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Updated: May 12, 2026

Digital Home-Monitoring of Patients after Kidney Transplantation: The MACCS Platform
Published on: April 12, 2021
Long-term mTOR inhibitors administration evokes altered calcium homeostasis and platelet dysfunction in kidney
Esther López1, Alejandro Berna-Erro, Nuria Bermejo
1Cell Physiology Research Group, Department of Physiology, University of Extremadura, Cáceres, Spain.
Abstract:
The use of the mammal target of rapamycin (mTOR) inhibitors has been consolidated as the therapy of election for preventing graft rejection in kidney transplant patients, despite their immunosuppressive activity is less strong than anti-calcineurin agents like tacrolimus and cyclosporine A. Furthermore, as mTOR is widely expressed, rapamycin (a macrolide antibiotic produced by Streptomyces hygroscopicus) is recommended in patients presenting neoplasia due to its antiproliferative actions. Hence, we have investigated whether rapamycin presents side effects in the physiology of other cell types different from leucocytes, such as platelets. Blood samples were drawn from healthy volunteers and kidney transplant patients long-term medicated with rapamycin: sirolimus and everolimus. Platelets were either loaded with fura-2 or directly stimulated, and immunoassayed or fixed with Laemmli's buffer to perform the subsequent analysis of platelet physiology. Our results indicate that rapamycin evokes a biphasic time-dependent alteration in calcium homeostasis and function in platelets from kidney transplant patients under rapamycin regime, as demonstrated by the reduction in granule secretion observed and subsequent impairment of platelet aggregation in these patients compared with healthy volunteers. Platelet count was also reduced in these patients, thus 41% of patients presented thrombocytopenia. All together our results show that long-term administration of rapamycin to kidney transplant patients evokes alteration in platelet function.
Insights
Mammalian target of rapamycin (mTOR) inhibitors like rapamycin can impair platelet function and calcium homeostasis. Long-term use in kidney transplant patients may lead to reduced platelet counts and thrombocytopenia.
Area of Science:
- Immunology
- Pharmacology
- Hematology
Background:
- Mammalian target of rapamycin (mTOR) inhibitors are standard for preventing kidney transplant rejection.
- Rapamycin also has antiproliferative effects, making it useful in cancer treatment.
- Concerns exist regarding mTOR inhibitors' effects on non-leukocyte cell types, such as platelets.
Purpose of the Study:
- To investigate the effects of rapamycin on platelet physiology.
- To determine if rapamycin causes side effects in platelets of kidney transplant patients.
Main Methods:
- Blood samples were collected from healthy volunteers and kidney transplant patients on long-term rapamycin therapy.
- Platelets were analyzed for calcium homeostasis and function using fura-2 loading, direct stimulation, immunoassays, and Laemmli's buffer fixation.
Main Results:
- Rapamycin induced a biphasic, time-dependent alteration in platelet calcium homeostasis and function.
- Reduced granule secretion and impaired platelet aggregation were observed in patients on rapamycin.
- A significant reduction in platelet count was noted, with 41% of patients experiencing thrombocytopenia.
Conclusions:
- Long-term rapamycin administration in kidney transplant patients alters platelet function.
- Rapamycin treatment can lead to functional impairments and reduced platelet counts, including thrombocytopenia.
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