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1. Monitoring Plasma Cells and Clonal Emergence through Genome Sequencing of Circulating Tumor Cells for Minimally Invasive Molecular Characterization of Multiple Myeloma

2. Single-Cell RNA Sequencing of Rare Circulating Tumor Cells in Precursor Myeloma Patients Reveals Molecular Underpinnings of Tumor Cell Circulation

3. High-Throughput Plasma Proteomic Profiling to Identify Candidate High-Risk Disease Biomarkers in Precursor Multiple Myeloma Patients

4. Single-Cell RNA-Sequencing of 245 Tumor Samples from Patients with MGUS and Smoldering Multiple Myeloma Reveals Novel Insights into Malignant Plasma Cell Biology

5. Single-Cell RNA-Sequencing of 370 Bone Marrow and Peripheral Blood Immune Cell Samples from Patients with MGUS and Smoldering Multiple Myeloma Reveal Significant Immune Dysregulation at the MGUS Stage, and Novel Interactions between Tumor and Immune Cells

6. Dysregulated Humoral and Cellular Response to Sars-Cov-2 Vaccination in Patients with MGUS and SMM

8. Reconstructing the Genomic History of Multiple Myeloma Precursor Disease: Novel Insights and Clinical Applicability

9. Single-Cell RNA-Sequencing Identifies Immune Biomarkers of Progression in Patients with High-Risk Smoldering Multiple Myeloma Treated with Immunotherapy

10. Persistence of Monoclonal Gammopathies in Serial Samples from a US Population-Based Screening Study

11. Non-Invasive Liquid Biopsy to Quantify and Molecularly Characterize Circulating Multiple Myeloma Cells in the Assessment of Precursor Disease Pathology

12. High Prevalence of Monoclonal Gammopathy in a Population at Risk: The First Results of the Promise Study

13. A Next Generation Liquid Biopsy Approach for Multiple Myeloma

15. Single-Cell RNA Sequencing Reveals Hypo-Responsiveness of T and NK Cells to Interferon Stimulation As an Immune Hallmark in Asymptomatic Waldenstrom's Macroglobulinemia

16. Genome Sequencing to Discover Drivers of Clonal Expansion in Smoldering Multiple Myeloma

17. Single-Cell RNA Sequencing of Circulating Tumor Cells in Precursor Myeloma Patients Reveals Mechanisms of Disease Dissemination

18. High-Throughput Plasma Proteomics to Define the Precursor Multiple Myeloma Proteome and Identify Candidate High-Risk Disease Biomarkers of Progression

19. Large-Scale Characterization and Functional Assessment of Adaptive Immunity in Patients with MGUS and SMM Reveals Significant Defects

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