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   <ref-type name="Journal Article">17</ref-type>
   <contributors>
    <authors/>
   </contributors>
   <titles>
    <title></title>
   </titles>
   <dates>
    <year>2023</year>
    <pub-dates>
     <date>2023-07-03</date>
    </pub-dates>
   </dates>
   <doi>10.3390/genes14051085</doi>
   <abstract>Antipsychotic (AP)—induced adverse drug reactions (ADRs) are a current problem of&#13;
biological and clinical psychiatry. Despite the development of new generations of APs, the problem&#13;
of AP-induced ADRs has not been solved and continues to be actively studied. One of the important&#13;
mechanisms for the development of AP-induced ADRs is a genetically-determined impairment of AP&#13;
efflux across the blood-brain barrier (BBB). We present a narrative review of publications in databases&#13;
(PubMed, Springer, Scopus, Web of Science E-Library) and online resources: The Human Protein&#13;
Atlas; GeneCards: The Human Gene Database; US National Library of Medicine; SNPedia; OMIM&#13;
Online Mendelian Inheritance in Man; The PharmGKB. The role of 15 transport proteins involved in&#13;
the efflux of drugs and other xenobiotics across cell membranes (P-gp, TAP1, TAP2, MDR3, BSEP,&#13;
MRP1, MRP2, MRP3, MRP4, MRP5, MRP6, MRP7, MRP8, MRP9, BCRP) was analyzed. The important&#13;
role of three transporter proteins (P-gp, BCRP, MRP1) in the efflux of APs through the BBB was shown,&#13;
as well as the association of the functional activity and expression of these transport proteins with&#13;
low-functional and non-functional single nucleotide variants (SNVs)/polymorphisms of the ABCB1,&#13;
ABCG2, ABCC1 genes, encoding these transport proteins, respectively, in patients with schizophrenia&#13;
spectrum disorders (SSDs). The authors propose a new pharmacogenetic panel “Transporter protein&#13;
(PT)—Antipsychotic (AP) Pharmacogenetic test (PGx)” (PTAP-PGx), which allows the evaluation of&#13;
the cumulative contribution of the studied genetic biomarkers of the impairment of AP efflux through&#13;
the BBB. The authors also propose a riskometer for PTAP-PGx and a decision-making algorithm for&#13;
psychiatrists. Conclusions: Understanding the role of the transportation of impaired APs across the&#13;
BBB and the use of genetic biomarkers for its disruption may make it possible to reduce the frequency&#13;
and severity of AP-induced ADRs, since this risk can be partially modified by the personalized&#13;
selection of APs and their dosing rates, taking into account the genetic predisposition of the patient&#13;
with SSD.</abstract>
   <urls>
    <web-urls>
     <url>https://repo.bashgmu.ru/publication/2842</url>
    </web-urls>
    <pdf-urls>
     <url>https://repo.bashgmu.ru/files/3018</url>
    </pdf-urls>
   </urls>
  </record>
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