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Multiple Myeloma is a typical example of a neoplasm that shows significant differences in incidence, age of onset, type, and frequency of genetic alterations between patients of African and European ancestry. This perspective explores the hypothesis that both genetic polymorphisms and spontaneous somatic mutations in the TP53 tumor suppressor gene are determinants of these differences. In the US, the rates of occurrence of MM are at least twice as high in African Americans (AA) as in Caucasian Americans (CA). Strikingly, somatic TP53 mutations occur in large excess (at least 4-6-fold) in CA versus AA. On the other hand, TP53 contains polymorphisms specifying amino-acid differences that are under natural selection by the latitude of a population and have evolved during the migrations of humans over several hundred thousand years. The p53 protein plays important roles in DNA strand break repair and, therefore, in the surveillance of aberrant DNA recombination, leading to the B-cell translocations that are causal in the pathogenesis of MM. We posit that polymorphisms in one region of the TP53 gene (introns 2 and 3, and the proline-rich domain) specify a concentration of the p53 protein with a higher capacity to repress translocations in CA than AA patients. This, in turn, results in a higher risk of acquiring inactivating, somatic mutations in a different region of the TP53 gene (DNA binding domain) in CA than in AA patients. Such a mechanism, by which the polymorphic status of a gene influencing its own "spontaneous" mutation frequency, may provide a genetic basis to address ethnicity-related differences in the incidence and phenotypes of many different forms of cancer.
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http://dx.doi.org/10.1038/s41418-023-01236-8 | DOI Listing |
J Clin Oncol
September 2025
Program on Regulation, Therapeutics and Law, Brigham and Women's Hospital, Harvard Medical School, Boston, MA.
J Appl Lab Med
September 2025
Department of Pathology, Moffitt Cancer Center, Tampa, FL, United States.
Background: Clonal plasma cell disorders, such as multiple myeloma (MM), often cause excretion of monoclonal free light chains (MFLC) into urine that serve as diagnostic markers and can cause renal injury.
Content: Measures of urinary protein excretion (PEx) and MFLC excretion are parameters for diagnosing and managing plasma cell disorders, although the roles are evolving as new diagnostic tools are applied. Current guidelines dictate measuring PEx and MFLC excretion using 24-hour urine specimens, which have multiple shortcomings that compromise the quality of testing, delay results, and are burdensome for patients.
J Oncol Pharm Pract
September 2025
Hematology/Oncology, Scripps Clinic, La Jolla, USA.
IntroductionDaratumumab is a therapeutic cornerstone of the management of multiple myeloma, exerting its anti-myeloma activity through targeting of the cell surface glycoprotein CD38 on plasma cells. While originally given intravenously, the subcutaneous formulation, daratumumab hyaluronidase injection (Dara SC), has been associated with non-inferior efficacy and lower infusion-related reaction rates (IRRs) in the treatment of multiple myeloma and light chain amyloidosis. A noted benefit of Dara SC is a short administration time; however, the optimal observation time post injection to ensure patient safety is unclear from the drug labeling.
View Article and Find Full Text PDFEur J Haematol
September 2025
Department of Hematology-Oncology, Texas Tech University Health Sciences Center, Lubbock, Texas, USA.
B-cell maturation antigen (BCMA)-directed chimeric antigen receptor (CAR) T-cell therapies have revolutionized the approach and management of relapsed/refractory multiple myeloma (RRMM), and as of 2025, idecabtagene vicleucel (ide-cel) and ciltacabtagene autoleucel (cilta-cel) are the only BCMA-targeted CAR T-cell therapies approved by the FDA. Exceptional responses were demonstrated for heavily pretreated patients in the KarMMa-1 trial, reporting a 73% overall response rate (ORR) and 98% in the CARTITUDE-1 trial. Furthermore, both therapies show a significant improvement in progression-free survival (PFS) compared to standard regimens when administered in earlier lines.
View Article and Find Full Text PDFBlood Cell Ther
August 2025
Department of Clinical Hematology and Medical Oncology, Postgraduate Institute Of Medical Education And Research (PGIMER), Chandigarh, India.
Background: Bone marrow (BM) Measurable Residual Disease (MRD) assessments underestimate disease burden in multiple myeloma, as focal lesions can exist outside the marrow. Functional imaging, like positron emission tomography-computed tomography (PET-CT), offers valuable insights into residual disease beyond the marrow. Combining marrow flow cytometry (FCM) with PET-CT for a composite MRD (cMRD) assessment before and after autologous stem cell transplant (ASCT) is expected to provide prognostic information, particularly in settings where patients receive extended duration of anti-myeloma therapy prior to ASCT.
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