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Comparative Efficacy and Safety of Low-Dose Versus Standard-Dose Rabbit Antithymocyte Globulin Induction Strategy in
Dinesh Khullar1, Deepak Kumar Panigrahi1, Sahil Bagai1
1Nephrology, Max Super Speciality Hospital, Saket, New Delhi, IND.
Background Rabbit antithymocyte globulin (rATG) is frequently utilized as an induction therapy in kidney transplant recipients (KTRs). Full-dose rATG induction therapy (7-10 mg/kg) has been associated with increased morbidity. However, definitive data on the appropriate rATG dosage remains scarce. In this study, we evaluated the efficacy and tolerability of varying rATG doses in KTRs. Methodology A single-center, retrospective, observational study was conducted between 2009 and 2014 in a cohort of 208 KTRs who received rATG induction therapy. Patients included in the study had received two to three consecutive doses of rATG as part of their planned induction protocol. Participants were categorized into the following two groups based on the cumulative dosage of rATG received during induction therapy: group A received 2 or 2.5 mg/kg, while group B received ≥3 mg/kg. The five-year follow-up data were analyzed. Results A cumulative rATG dose of 2 or 2.5 mg/kg and ≥3 mg/kg was given to 122 and 86 patients, respectively. The incidence of delayed graft function (DGF), acute rejection episodes, total graft loss, death, and death-censored graft loss was 6.25%, 3.84%, 7.21%, 4.32%, and 2.88%, respectively. Two malignancies and 141 infectious complications were noted. There was no significant difference between the groups regarding DGF, total graft loss, death, death-censored graft loss, infectious complications, and incidence of acute rejection episodes. Deceased donor kidney transplantation was identified as a significant predictor of acute rejection episodes (odds ratio = 9.19, 95% confidence interval = 1.567-53.907; p = 0.014). Conclusions The dosage for rATG induction therapy for KTRs should be tailored based on immunological and other factors impacting graft survival, along with a comprehensive risk assessment for potential infectious complications. A cumulative dose of 2.0 or 2.5 mg/kg could be optimal, offering effective induction therapy in KTRs with excellent graft survival rates and potentially fewer infectious complications.
Background Rabbit antithymocyte globulin (rATG) is frequently utilized as an induction therapy in kidney transplant recipients (KTRs). Full-dose rATG induction therapy (7-10 mg/kg) has been associated with increased morbidity. However, definitive data on the appropriate rATG dosage remains scarce. In this study, we evaluated the efficacy and tolerability of varying rATG doses in KTRs. Methodology A single-center, retrospective, observational study was conducted between 2009 and 2014 in a cohort of 208 KTRs who received rATG induction therapy. Patients included in the study had received two to three consecutive doses of rATG as part of their planned induction protocol. Participants were categorized into the following two groups based on the cumulative dosage of rATG received during induction therapy: group A received 2 or 2.5 mg/kg, while group B received ≥3 mg/kg. The five-year follow-up data were analyzed. Results A cumulative rATG dose of 2 or 2.5 mg/kg and ≥3 mg/kg was given to 122 and 86 patients, respectively. The incidence of delayed graft function (DGF), acute rejection episodes, total graft loss, death, and death-censored graft loss was 6.25%, 3.84%, 7.21%, 4.32%, and 2.88%, respectively. Two malignancies and 141 infectious complications were noted. There was no significant difference between the groups regarding DGF, total graft loss, death, death-censored graft loss, infectious complications, and incidence of acute rejection episodes. Deceased donor kidney transplantation was identified as a significant predictor of acute rejection episodes (odds ratio = 9.19, 95% confidence interval = 1.567-53.907; p = 0.014). Conclusions The dosage for rATG induction therapy for KTRs should be tailored based on immunological and other factors impacting graft survival, along with a comprehensive risk assessment for potential infectious complications. A cumulative dose of 2.0 or 2.5 mg/kg could be optimal, offering effective induction therapy in KTRs with excellent graft survival rates and potentially fewer infectious complications.
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