Dipartimento di Biotecnologie Molecolari e Scienze per la Salute
Torino, TO, 10126, Italy
NCT Number: NCT03848676
A total of 40 Multiple Myeloma (MM) patients at clinical relapse who progressed during Proteasome Inhibitors (PIs) or Immunomodulating Drugs (IMiDs)-based therapies and who are assigned to antiCD38-based salvage treatments, will be enrolled. We will collect bone marrow (BM) and peripheral blood (PB) samples from patients at specific timepoints:
* baseline (BM, PB and buccal swab) * every 3 month (PB) * achievement of response (≥ Very Good Partial Response (VGPR)) (BM and PB) * relapse or refractory status to antiCD38-based treatments (BM and PB) Samples will be processed and stored in the "Hematological Laboratory" located in the University of Turin (Italy) for various proposed analyses: at specific time-points CD138+ (Plasma Cells-PCs) and marker CD138/19+ (B cells) will be immunomagnetically enriched from the BM mononuclear cells and frozen as viable cells in dimethyl sulfoxide (DMSO); PB mononuclear cells (PBMCs) will be isolated from whole blood by density-gradient centrifugation, and frozen as above; plasma fraction from PB and BM will be obtained by centrifugation and stored frozen; a buccal swab will be obtained at the time of enrollment as a source of control germline DNA and stored frozen.
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Notify Me18 year and older
All sexes
Observational
Torino, TO, 10126, Italy
Aim 1: Evaluation of cell-intrinsic mechanisms on BM.
1.1 WGS: libraries will be prepared with TruSeq™(Kit Illumina) DNA Polymerase Chain Reaction (PCR)-Free Library Preparation Kit (Illumina, San Diego, CA) from 500ng of genomic DNA, aiming for an average target insert of 300bp. Sequencing will be performed on a 150bp-paired end protocol, at a target depth of 40x for tumor samples and 30x for normal samples.
1.2 WES: libraries will be prepared with SureSelectXT Human All Exon V6 (Agilent technologies int., Santa Clara, CA) from 100ng of genomic DNA, aiming for an average target insert of 300bp. Sequencing will be performed on a 150bp-paired end protocol, aiming for a target depth of 200x for tumor samples and 100x for normal samples.
1.3 Data analysis: next generation sequencing scoring system output format files (*.FASTQ files) will be aligned to the reference genome using Burrows-Wheeler Alignment Tool (BWAmem), and deduplicated aligned Binary Alignment Map (BAM) files will be analyzed using the following published tools available at the Wellcome Trust Sanger Institute (WTSI):
The clonal composition of the sample and the genomic evolution of myeloma over time will be inferred from the adjusted cancer cell fraction of the variants identified, clustered and analyzed using a hierarchical bayesian Dirichlet process.
The mutational processes operative at various phases of MM will be analyzed using a Non-Negative Matrix Factorization (NNMF) approach to extract mutational signatures from the array of substitutions in their 5' and 3' context.
The possible driver mutation role of all extracted missense mutation will be evaluated by the recently published dN/dS algorithm.
Aim 2: Evaluation of cell-extrinsic mechanism on BM and PB.
Aim 3: After comprehensively characterizing the genomic, transcriptomic and immunophenotypic features of CD138+ cells, and having a clear picture of the effector/suppressive immune population in MM, we will then correlate these features with clinical data. In detail, we will create a database including the following columns:
Although the relatively small size of the cohort will limit statistical power and the possibility to perform subgroup analysis, this attempt to identify biomarkers could improve the clinical management of the patient, by prioritizing the vast array of salvage treatments in MM and thus decreasing costs.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
There are only collections of the samples.
Time frame: 5 years
The patients' response to new drugs administration will be evaluated identifying genomic aberrations (e.g. TRAF3 deletion/mutation and Cereblon mutation) or impaired cellular surface molecules expression (eg CD38, CD55, CD59 expression).
Time frame: 5 years
The analysis will include T-cells population (eg. CD38+, CD4+, CD8+, Tregs cells), regulatory and suppressive immune populations (MDSCs) and cytokines (eg Activin-A, IL-3, IL-6, RANKL, OPG, MIP-1α, MIP-3α and DKK-1) characterization.
Time frame: 5 years
Response measured through cytofluorimetric analysis. Results will be integrated by statistical models (e.g. univariate, multivariate analysis) and then correlated to mutational results and patients' available clinical data in order to predict outcome.
Time frame: 5 years
Response measured through mutational analysis. Results will be integrated by statistical models (e.g. univariate, multivariate analysis) and then correlated to cytofluorimetric results and patients' available clinical data in order to predict outcome.
University of Turin, Italy
Other
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