Literature DB >> 12764363

Detection of minimal residual disease in hematologic malignancies by real-time quantitative PCR: principles, approaches, and laboratory aspects.

V H J van der Velden1, A Hochhaus, G Cazzaniga, T Szczepanski, J Gabert, J J M van Dongen.   

Abstract

Detection of minimal residual disease (MRD) has prognostic value in many hematologic malignancies, including acute lymphoblastic leukemia, acute myeloid leukemia, chronic myeloid leukemia, non-Hodgkin's lymphoma, and multiple myeloma. Quantitative MRD data can be obtained with real-time quantitative PCR (RQ-PCR) analysis of immunoglobulin and T-cell receptor gene rearrangements, breakpoint fusion regions of chromosome aberrations, fusion-gene transcripts, aberrant genes, or aberrantly expressed genes, their application being dependent on the type of disease. RQ-PCR analysis can be performed with SYBR Green I, hydrolysis (TaqMan) probes, or hybridization (LightCycler) probes, as detection system in several RQ-PCR instruments. Dependent on the type of MRD-PCR target, different types of oligonucleotides can be used for specific detection, such as an allele-specific oligonucleotide (ASO) probe, an ASO forward primer, an ASO reverse primer, or germline probe and primers. To assess the quantity and quality of the RNA/DNA, one or more control genes must be included. Finally, the interpretation of RQ-PCR MRD data needs standardized criteria and reporting of MRD data needs international uniformity. Several European networks have now been established and common guidelines for data analysis and for reporting of MRD data are being developed. These networks also include standardization of technology as well as regular quality control rounds, both being essential for the introduction of RQ-PCR-based MRD detection in multicenter clinical treatment protocols.

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Year:  2003        PMID: 12764363     DOI: 10.1038/sj.leu.2402922

Source DB:  PubMed          Journal:  Leukemia        ISSN: 0887-6924            Impact factor:   11.528


  95 in total

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Authors:  Nina F Øbro; Lars P Ryder; Hans O Madsen; Mette K Andersen; Birgitte Lausen; Henrik Hasle; Kjeld Schmiegelow; Hanne V Marquart
Journal:  Haematologica       Date:  2011-09-20       Impact factor: 9.941

Review 2.  Eliminating minimal residual disease as a therapeutic end point: working toward cure for patients with CLL.

Authors:  Philip A Thompson; William G Wierda
Journal:  Blood       Date:  2015-11-17       Impact factor: 22.113

3.  LC-FACSeq is a method for detecting rare clones in leukemia.

Authors:  Eileen Y Hu; James S Blachly; Caner Saygin; Hatice G Ozer; Stephanie E Workman; Arletta Lozanski; Tzyy-Jye Doong; Chi-Ling Chiang; Seema Bhat; Kerry A Rogers; Jennifer A Woyach; Kevin R Coombes; Daniel Jones; Natarajan Muthusamy; Gerard Lozanski; John C Byrd
Journal:  JCI Insight       Date:  2020-06-18

Review 4.  The evolution of clonality testing in the diagnosis and monitoring of hematological malignancies.

Authors:  Anna Gazzola; Claudia Mannu; Maura Rossi; Maria Antonella Laginestra; Maria Rosaria Sapienza; Fabio Fuligni; Maryam Etebari; Federica Melle; Elena Sabattini; Claudio Agostinelli; Francesco Bacci; Carlo Alberto Sagramoso Sacchetti; Stefano Aldo Pileri; Pier Paolo Piccaluga
Journal:  Ther Adv Hematol       Date:  2014-04

5.  Evaluation of the Abelson gene as a control gene for real-time quantitative PCR in multiple myeloma.

Authors:  Yao Zhang; Guo-Rui Ruan
Journal:  Clin Exp Med       Date:  2013-08-30       Impact factor: 3.984

6.  Relationship between minimal residual disease measured by multiparametric flow cytometry prior to allogeneic hematopoietic stem cell transplantation and outcome in children with acute lymphoblastic leukemia.

Authors:  Izaskun Elorza; Carlos Palacio; Jose Luis Dapena; Laura Gallur; José Sánchez de Toledo; Cristina Díaz de Heredia
Journal:  Haematologica       Date:  2010-02-23       Impact factor: 9.941

7.  Consensus JH gene probes with conjugated 3'-minor groove binder for monitoring minimal residual disease in acute lymphoblastic leukemia.

Authors:  Michihiro Uchiyama; Chihaya Maesawa; Akiko Yashima-Abo; Mitsu Tarusawa; Mikiya Endo; Waka Sugawara; Shoichi Chida; Shima Onodera; Yasuhiko Tsukushi; Yoji Ishida; Shigeru Tsuchiya; Tomoyuki Masuda
Journal:  J Mol Diagn       Date:  2005-02       Impact factor: 5.568

8.  Blinatumomab for Acute Lymphoblastic Leukemia: The First Bispecific T-Cell Engager Antibody to Be Approved by the EMA for Minimal Residual Disease.

Authors:  Sahra Ali; Alexandre Moreau; Daniela Melchiorri; Jorge Camarero; Filip Josephson; Odoardo Olimpier; Jonas Bergh; Dominik Karres; Kyriaki Tzogani; Christian Gisselbrecht; Francesco Pignatti
Journal:  Oncologist       Date:  2019-11-14

9.  Expression of the SK2 calcium-activated potassium channel is required for cholinergic function in mouse cochlear hair cells.

Authors:  Jee-Hyun Kong; John P Adelman; Paul A Fuchs
Journal:  J Physiol       Date:  2008-09-25       Impact factor: 5.182

Review 10.  Minimal residual disease quantitation in acute myeloid leukemia.

Authors:  David Shook; Elaine Coustan-Smith; Raul C Ribeiro; Jeffrey E Rubnitz; Dario Campana
Journal:  Clin Lymphoma Myeloma       Date:  2009
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