J 2017

Biobanking strategy and sample preprocessing for integrative research in monoclonal gammopathies

SEVCIKOVA, Tereza; Katerina GROWKOVA; Zuzana CHYRA; Jana FILIPOVA; P. VRUBLOVA et al.

Základní údaje

Originální název

Biobanking strategy and sample preprocessing for integrative research in monoclonal gammopathies

Autoři

SEVCIKOVA, Tereza; Katerina GROWKOVA; Zuzana CHYRA; Jana FILIPOVA; P. VRUBLOVA; Tomas JELINEK; Z. KORISTEK; F. KRYUKOV; Elena Vladimirovna KRYUKOVA a Roman HÁJEK

Vydání

Journal of clinical pathology, London, BMJ Publishing Group, 2017, 0021-9746

Další údaje

Jazyk

angličtina

Typ výsledku

Článek v odborném periodiku

Obor

30109 Pathology

Stát vydavatele

Velká Británie a Severní Irsko

Utajení

není předmětem státního či obchodního tajemství

Odkazy

Impakt faktor

Impact factor: 2.894

Označené pro přenos do RIV

Ano

Kód RIV

RIV/00216224:14110/17:00100122

Organizační jednotka

Lékařská fakulta

EID Scopus

Klíčová slova anglicky

monoclonal gammopathies; MULTIPLE-MYELOMA; BONE-MARROW; PLASMA-CELLS; CRITERIA; DISEASE; RNA

Štítky

Příznaky

Mezinárodní význam, Recenzováno
Změněno: 2. 1. 2020 16:21, Mgr. Marie Novosadová Šípková, DiS.

Anotace

V originále

Aims Some types of monoclonal gammopathies are typified by a very limited availability of aberrant cells. Modern research use high throughput technologies and an integrated approach for detailed characterisation of abnormal cells. This strategy requires relatively high amounts of starting material which cannot be obtained from every diagnosis without causing inconvenience to the patient. The aim of this methodological paper is to reflect our long experience with laboratory work and describe the best protocols for sample collection, sorting and further preprocessing in terms of the available number of cells and intended downstream application in monoclonal gammopathies research. Potential pitfalls are also discussed. Methods Comparison and optimisation of freezing and sorting protocols for plasma cells in monoclonal gammopathies, followed by testing of various nucleic acid isolation and amplification techniques to establish a guideline for sample processing in haemato-oncology research. Results We show the average numbers of aberrant cells that can be obtained from various monoclonal gammopathies (monoclonal gammopathy of undetermined significance/light chain amyloidosis/multiple myeloma (MM)/MM circulating plasma cells/minimal residual disease MM-10 123/22 846/305 501/68 641/4000 aberrant plasma cells of 48/30/10/16/37x106 bone marrow mononuclear cells) and the expected yield of nucleic acids provided from multiple isolation kits (DNA/RNA yield from 1 to 200x10(3) cells was 2.14-427/0.12-123 ng). Conclusions Tested kits for parallel isolation deliver outputs comparable with kits specialised for just one type of molecule. We also present our positive experience with the whole genome amplification method, which can serve as a very powerful tool to gain complex information from a very small cell population.