Genetic Testing for Antipsychotic Pharmacotherapy: Bench to Bedside

There is growing research interest in learning the genetic basis of response and adverse effects with psychotropic medications, including antipsychotic drugs. However, the clinical utility of information from genetic studies is compromised by their controversial results, primarily due to relatively...

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Main Author: Mujeeb U. Shad
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Behavioral Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-328X/11/7/97
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spelling doaj-eb833841dc1043adb3b7b93740c9c27e2021-07-23T13:30:53ZengMDPI AGBehavioral Sciences2076-328X2021-06-0111979710.3390/bs11070097Genetic Testing for Antipsychotic Pharmacotherapy: Bench to BedsideMujeeb U. Shad0Spring Valley Hospital and Medical Center, Valley Health System, Las Vegas, NV 89118, USAThere is growing research interest in learning the genetic basis of response and adverse effects with psychotropic medications, including antipsychotic drugs. However, the clinical utility of information from genetic studies is compromised by their controversial results, primarily due to relatively small effect and sample sizes. Clinical, demographic, and environmental differences in patient cohorts further explain the lack of consistent results from these genetic studies. Furthermore, the availability of psychopharmacological expertise in interpreting clinically meaningful results from genetic assays has been a challenge, one that often results in suboptimal use of genetic testing in clinical practice. These limitations explain the difficulties in the translation of psychopharmacological research in pharmacogenetics and pharmacogenomics from bench to bedside to manage increasingly treatment-refractory psychiatric disorders, especially schizophrenia. Although these shortcomings question the utility of genetic testing in the general population, the commercially available genetic assays are being increasingly utilized to optimize the effectiveness of psychotropic medications in the treatment-refractory patient population, including schizophrenia. In this context, patients with treatment-refractory schizophrenia are among of the most vulnerable patients to be exposed to the debilitating adverse effects from often irrational and high-dose antipsychotic polypharmacy without clinically meaningful benefits. The primary objective of this comprehensive review is to analyze and interpret replicated findings from the genetic studies to identify specific genetic biomarkers that could be utilized to enhance antipsychotic efficacy and tolerability in the treatment-refractory schizophrenia population.https://www.mdpi.com/2076-328X/11/7/97genetic testingantipsychoticpharmacotherapyschizophrenia
collection DOAJ
language English
format Article
sources DOAJ
author Mujeeb U. Shad
spellingShingle Mujeeb U. Shad
Genetic Testing for Antipsychotic Pharmacotherapy: Bench to Bedside
Behavioral Sciences
genetic testing
antipsychotic
pharmacotherapy
schizophrenia
author_facet Mujeeb U. Shad
author_sort Mujeeb U. Shad
title Genetic Testing for Antipsychotic Pharmacotherapy: Bench to Bedside
title_short Genetic Testing for Antipsychotic Pharmacotherapy: Bench to Bedside
title_full Genetic Testing for Antipsychotic Pharmacotherapy: Bench to Bedside
title_fullStr Genetic Testing for Antipsychotic Pharmacotherapy: Bench to Bedside
title_full_unstemmed Genetic Testing for Antipsychotic Pharmacotherapy: Bench to Bedside
title_sort genetic testing for antipsychotic pharmacotherapy: bench to bedside
publisher MDPI AG
series Behavioral Sciences
issn 2076-328X
publishDate 2021-06-01
description There is growing research interest in learning the genetic basis of response and adverse effects with psychotropic medications, including antipsychotic drugs. However, the clinical utility of information from genetic studies is compromised by their controversial results, primarily due to relatively small effect and sample sizes. Clinical, demographic, and environmental differences in patient cohorts further explain the lack of consistent results from these genetic studies. Furthermore, the availability of psychopharmacological expertise in interpreting clinically meaningful results from genetic assays has been a challenge, one that often results in suboptimal use of genetic testing in clinical practice. These limitations explain the difficulties in the translation of psychopharmacological research in pharmacogenetics and pharmacogenomics from bench to bedside to manage increasingly treatment-refractory psychiatric disorders, especially schizophrenia. Although these shortcomings question the utility of genetic testing in the general population, the commercially available genetic assays are being increasingly utilized to optimize the effectiveness of psychotropic medications in the treatment-refractory patient population, including schizophrenia. In this context, patients with treatment-refractory schizophrenia are among of the most vulnerable patients to be exposed to the debilitating adverse effects from often irrational and high-dose antipsychotic polypharmacy without clinically meaningful benefits. The primary objective of this comprehensive review is to analyze and interpret replicated findings from the genetic studies to identify specific genetic biomarkers that could be utilized to enhance antipsychotic efficacy and tolerability in the treatment-refractory schizophrenia population.
topic genetic testing
antipsychotic
pharmacotherapy
schizophrenia
url https://www.mdpi.com/2076-328X/11/7/97
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