Impact of chronic kidney disease on adverse event topography and economic burden in CAR T-cell therapy for DLBCL: A national analysis.
Abstract
e19054 Background: Chronic kidney disease (CKD) may potentiate toxicity and impair organ resilience in recipients of chimeric antigen receptor (CAR) T-cell therapy for diffuse large B-cell lymphoma (DLBCL). While cytokine response syndrome (CRS) and immune cell effector neurotoxicity syndrome (ICANS) have been reported with CKD, the cardiac, infectious, and economic sequelae are insufficiently described. We evaluated these outcomes across CKD strata from a national database. Methods: Using the National Inpatient Sample (2017–2022), we identified adult DLBCL hospitalizations receiving CAR T-cell therapy. ESRD patients were excluded. CKD was examined in two frameworks: CKD3a+ (eGFR <60 mL/min) versus no/CKD1–2, and CKD3b+ (eGFR <45 mL/min) versus no–CKD3a. Outcomes included in-hospital mortality, CRS (2021–2022), ICANS (2022), cardiac events, infections, acute kidney injury (AKI), renal replacement therapy and total hospitalization costs (calculated using TOTCHG variable and adjusted cost to charge ratio) and comparative analyses was done using chi-square testing. Multivariable models adjusted for demographics, comorbidities, and hospital characteristics. Results: In a cohort of 5,400 hospitalized DLBCL patients receiving CAR-T, those with CKD stage 3a or higher (CKD3a+; n=165; 3.1%) had higher rates of AKI (33.3% vs 11.6%; p<0.001) and renal replacement therapy (6.1% vs 1.4%; p=0.040) compared to no/CKD1–2 (n=5,235. Total hospitalization cost was higher (USD 456,198 vs 365,182; p=0.024) and grade 4 ICANS occurred more frequently (10.0% vs 1.4%; p=0.046). Mortality (6.1% vs 2.8%; p=0.259), pneumonia (12.1% vs 6.1%; p=0.246) and cardiac arrhythmias (33.3% vs 21.2%; p=0.094) were increased numerically. After multivariable adjustment, most differences diminished (mortality odds ratio [OR] 1.8, p=0.617; AKI OR 1.2, p=0.735). Among patients with CKD stage 3b or higher (CKD3b+; n=80; 1.5%), complications were more pronounced. In-hospital mortality was substantially higher (12.5% vs 2.7%; p=0.017), along with grade 4 CRS (7.7% vs 1.0%; p=0.011), acute myocardial infarction (6.3% vs 0.7%; p=0.007) and AKI (50.0% vs 11.7%; p<0.001). The cost of hospitalization (USD 446,074 vs 366,826; p=0.197) trended higher. Adjusted models confirmed markedly increased mortality (OR 10.2, 1.5–67.8; p=0.016) but other outcomes were not significant. Conclusions: CKD3b+ is associated with substantially higher mortality with signal of augmented high-grade CRS and cardiac events, whereas CKD3a+ exhibited worsening in renal outcomes and higher cost that attenuated after adjustment. These findings position pre-existing renal dysfunction especially CKD3b+ as a clinically salient risk substrate warranting pre-emptive risk stratification, vigilant cardiac monitoring and proactive organ-support pathways to mitigate downstream morbidity and mortality.
Article Details
Journal Info
Journal of Clinical Oncology
Lippincott Williams & Wilkins
Authors (8)
Furha Cossor
6Saint Luke's Hospital of Kansas City, Kansas City, United States
Himil Mahadevia
4Mayo Clinic Florida, 4500 San Pablo Rd S, United States
Karnav Modi
University of Missouri Kansas City, Kansas City, Missouri, United States
Yajur Arya
1Mayo Clinic, Hematology & Oncology, Jacksonville, United States
Arshi Syal
1Mayo Clinic, Hematology & Oncology, Jacksonville, United States
Vasu Bansal
1University of Missouri Kansas City, kansan city, United States
Deepthi Vodnala
6Saint Luke's Hospital of Kansas City, Kansas City, United States
Taiyeb Khumri
6Saint Luke's Hospital of Kansas City, Kansas City, United States