Surgical procedures for the treatment of fungal periprosthetic infection following hip arthroplasty: a systematic scoping review

Author:

Guan Yun1,Zheng Hanxiao2,Zeng Zhimin3,Tu Yiji3

Affiliation:

1. Medical Examination Center

2. Department of Anesthesiology

3. Orthopedic Surgery, Ningbo No.6 Hospital, Ningbo city, Zhejiang Province, China

Abstract

Background: There has been limited literature synthesizing the therapeutic effects of surgical procedures for fungal periprosthetic joint infection (PJI) following hip arthroplasty. The authors’ current study aims to comprehensively review and analyze those relevant literature, and carefully make recommendations for future clinical practices. Methods: Our current study was carried out in accordance with the PRISMA 2020 statement. Studies regarding the surgical management of fungal PJI following hip arthroplasty were collected via a thorough search of PubMed, Embase and Google scholar databases. The search was lastly performed in March 2023. Non-English language, reviews, articles with duplicated data, and articles without clear information about the type of fungal pathogens and treatment options were excluded. The authors evaluated their systematic review compliance by using AMSTAR 2 criteria and fell in moderate quality. Clinical outcomes of different surgical procedures were evaluated, and a binary logistic regression model was used to identify the risks associated with treatment failure. Data analyses were performed using the SPSS version 19.0. Results: A total of 33 articles encompassing 80 patients with fungal PJI following hip arthroplasty were identified. Candida albicans was the most frequently isolated fungus (56.3%, 45/80). The overall treatment success was achieved in 71.1% (54/76) of the reported cases. Univariate analysis showed that the differences of success rate were not significant between publication periods, genders, ages, specimen collection methods, and fungal pathogens. Treatment success rate was 47.4% (9/19) in fungal PJI cases with bacterial co-infection, significantly lower than those without [vs. 79.0% (45/57), P=0.017]. The pooled success rate for surgical debridement, spacer implantation, resection arthroplasty, one-stage revision, and two-stage revision was 50.0% (4/8), 42.9% (3/7), 55.0% (11/20), 86.7% (13/15), and 88.5% (23/26), respectively, with significant differences between them (P=0.009). A binary logistic regression model showed that bacterial co-infection and surgical option were the two significant risk factors associated with treatment failure for fungal PJI following hip arthroplasty. Discussion: Regarding the surgical treatment of fungal PJI following hip arthroplasty, patients with bacterial co-infection, and those treated with surgical procedures such as debridement, spacer implantation, and resection arthroplasty should be aware of the higher risks of failure. Nonetheless, future multiple-centre cohort studies are required to establish the optimal treatment.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Reference58 articles.

1. Diagnosis and management of fungal periprosthetic joint infections;Nace;J Am Acad Orthop Surg,2019

2. Advances in the microbiological diagnosis of prosthetic joint infections;Portillo;Diagnostics (Basel),2023

3. Fungal infection of prosthetic joints: a report of two cases;Goodman;J Rheumatol,1983

4. Fungal periprosthetic joint infection: a review of demographics and management;Gross;J Arthroplasty,2021

5. Systemic review of published literature on Candida infection following total hip arthroplasty;Kim;Mycopathologia,2015

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