Previous studies have shown that metabolites play an important role in phenotypic regulation. However, the causal relationship between metabolites and multiple myeloma has not been adequately investigated. Here, we attempt to explore the causal effects of genetically determined blood metabolites on multiple myeloma. The large-scale public blood metabolites and multiple myeloma datasets from independently published genome-wide association studies (GWAS) were used to explore the causal relationship between each genetically determined blood metabolite and multiple myeloma through inverse variance weighted (IVW), weighted median, MR-Egger and mode-based estimation methods. Sensitivity tests were performed to evaluate the stability and reliability of the results by MR-Egger regression and leave-one-out methods. Metabolic pathway analysis was further explored using filtered data. Statistical analyses were all performed in R. Among 452 metabolites, ten known metabolites and three unknown metabolites had significant causal relationship with multiple myeloma (P < 0.05). Four known metabolites, 3-methyl-2-oxovalenate, oxidized bilirubin, isovalerylcarnitine and glutamine carnitine, reached statistical significance in IVW models. Metabolic pathways analysis identified four significant pathways. The occurrence of multiple myeloma may have a causal relationship with these four metabolites, and there are four metabolic pathways that are also related to the occurrence of multiple myeloma. This can provide new ideas for exploring early screening and treatment of multiple myeloma.
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http://dx.doi.org/10.1038/s41598-023-45801-0 | DOI Listing |
BMJ Open Qual
January 2025
UCL Cancer Institute, University College London, London, UK
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January 2025
In the PA program at the University of Florida in Gainesville, Fla., Elizabeth Brownlee is director of didactic education and Melissa Turley is interim program director and a clinical assistant professor. Heather Nations practices in obstetrics and gynecology at UF Health Physicians in Gainesville. The authors have disclosed no potential conflicts of interest, financial or otherwise.
Chimeric antigen receptor (CAR) T-cell therapy has led to significant advances in the treatment of blood cancers such as leukemia, lymphoma, and multiple myeloma, and now shows promise for solid tumors. This type of immunotherapy can achieve high response rates in patients with hematologic malignancies, but carries serious adverse reactions, including cytokine release syndrome and immune-effector cell-associated neurotoxicity syndrome. This article describes CAR T-cell therapy, guidance for primary care providers caring for patients undergoing therapy, and the ongoing need for research to enhance CAR T-cell therapy's safety and effectiveness.
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Servicio de Medicina física y Rehabilitación, Hospital del Salvador, Santiago, Chile.
Autologous Stem-Cell Transplantation (ASTC) has proven efficacy in several hematological malignancies. The greatest antineoplastic effect achieved with intensified chemotherapy is associated with severe myelotoxicity. The infusion of autologous hematopoietic precursors and transfusion support during the period of aplasia reduces the time and depth of cytopenias, decreasing the risk of bleeding, anemia and life-threatening infections.
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January 2025
Service d'hématologie, Centre Hospitalo-Universitaire, Nantes, France.
Most transplant-ineligible patients present with multiple myeloma (MM) refractory to lenalidomide and/or anti-CD38 monoclonal antibody at first relapse and represent a difficult-to-treat population. The Intergroupe Francophone du Myélome phase 2 study iberdomide, ixazomib and dexamethasone (I2D) evaluated the oral triplet iberdomide, ixazomib and dexamethasone in MM patients aged ≥70 years at first relapse (NCT04998786). Seventy patients were enrolled to receive iberdomide (1.
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January 2025
Department of Hematology, The Second Affiliated Hospital, School of Medicine, The Chinese University of Hong Kong, Shenzhen & Longgang District People's Hospital of Shenzhen, Shenzhen, 518172, China.
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