniae caudate liver abscess with ILAS who was successfully treated with antibiotics with CRRT. Moving forward, we suggest that the patients with cryptogenic K. pneumoniae liver abscess are advised to undergo examination of intestinal barrier function (gastroscopy, small bowel endoscopy and tests for intestinal permeability). The study indicates that in patients with K. pneumoniae liver abscess, a caudate liver abscess size of ≤ 9.86 cm² may be characteristic of those suitable for conservative treatment of invasive liver abscess syndrome.

Data availability

Upon reasonable request, the corresponding author will share all the data.

Abbreviations

CRP:

C reactive protein

CRRT:

Continuous renal replacement therapy

CT:

Computed tomographic

ICU:

Intensive Care Unit

ILAS:

Invasive liver abscess syndrome

KPLA:

Klebsiella pneumoniae-caused liver abscess

PCT:

Procalcitonin

PLA:

Pyogenic liver abscess

URN:

Urea nitrogen

References

  1. He S, Yu J, Wang H, Chen X, He Z, Chen Y. Percutaneous fine-needle aspiration for pyogenic liver abscess (3–6 cm): a two-center retrospective study. BMC Infect Dis. 2020;20(1).

  2. Lo JZ, Leow JJ, Ng PL, Lee HQ, Mohd Noor NA, Low JK, Junnarkar SP, Woon WW. Predictors of therapy failure in a series of 741 adult pyogenic liver abscesses. J Hepato-Biliary-Pancreat Sci. 2015;22(2):156–65.

    Article  Google Scholar 

  3. Poovorawan K, Pan-Ngum W, Soonthornworasiri N, Kulrat C, Kittitrakul C, Wilairatana P, Treeprasertsuk S, Kitsahawong B, Phaosawasdi K. Burden of liver abscess and survival risk score in Thailand: a Population-based study. Am J Trop Med Hyg. 2016;95(3):683–8.

    Article  PubMed  PubMed Central  Google Scholar 

  4. Yin D, Ji C, Zhang S, Wang J, Lu Z, Song X, Jiang H, Lau WY, Liu L. Clinical characteristics and management of 1572 patients with pyogenic liver abscess: a 12-year retrospective study. Liver Int. 2021;41(4):810–8.

    Article  CAS  PubMed  Google Scholar 

  5. Lee SS, Chen YS, Tsai HC, Wann SR, Lin HH, Huang CK, Liu YC. Predictors of septic metastatic infection and mortality among patients with Klebsiella pneumoniae liver abscess. Clin Infect Dis. 2008;47(5):642–50.

    Article  PubMed  Google Scholar 

  6. Siu LK, Yeh KM, Lin JC, Fung CP, Chang FY. Klebsiella pneumoniae liver abscess: a new invasive syndrome. Lancet Infect Dis. 2012;12(11):881–7.

    Article  PubMed  Google Scholar 

  7. Li S, Yu S, Peng M, Qin J, Xu C, Qian J, He M, Zhou P. Clinical features and development of Sepsis in Klebsiella pneumoniae infected liver abscess patients: a retrospective analysis of 135 cases. BMC Infect Dis. 2021;21(1):597.

    Article  PubMed  PubMed Central  Google Scholar 

  8. Cho H, Lee ES, Lee YS, Kim YJ, Sohn CH, Ahn S, Seo DW, Lee JH, Kim WY, Lim KS. Predictors of septic shock in initially stable patients with pyogenic liver abscess. Scand J Gastroenterol. 2017;52(5):589–94.

    Article  PubMed  Google Scholar 

  9. Shin SU, Park CM, Lee Y, Kim EC, Kim SJ, Goo JM. Clinical and radiological features of invasive Klebsiella pneumoniae liver abscess syndrome. Acta Radiol. 2013;54(5):557–63.

    Article  PubMed  Google Scholar 

  10. Lee JJ, Hong SB, Lee NK, Park YJ, Kim SH, Park SW, Byon I, Kim S. Characteristics of computed tomography for identifying patients at high risk of endogenous endophthalmitis due to klebsiella pneumoniae-related pyogenic liver abscess. J Clin Med. 2022;11(15).

  11. Guo Y, Wang S, Zhan L, Jin Y, Duan J, Hao Z, Lv J, Qi X, Chen L, Kreiswirth BN, et al. Microbiological and clinical characteristics of Hypermucoviscous Klebsiella pneumoniae isolates associated with invasive infections in China. Front Cell Infect Microbiol. 2017;7:24.

    Article  PubMed  PubMed Central  Google Scholar 

  12. Rossi B, Gasperini ML, Leflon-Guibout V, Gioanni A, de Lastours V, Rossi G, Dokmak S, Ronot M, Roux O, Nicolas-Chanoine M-H, et al. HypervirulentKlebsiella pneumoniaein cryptogenic liver abscesses, Paris, France. Emerg Infect Dis. 2018;24(2):221–9.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  13. Rahimian J, Wilson T, Oram V, Holzman RS. Pyogenic liver abscess: recent trends in etiology and mortality. Clin Infect dis. 2004;39(11):1654–9.

    Article  PubMed  Google Scholar 

  14. Shen DX, Wang J, Li DD. Klebsiella pneumoniae liver abscesses. Lancet Infect dis. 2013;13(5):390–1.

    Article  PubMed  Google Scholar 

  15. Qu TT, Zhou JC, Jiang Y, Shi KR, Li B, Shen P, Wei ZQ, Yu YS. Clinical and microbiological characteristics of Klebsiella pneumoniae liver abscess in East China. BMC Infect Dis. 2015;15:161.

    Article  PubMed  PubMed Central  Google Scholar 

  16. Premathilake PNS, Kularatne WKS, Jayathilake JPK, Senadhira SDN. Klebsiella pneumoniae liver abscess: a case report. J Med Case Rep. 2018;12(1):367.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  17. Zhang S, Zhang X, Wu Q, Zheng X, Dong G, Fang R, Zhang Y, Cao J, Zhou T. Clinical, microbiological, and molecular epidemiological characteristics of Klebsiella pneumoniae-induced pyogenic liver abscess in southeastern China. Antimicrob Resist Infect Control. 2019;8:166.

    Article  PubMed  PubMed Central  Google Scholar 

  18. He S, Yu J, Wang H, Chen X, He Z, Chen Y. Percutaneous fine-needle aspiration for pyogenic liver abscess (3–6 cm): a two-center retrospective study. BMC Infect Dis. 2020;20(1):516.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  19. Ren Y, Wang H, Chang Z, Liu Z. Clinical and computed tomography features of extended-spectrum beta-lactamase-producing Klebsiella pneumoniae liver abscess. BMC Infect Dis. 2020;20(1):416.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  20. Bradley ME, Scoular SK. Metastatic Klebsiella pneumoniae invasive liver abscess syndrome in Denver, Colorado. J Pharm Pract. 2021;34(2):332–6.

    Article  PubMed  Google Scholar 

  21. Justo I, Vega V, Marcacuzco A, Caso Ó, García-Conde M, Manrique A, Calvo J, García-Sesma Á, San Juan R, Fernández-Ruiz M, et al. Risk factors indicating the need for surgical therapy in patients with pyogenic liver abscesses. Langenbecks Archives Surg. 2023;408(1):97.

    Article  Google Scholar 

  22. Khurana D, Deoke SA. Thrombocytopenia in critically ill patients: clinical and laboratorial behavior and its correlation with short-term outcome during hospitalization. Indian J Crit Care Med. 2017;21(12):861–4.

    Article  PubMed  PubMed Central  Google Scholar 

  23. Lee CH, Chuah SK, Tai WC, Chen IL. Platelet reactivity in diabetic patients with invasive Klebsiella pneumoniae liver abscess syndrome. Infect Drug Resist. 2018;11:1669–76.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  24. Lin JC, Chang FY. Pyogenic liver abscess associated with septic pulmonary embolism. J Chin Med Association. 2008;71(12):603–4.

    Article  Google Scholar 

  25. Wang WJ, Tao Z, Wu HL. Etiology and clinical manifestations of bacterial liver abscess: a study of 102 cases. Med (Baltim). 2018;97(38):e12326.

    Article  Google Scholar 

  26. Biskup E, Yang XY. Pyogenic hepatic abscess–less is more. A review for General internists. Praxis (Bern 1994). 2015;104(20):1091–5.

    Article  PubMed  Google Scholar 

Download references

Acknowledgements

We appreciate the patient providing us with clinical data.

Funding

Supported by Zigong Science and Technology Program (2023YLWS05), Special Project for Scientific and Technological Research of Sichuan Provincial Administration of Traditional Chinese Medicine (2023MS494), Research project of Zigong City Science & Technology and Intellectual Property Right Bureau (2022ZCYGY05), and Sichuan Medical Association Scientific Research Project (S21019).

Author information

Authors and Affiliations

Authors

Contributions

PX supervised, reviewed and edited the project. GW meticulously revised the manuscript and engaged in an in-depth discussion regarding the clinical significance of the case. LC summarized the literature and wrote the initial manuscript. LL, LZ and WC drew the figures. LL and WC proofread the structures. PX revised the manuscript. All authors reviewed the manuscript.

Corresponding authors

Correspondence to Guan Wang or Ping Xu.

Ethics declarations

Ethics approval

N/A.

Informed consent

Patient provided informed consent.

Consent for publication

The patient gave written, informed consent for the publication of any personal or medical information in this case report. Data from the clinical workout were used in this case report, which was conducted and presented in an anonymous manner.

Competing interests

The authors declare no competing interests.

Additional information

Publisher’s Note

Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Electronic supplementary material

Below is the link to the electronic supplementary material.

Supplementary Material 1

Rights and permissions

Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Cheng, L., Li, L., Liu, Y. et al. Liver abscess in the caudate lobe caused by Klebsiella pneumoniae: a rare case report and literature review. BMC Infect Dis 24, 708 (2024). https://doi.org/10.1186/s12879-024-09569-6

Download citation

  • Received:

  • Accepted:

  • Published:

  • DOI: https://doi.org/10.1186/s12879-024-09569-6

Keywords