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1.
JCI Insight ; 9(10)2024 May 07.
Article in English | MEDLINE | ID: mdl-38713510

ABSTRACT

Multiple myeloma is a largely incurable and life-threatening malignancy of antibody-secreting plasma cells. An effective and widely available animal model that recapitulates human myeloma and related plasma cell disorders is lacking. We show that busulfan-conditioned human IL-6-transgenic (hIL-6-transgenic) NSG (NSG+hIL6) mice reliably support the engraftment of malignant and premalignant human plasma cells, including from patients diagnosed with monoclonal gammopathy of undetermined significance, pre- and postrelapse myeloma, plasma cell leukemia, and amyloid light chain amyloidosis. Consistent with human disease, NSG+hIL6 mice engrafted with patient-derived myeloma cells developed serum M spikes, and a majority developed anemia, hypercalcemia, and/or bone lesions. Single-cell RNA sequencing showed nonmalignant and malignant cell engraftment, the latter expressing a wide array of mRNAs associated with myeloma cell survival and proliferation. Myeloma-engrafted mice given CAR T cells targeting plasma cells or bortezomib experienced reduced tumor burden. Our results establish NSG+hIL6 mice as an effective patient-derived xenograft model for study and preclinical drug development of multiple myeloma and related plasma cell disorders.


Subject(s)
Disease Models, Animal , Interleukin-6 , Multiple Myeloma , Animals , Multiple Myeloma/immunology , Multiple Myeloma/pathology , Humans , Mice , Interleukin-6/metabolism , Mice, Transgenic , Bortezomib/pharmacology , Bortezomib/therapeutic use , Male , Female , Plasma Cells/immunology , Monoclonal Gammopathy of Undetermined Significance/immunology , Monoclonal Gammopathy of Undetermined Significance/pathology
2.
bioRxiv ; 2024 Jan 24.
Article in English | MEDLINE | ID: mdl-38328086

ABSTRACT

Multiple myeloma is a largely incurable and life-threatening malignancy of antibody-secreting plasma cells. An effective and widely available animal model that recapitulates human myeloma and related plasma cell disorders is lacking. We show that busulfan-conditioned hIL-6 transgenic NSG mice (NSG+hIL6) reliably support the engraftment of malignant and pre-malignant human plasma cells including from patients diagnosed with monoclonal gammopathy of undetermined significance, pre- and post-relapse myeloma, plasma cell leukemia, and AL amyloidosis. Consistent with human disease, NSG+hIL6 mice engrafted with patient-derived myeloma cells, developed serum M spikes, and a majority developed anemia, hypercalcemia, and/or bone lesions. Single cell RNA sequencing showed non-malignant and malignant cell engraftment, the latter expressing a wide array of mRNAs associated with myeloma cell survival and proliferation. Myeloma engrafted mice given CAR T-cells targeting plasma cells or bortezomib experienced reduced tumor burden. Our results establish NSG+hIL6 mice as an effective patient derived xenograft model for study and preclinical drug development of multiple myeloma and related plasma cell disorders.

3.
Nat Med ; 30(4): 984-989, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38266761

ABSTRACT

We report a T cell lymphoma (TCL) occurring 3 months after anti-CD19 chimeric antigen receptor (CAR) T cell immunotherapy for non-Hodgkin B cell lymphoma. The TCL was diagnosed from a thoracic lymph node upon surgery for lung cancer. The TCL exhibited CD8+ cytotoxic phenotype and a JAK3 variant, while the CAR transgene was very low. The T cell clone was identified at low levels in the blood before CAR T infusion and in lung cancer. To assess the overall risk of secondary primary malignancy after commercial CAR T (CD19, BCMA), we analyzed 449 patients treated at the University of Pennsylvania. At a median follow-up of 10.3 months, 16 patients (3.6%) had a secondary primary malignancy. The median onset time was 26.4 and 9.7 months for solid and hematological malignancies, respectively. The projected 5-year cumulative incidence is 15.2% for solid and 2.3% for hematological malignancies. Overall, one case of TCL was observed, suggesting a low risk of TCL after CAR T.


Subject(s)
Hematologic Neoplasms , Lung Neoplasms , Lymphoma, B-Cell , Lymphoma, T-Cell , Receptors, Chimeric Antigen , Humans , Immunotherapy, Adoptive/adverse effects , Receptors, Chimeric Antigen/genetics , Receptors, Antigen, T-Cell/genetics , Antigens, CD19
4.
Hematol Oncol Clin North Am ; 38(2): 383-406, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38158242

ABSTRACT

Chimeric antigen receptor T cells (CARTs) represent another powerful way to leverage the immune system to fight malignancy. Indeed, in multiple myeloma, the high response rate and duration of response to B cell maturation antigen-targeted therapies in later lines of disease has led to 2 Food and Drug Administration (FDA) drug approvals and opened the door to the development of this drug class. This review aims to provide an update on the 2 FDA-approved products, summarize the data for the most promising next-generation multiple myeloma CARTs, and outline current challenges in the field and potential solutions.


Subject(s)
Multiple Myeloma , Receptors, Chimeric Antigen , Humans , Multiple Myeloma/therapy , Multiple Myeloma/pathology , Receptors, Chimeric Antigen/genetics , Immunotherapy, Adoptive , B-Cell Maturation Antigen , T-Lymphocytes
6.
Eur J Haematol ; 110(3): 322-329, 2023 Mar.
Article in English | MEDLINE | ID: mdl-36465014

ABSTRACT

Progressive multifocal leukoencephalopathy (PML) is a rare and often fatal demyelinating disease of the central nervous system caused by reactivation of the JC virus in the context of immune suppression such as HIV, malignancy, and certain immunomodulatory medications. PML has been reported only rarely in multiple myeloma patients, and its presenting features and natural history in this population are not well known. We describe six cases of PML among multiple myeloma patients treated at our institution between 2013 and 2022, including two that developed on or shortly after treatment with recently developed BCMA-directed immunotherapies.


Subject(s)
JC Virus , Leukoencephalopathy, Progressive Multifocal , Multiple Myeloma , Humans , Leukoencephalopathy, Progressive Multifocal/diagnosis , Leukoencephalopathy, Progressive Multifocal/etiology , Multiple Myeloma/complications , Multiple Myeloma/diagnosis , Multiple Myeloma/drug therapy , JC Virus/physiology , Central Nervous System/pathology , Immunosuppression Therapy/adverse effects
7.
Blood Cancer Discov ; 4(2): 118-133, 2023 03 01.
Article in English | MEDLINE | ID: mdl-36413381

ABSTRACT

We conducted a phase I clinical trial of anti-BCMA chimeric antigen receptor T cells (CART-BCMA) with or without anti-CD19 CAR T cells (huCART19) in multiple myeloma (MM) patients responding to third- or later-line therapy (phase A, N = 10) or high-risk patients responding to first-line therapy (phase B, N = 20), followed by early lenalidomide or pomalidomide maintenance. We observed no high-grade cytokine release syndrome (CRS) and only one instance of low-grade neurologic toxicity. Among 15 subjects with measurable disease, 10 exhibited partial response (PR) or better; among 26 subjects responding to prior therapy, 9 improved their response category and 4 converted to minimal residual disease (MRD)-negative complete response/stringent complete response. Early maintenance therapy was safe, feasible, and coincided in some patients with CAR T-cell reexpansion and late-onset, durable clinical response. Outcomes with CART-BCMA + huCART19 were similar to CART-BCMA alone. Collectively, our results demonstrate favorable safety, pharmacokinetics, and antimyeloma activity of dual-target CAR T-cell therapy in early lines of MM treatment. SIGNIFICANCE: CAR T cells in early lines of MM therapy could be safer and more effective than in the advanced setting, where prior studies have focused. We evaluated the safety, pharmacokinetics, and efficacy of CAR T cells in patients with low disease burden, responding to current therapy, combined with standard maintenance therapy. This article is highlighted in the In This Issue feature, p. 101.


Subject(s)
Multiple Myeloma , Receptors, Chimeric Antigen , Humans , Multiple Myeloma/therapy , Receptors, Chimeric Antigen/therapeutic use , Immunotherapy, Adoptive/adverse effects , Immunotherapy, Adoptive/methods , Lenalidomide/therapeutic use , Antigens, CD19/therapeutic use , T-Lymphocytes
8.
Am J Hematol ; 94(S1): S28-S33, 2019 05.
Article in English | MEDLINE | ID: mdl-30730071

ABSTRACT

Multiple myeloma (MM) is a malignant plasma cell disorder that remains incurable for most patients despite significant improvements achieved with modern therapy. Tumor evasion is a key process in the pathogenesis of MM and a compromised immune system is associated with more aggressive forms of the disease. In contrast, the emergence of myeloma-specific immune responses after both autologous and allogeneic stem cell transplantation is associated with better prognosis. Adoptive T cell therapies may improve specific anti-myeloma immunity resulting in long-lasting remissions. CAR T cell therapies for MM are at an early stage of clinical development. To date, anti-BCMA CAR T cells have shown the greatest results in early-phase clinical trials. Toxicities have included cytokine release syndrome (CRS) and neurotoxicity. Current areas of research in CAR T cell therapies include the use of gene-editing to enhance their effectiveness and safety, the integration of CAR T cells with other therapies (immunomodulatory drugs, checkpoint inhibitors) and CAR T cells to target multiple antigens.


Subject(s)
Immunotherapy, Adoptive/methods , Multiple Myeloma/therapy , Receptors, Chimeric Antigen/therapeutic use , Combined Modality Therapy , Humans , Immunotherapy, Adoptive/adverse effects , Immunotherapy, Adoptive/trends
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