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Infections among pediatric transplant candidates: An approach to decision-making
Arnaud G L'Huillier1,2, Michael Green3, Lara Danziger-Isakov4
1The Hospital for Sick Children, University of Toronto, Toronto, Ontario, Canada.
Insights
Transplant candidates with infections require careful consideration. A structured expert framework helps decide if transplantation can proceed safely, balancing infection severity and transplant urgency.
Area of Science:
- Transplant medicine
- Infectious disease management
Background:
- Pretransplant infections complicate solid organ transplantation (SOT) decisions.
- Delaying transplantation due to infection carries risks for recipients.
Purpose of the Study:
- To develop a structured framework using expert opinion for managing pretransplant infections.
- To guide safe transplantation decisions for candidates with immediate pretransplant infections.
Main Methods:
- Expert opinions were gathered via a survey on 59 clinical scenarios.
- Scenarios were categorized by transplantation delay: no delay, brief delay (≤1 week), intermediate delay (>1 week), or prolonged delay.
- Agreement levels and confidence intervals were calculated.
Main Results:
- Mean overall expert agreement across scenarios was 61%.
- Significant agreement (lower bound of 95% CI >50%) was found in 7 out of 59 scenarios.
- Key decision factors identified were transplant urgency and infection severity.
Conclusions:
- Expert opinion highlights the need for a structured approach to pretransplant infections.
- Transplant urgency and infection severity are critical in deciding whether to delay transplantation.
- The developed framework aids clinical decision-making in complex pretransplant infection scenarios.
Introduction:
The presence of infections in the immediate pretransplant period poses challenges in decision-making. Delaying transplantation because of these infections may be required, but is associated with a risk to the potential recipient. The aim of this project was to develop a structured framework based on expert opinion to guide decision-making regarding the safety of transplantation for candidates with infection immediately before transplant, and to show how this framework can be applied to clinical scenarios.
Methods:
Categories were created as follows: Category A: no delay; Category B: brief delay (≤1 week); Category C: intermediate delay (>1 week); and Category D: more prolonged or indefinite delay. A survey containing 59 clinical scenarios was sent to members of the IPTA ID CARE committee. Answers were reviewed, and the level of agreement was characterized as follows: Level 1: ≥75% agreement; Level 2:51%-74% agreement; and Level 3: ≤50% agreement. 95% CIs were calculated for the mean overall agreement across 59 scenarios.
Results:
Among the panel, the agreement level ranged from 33% to 92% with the mean overall agreement across the 59 scenarios being 61%. For 7/59 scenarios, the lower bound of 95% CI was greater than 50%, indicating a difference at the 5% level of significance between the observed proportion and the chance level of 0.5.
Summary:
The document provides expert opinion regarding the need to delay transplantation in the setting of different infections. The most important points in the decision to proceed to SOT included the urgency of transplantation and the severity of infection.
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