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    1. Medicin
    2. Kirurgi
    3. Transplantationskirurgi

    Personalized Immunosuppression in Transplantation

    Role of Biomarker Monitoring and Therapeutic Drug Monitoring

    AvMichael Oellerich,Amitava Dasgupta

    Inbunden, Engelska, 2015

    893 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Personalized Immunosuppression in Transplantation: Role of Biomarker Monitoring and Therapeutic Drug Monitoring provides coverage of the various approaches to monitoring immunosuppressants in transplant patients, including the most recently developed biomarker monitoring methods, pharmacogenomics approaches, and traditional therapeutic drug monitoring.

    The book is written for pathologists, toxicologists, and transplant surgeons who are involved in the management of transplant patients, offering them in-depth coverage of the management of immunosuppressant therapy in transplant patients with the goal of maximum benefit from drug therapy and minimal risk of drug toxicity.

    This book also provides practical guidelines for managing immunosuppressant therapy, including the therapeutic ranges of various immunosuppressants, the pitfalls of methodologies used for determination of these immunosuppressants in whole blood or plasma, appropriate pharmacogenomics testing for organ transplant recipients, and when biomarker monitoring could be helpful.



    • Focuses on the personalized management of immunosuppression therapy in individual transplant patients
    • Presents information that applies to many areas, including gmass spectrometry, assay design, assay validation, clinical chemistry, and clinical pathology
    • Provides practical guidelines for the initial selection and subsequent modifications of immunosuppression therapy in individual transplant patients
    • Reviews the latest research in biomarker monitoring in personalizing immunosuppressant therapy, including potential new markers not currently used, but with great potential for future use
    • Explains how monitoring graft-derived, circulating, cell free DNA has shown promise in the early detection of transplant injury in liquid biopsy

    Produktinformation

    • Utgivningsdatum:2015-10-20
    • Mått:191 x 235 x 20 mm
    • Vikt:880 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:316
    • Förlag:Elsevier Science
    • ISBN:9780128008850

    Utforska kategorier

    • Transplantationskirurgi inom Medicin
    • Onkologi inom Medicin

    Mer om författaren

    Michael Oellerich, MD, HonMD, FACB, FAMM, FFPath (RCPI), FRCPath, is a chemical pathologist. Since 2012, he has had an appointment as a Lower Saxony Distinguished Professor of Clinical Chemistry at the Department of Clinical Pharmacology, Medical Faculty (UMG) of the George-August University, Göttingen, Germany. He was Chairman of the Department of Clinical Chemistry/Central Laboratory at UMG from 1991 to 2012. Since 2013, he has been a member of the Medical Advisory Board of Chronix Biomedical Inc., San Jose, CA, USA. From 1996 to 1998, he served as Dean of the Faculty of Medicine. He also served as President of the International Association of Therapeutic Drug Monitoring and Clinical Toxicology (IATDMCT), the German Association for Laboratory Medicine, the German United Association for Clinical Chemistry and Laboratory Medicine, and the World Association of Societies of Pathology and Laboratory (WASPaLM). Since 2003, he has been Editor-in-Chief of Therapeutic Drug Monitoring. Previously, he was Associate Editor of Clinical Biochemistry and of Clinical Chemistry. His current research interests are in the field of therapeutic drug monitoring, with particular focus on endogenous biomarkers to achieve personalized immunosuppression in transplantation (e.g. graft-derived circulating cell-free DNA as “liquid biopsy”), as well as pharmacogenetics. Further topics include proteomics, analytical techniques (e.g. LC-MS/MS), and molecular diagnostics. He has authored more than 400 publications, and has received various awards (e.g. Ludolf-Krehl Award, IATDMCT Charles Pippenger Award, WASPaLM Medal of Honor, WASPaLM Gold-Headed Cane). Amitava Dasgupta received his Ph. D in chemistry from Stanford University and completed his fellowship training in Clinical Chemistry from the Department of Laboratory Medicine at the University of Washington School of Medicine at Seattle. He is board certified in both Toxicology and Clinical Chemistry by the American Board of Clinical Chemistry. Currently, he is a tenured Full Professor of Pathology and Laboratory Medicine at the University of Kansas Medical Center and Director of Clinical Laboratories at the University of Kansas Hospital. Prior to this appointment he was a tenured Professor of Pathology and Laboratory Medicine at the University of Texas McGovern medical School from February 1998 to April 2022. He has 252 papers to his credit. He is in the editorial board of four journals including Therapeutic Drug Monitoring, Clinica Chimica Acta, Archives of Pathology and Laboratory Medicine, and Journal of Clinical Laboratory Analysis.

    Innehållsförteckning

    • Chapter 1. Overview of the pharmacology and toxicology of immunosuppressant agents that require therapeutic drug monitoringChapter 2. Limitations of Immunoassays Used for Therapeutic Drug Monitoring of ImmunosuppressantsChapter 3. Application of liquid chromatography combined with mass spectrometry or tandem mass spectrometry for therapeutic drug monitoring of immunosuppressantsChapter 4. Monitoring Free Mycophenolic Acid Concentration: Is There any Clinical Advantage?Chapter 5. Pharmacogenomics aspect of immunosuppressant therapyChapter 6. Biomarker monitoring in immunosuppressant therapy: An overviewChapter 7. Graft-derived cell-free DNA as a Marker of Graft Integrity after TransplantationChapter 8. Biomarkers of tolerance in kidney transplantationChapter 9. Intracellular concentrations of immunosuppressantsChapter 10. Markers of lymphocyte activation and proliferationChapter 11. Monitoring Calcineurin inhibitors response based on NFAT-regulated gene expression