Copyright: ©Author(s) 2026.
World J Nephrol. Sep 25, 2026; 15(3): 118018
Published online Sep 25, 2026. doi: 10.5527/wjn.118018
Published online Sep 25, 2026. doi: 10.5527/wjn.118018
Table 2 Post-coronavirus disease condition clinical outcomes in kidney transplant recipients
| Ref. | Setting and design | Population | Definition/timing of PCC | Key outcomes | Risk factors/notable points |
| Malinowska et al[14], 2021 | Longitudinal cohort of KTR from north Poland with prior COVID-19; 6-month assessment of symptoms and HRQoL | 67 KTR | “Post-COVID-19 syndrome” defined as persistent symptoms ≥ 12 weeks; follow-up at median 6 months | About 70% fulfilled criteria for post-COVID syndrome; fatigue, myalgia, cognitive complaints and sleep disturbance were common. Significant decline in HRQoL (EQ-5D-5 L, EQ-VAS) vs pre-COVID, especially pain/discomfort and anxiety/depression domains | Older age and a higher Charlson Comorbidity Index are associated with post-COVID syndrome. Authors compare burden with haemodialysis cohorts and the general population, suggesting KTR and HD both show disproportionate long-COVID-related QoL loss |
| Basic-Jukic et al[15], 2021 | Single-centre prospective cohort of KTR surviving acute COVID-19; early post-infection follow-up | 104 KTR | Prolonged symptoms or clinical complications at a median of 64 days post-diagnosis; not strictly WHO-PCC but early PASC | 45% had prolonged symptoms or clinical complications; 71% had lab abnormalities (e.g., elevated D-dimer, inflammatory markers). Decline in eGFR and higher rejection episodes in those with more severe acute disease | Older age, lower baseline eGFR and clinical complications during acute COVID-19 are associated with poorer composite outcomes; calcineurin inhibitor dose reduction is associated with better outcomes in this cohort |
| Basic-Jukic et al[15], 2021 (“Late Effect in KTR” study) | Longer-term follow-up of KTR after early-wave COVID-19, stratified by severity | About 150 KTR with prior COVID-19, followed up to 24 months | Not symptom-based PCC; focuses on late graft and patient outcomes after COVID-19 | Severe acute COVID-19 is associated with higher late mortality, graft loss, and larger eGFR decline compared to mild/moderate disease. Symptom persistence is less central than structural outcome signals | Suggests that in KTR, “long COVID” can be biochemical/structural (eGFR decline, rejection, graft loss) as well as symptomatic, and that acute severity imprints a long-term trajectory |
| Shafiekhani et al[16], 2023 | Prospective cohort of hospitalised COVID-19 patients; KTR vs non-transplant controls, 6-month follow-up | 148 KTR, 100 non-KTR | Post-COVID complications (clinical + radiological + functional) at 6 months | KTR had a higher prevalence of post-COVID complications than controls, including dyspnoea, fatigue and radiographic lung changes, plus more rehospitalizations | Risk factors for complications in KTR included CKD, hypertension, prior cerebrovascular disease and diabetes. Emphasises interaction between transplant-related immunosuppression and classic vascular comorbidity |
| Amorim et al[17], 2022 | Large multicentre survey of KTR with confirmed COVID-19 infection; 3-month follow-up | 780 KTR | Long COVID is defined as ≥ 1 organic symptom persisting at 3 months | 27%-28% met long COVID criteria. Fatigue, dyspnoea, myalgia and cognitive complaints are the most frequent. 17% had not returned to work at 3 months | The main independent predictor of long COVID was the number of symptoms during the acute infection. No clear association with baseline immunosuppression pattern. Provides a large, real-world estimate of long COVID burden in KTR |
| Zahradka et al[18], 2025 | Nationwide survey of KTR with prior COVID-19; latent-class modelling of symptom clusters | 596 KTR, median follow-up about 1 year | WHO-aligned PCC criteria; clustering of symptom profiles | 33.7% met PCC criteria. Eight distinct phenotypes identified (fatigue-dominant, cardiorespiratory, neurocognitive, musculoskeletal, etc.). Many patients had overlapping clusters | Risk: More severe acute COVID-19, higher BMI, ongoing corticosteroid use. Male sex appeared protective (OR = 0.69). Highlights that long COVID in KTR is heterogeneous, not a single syndrome |
| Morená et al[21], 2024 | Prospective SOTR cohort (kidney, liver, heart, lung) in Spain in an Omicron-dominant, highly vaccinated setting | Mixed SOTR; substantial KTR subset | PASC is defined at > 12 weeks post-infection | PASC is still frequent but somewhat lower than early-wave reports; fatigue and dyspnoea predominate | Vaccination and Omicron seem to shift the severity spectrum, but do not abolish PASC. KTR behave similarly to other SOTR with regard to symptom profiles |
| Sandoval et al[24], 2025 | Multicentre SOT cohort (including KTR) evaluating self-reported long COVID and risk factors | Mixed SOT; KTR an important subgroup | Patient-reported long COVID several months post-infection | Long COVID prevalence in SOT is broadly comparable to high-risk general populations; symptom clusters are similar (fatigue, dyspnoea, cognitive issues) | More severe acute disease, female sex, and psychological comorbidity are associated with PASC; the specific effect of immunosuppression intensity is less clear |
- Citation: Jain P, Wu HHL, Ali W, Mamidi V, Chinnadurai R. Shadows of infection: Post-coronavirus disease condition and outcome patterns in patients receiving dialysis and kidney transplant recipients. World J Nephrol 2026; 15(3): 118018
- URL: https://www.wjgnet.com/2220-6124/full/v15/i3/118018.htm
- DOI: https://dx.doi.org/10.5527/wjn.118018