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Standardization of CFSE and Ki-67 based lymphocyte proliferation assays in the absence of thymidine-based methods among children with nephrotic syndrome in south India: A pilot study

Mathew, G.; Saravanan, P.; Syed, C.; Eswaran, A.; Kumar, A.; Oliver, E.; Kumar, S.; Joseph, L. L.; Agarwal, I.; Madhavan, R.

2025-08-14 allergy and immunology
10.1101/2025.08.12.25333468 medRxiv
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BackgroundLymphocyte proliferation assays are essential for assessing cellular immune responses, especially in immunocompromised individuals. Traditional thymidine-based methods have limitations such as radioactive hazard and limited accessibility in low-resource settings. This study aimed to optimize and validate carboxyfluorescein succinimidyl ester (CFSE) and Ki-67 based non-radioactive proliferation assays for potential application in children with nephrotic syndrome receiving corticosteroids. MethodsPeripheral blood mononuclear cells (PBMCs) from a healthy adult donor were used to optimize assay parameters including CFSE concentration, cell density, and stimulation kinetics. PBMCs from 20 pediatric participants were then stimulated with phytohemagglutinin (PHA). CFSE-labelled cells were analysed on day 6 for cell division, while Ki-67 expression was measured at 72-75 hours post-stimulation by flow cytometry. Proliferation was quantified as the percentage of proliferating cells after subtracting background from unstimulated controls. ResultsThe optimal CFSE concentration was 2.5{square}M at a cell density of 1{square}x{square}10{square} cells/mL. Ki-67 expression was stable between 69-96 hours, enabling processing flexibility. A cut-off of >50% proliferation was used for both assays. Among the pediatric samples, a moderate but statistically significant correlation was observed between CFSE and Ki-67 expression assays (Spearmans r = 0.57, p = 0.01), indicating concordance. ConclusionThis pilot study demonstrates the feasibility and reproducibility of CFSE and Ki-67-based assays especially with lower PBMC counts from pediatric population. These methods offer reliable, non-radioactive alternatives for immune monitoring in nephrotic syndrome cohorts. Validation in larger and diverse populations is recommended before broader implementation.

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