Recent Topics on The Mechanisms of Immunosuppressive Therapy-Related Neurotoxicities
Wei Zhang1, Nobuaki Egashira2,3, Satohiro Masuda1,4
1Department of Clinical Pharmacology and Biopharmaceutics, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka 812-8582, Japan.
Abstract:
Although transplantation procedures have been developed for patients with end-stage hepatic insufficiency or other diseases, allograft rejection still threatens patient health and lifespan. Over the last few decades, the emergence of immunosuppressive agents such as calcineurin inhibitors (CNIs) and mammalian target of rapamycin (mTOR) inhibitors have strikingly increased graft survival. Unfortunately, immunosuppressive agent-related neurotoxicity commonly occurs in clinical practice, with the majority of neurotoxicity cases caused by CNIs. The possible mechanisms through which CNIs cause neurotoxicity include increasing the permeability or injury of the blood-brain barrier, alterations of mitochondrial function, and alterations in the electrophysiological state. Other immunosuppressants can also induce neuropsychiatric complications. For example, mTOR inhibitors induce seizures, mycophenolate mofetil induces depression and headaches, methotrexate affects the central nervous system, the mouse monoclonal immunoglobulin G2 antibody (used against the cluster of differentiation 3) also induces headaches, and patients using corticosteroids usually experience cognitive alteration. Therapeutic drug monitoring, individual therapy based on pharmacogenetics, and early recognition of symptoms help reduce neurotoxic events considerably. Once neurotoxicity occurs, a reduction in the drug dosage, switching to other immunosuppressants, combination therapy with drugs used to treat the neuropsychiatric manifestation, or blood purification therapy have proven to be effective against neurotoxicity. In this review, we summarize recent topics on the mechanisms of immunosuppressive drug-related neurotoxicity. In addition, information about the neuroprotective effects of several immunosuppressants is also discussed.
Insights
Immunosuppressive drugs improve transplant survival but can cause neurotoxicity. This review details mechanisms, symptoms, and management strategies for these adverse neurological effects, aiding clinical practice.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Transplantation success is limited by allograft rejection.
- Immunosuppressants like calcineurin inhibitors (CNIs) and mTOR inhibitors improve graft survival.
- Neurotoxicity is a significant adverse effect of immunosuppressive agents, particularly CNIs.
Purpose of the Study:
- To review the mechanisms of immunosuppressive drug-related neurotoxicity.
- To discuss the neuroprotective effects of certain immunosuppressants.
- To provide insights for managing neurotoxic events in transplant patients.
Main Methods:
- Literature review of recent research on immunosuppressive drug neurotoxicity.
- Analysis of proposed mechanisms of neurotoxicity.
- Discussion of clinical management and therapeutic strategies.
Main Results:
- CNIs can cause neurotoxicity via blood-brain barrier disruption, mitochondrial dysfunction, and altered electrophysiology.
- Other immunosuppressants (mTOR inhibitors, mycophenolate mofetil, methotrexate, etc.) are associated with various neuropsychiatric complications.
- Therapeutic drug monitoring, pharmacogenetics, and early symptom recognition are key to reducing neurotoxicity.
Conclusions:
- Immunosuppressive drugs, while vital for transplantation, pose a risk of neurotoxicity.
- Understanding the mechanisms and clinical manifestations is crucial for effective patient management.
- Strategies including dose adjustment, drug switching, and supportive therapies can mitigate neurotoxic effects.
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