Introduction: Brentuximab vedotin (BV) is a monoclonal antibody that targets CD30 antigen. It is indicated for the treatment of CD30 + lymphomas and classical Hodgkin lymphoma (HL), including advanced (stage III-IV) untreated disease, relapsed/refractory disease, and consolidation after autologous hematopoietic stem cell transplantation. In clinical trials the incidence of a hypersensitivity reaction is 1.2%.
Cases Report: We present 3 cases of patients with refractory HL and anaphylaxis to the administration of BV ( Table 1). Symptoms are analyzed using a grading system described by Brown (2004) and a desensitization protocol was performed with a total dose of 100 mg of BV in 4 solution bags with an initial concentration of 1:1000 of total dose for cases of severe anaphylaxis, and desensitization of 3 solution bags with baseline concentration of 1: 100 for cases of moderate anaphylaxis.
Management & Outcome: Intradermal skin tests were positive. Before desensitization, premedication with methylprednisolone and chlorphenamine was administered, as well as fluid therapy with 0.9% physiological solution at 100 cc/hour at induction stage, 250 cc/hour at maintenance stage, and increased to 500 cc/hour in case of hypersensitivity reaction.
Discussion: Drug desensitization in 12 or 16 steps allows tolerable administration of brentuximab vedotin after moderate to severe anaphylaxis. The favorable response to treatment of these patients may indicate that desensitization is a viable strategy for patients with relapsed or refractory HL.
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http://dx.doi.org/10.1177/10781552221074965 | DOI Listing |
Can J Hosp Pharm
January 2025
, MD, FRCPC, is with the Department of Hematology/Oncology, William Osler Health System, Brampton, Ontario.
Diagn Pathol
January 2025
Laboratoire Hospitalier Universitaire de Bruxelles - Universitair Laboratorium Brussel, Université Libre de Bruxelles LHUB-ULB, Brussels, Belgium.
Background: Synchronous malignant histiocytoses are rare conditions that occur concurrently with another hematologic neoplasm. Most reported cases are associated with B-cell lymphoproliferative disorders, while associations with T-cell hemopathies are less common. These two diseases may share mutations and/or cytogenetic anomalies, which can lead to malignant proliferations.
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January 2025
Department of Medical Biotechnology, College of Biotechnology, Misr University for Science and Technology, P. O. Box 77, Giza, Egypt.
This study was designed to assess the effect of brentuximab vedotin on several breast cancer cell lines in terms of promoting apoptosis and managing cancer progression. Additionally, the study investigated the potential of repurposing this drug for new therapeutic reasons, beyond its original indications. The study evaluates the cytotoxic effects of Brentuximab vedotin across five cell lines: normal human skin fibroblasts (HSF), three breast cancer cell lines (MCF-7, MDA-MB-231, and T-47D), and histiocytic lymphoma (U-937).
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January 2025
Department of Pathology, The First Affiliated Hospital of Nanjing Medical University, Nanjing, 210029, People's Republic of China.
Brentuximab vedotin (BV) is an antibody-drug conjugate that combines the CD30 monoclonal antibody with the microtubule-disrupting agent, monomethyl auristatin E, which induces apoptosis in the tumor cell upon its release from the conjugate. The safety and efficacy of BV have been assessed in several studies in patients with T- and B-cell lymphomas. This article reviews the currently available data on the distribution of CD30 expression in T- and B-cell lymphomas, as well as the various levels of CD30 positivity cutoff used in the literature.
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February 2025
Department of Chemistry and Biochemistry, Baylor University, One Bear Place, No. 97348, Waco, Texas 76798-7348, United States.
Antibody-drug conjugates (ADCs) have advanced as a mainstay among the most promising cancer therapeutics, offering enhanced antigen targeting and encompassing wide diversity in their linker and payload components. Small-molecule inhibitors of tubulin polymerization have found success as payloads in FDA approved ADCs and represent further promise in next-generation, pre-clinical and developmental ADCs. Unique dual-mechanism payloads (previously designed and synthesized in our laboratories) function as both potent antiproliferative agents and promising vascular disrupting agents capable of imparting selective and effective damage to tumor-associated microvessels.
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