scholarly journals Monoclonal Antibodies to Treat Multiple Myeloma: A Dream Come True

2020 ◽  
Vol 21 (21) ◽  
pp. 8192
Author(s):  
Mattia D’Agostino ◽  
Salvatore Innorcia ◽  
Mario Boccadoro ◽  
Sara Bringhen

Immunotherapy is increasingly used in the treatment of multiple myeloma (MM). Monoclonal antibodies (mAbs) are safe and effective ways to elicit immunotherapeutic responses. In 2015, daratumumab has become the first mAb approved by the Food and Drug Administration for clinical use in MM and, in the last 5 years, a lot of clinical and preclinical research has been done to optimize the use of this drug class. Currently, mAbs have already become part of standard-of-care combinations for the treatment of relapsed/refractory MM and very soon they will also be used in the frontline setting. The success of simple mAbs (‘naked mAbs’) prompted the development of new types of molecules. Antibody–drug conjugates (ADCs) are tumor-targeting mAbs that release a cytotoxic payload into the tumor cells upon antigen binding in order to destroy them. Bispecific antibodies (BiAbs) are mAbs simultaneously targeting a tumor-associated antigen and an immune cell-associated antigen in order to redirect the immune cell cytotoxicity against the tumor cell. These different constructs produced solid preclinical data and promising clinical data in phase I/II trials. The aim of this review article is to summarize all the recent developments in the field, including data on naked mAbs, ADCs and BiAbs.

2018 ◽  
Vol 19 (12) ◽  
pp. 3924 ◽  
Author(s):  
Hanley Abramson

The past two decades have seen a revolution in multiple myeloma (MM) therapy with the introduction of several small molecules, mostly orally effective, whose mechanisms are based on proteasome inhibition, histone deacetylase (HDAC) blockade, and immunomodulation. Immunotherapeutic approaches to MM treatment using monoclonal antibodies (mAbs), while long in development, began to reap success with the identification of CD38 and SLAMF7 as suitable targets for development, culminating in the 2015 Food and Drug Administration (FDA) approval of daratumumab and elotuzumab, respectively. This review highlights additional mAbs now in the developmental pipeline. Isatuximab, another anti-CD38 mAb, currently is under study in four phase III trials and may offer certain advantages over daratumumab. Several antibody-drug conjugates (ADCs) in the early stages of development are described, including JNJ-63723283, which has attained FDA breakthrough status for MM. Other mAbs described in this review include denosumab, recently approved for myeloma-associated bone loss, and checkpoint inhibitors, although the future status of the latter combined with immunomodulators has been clouded by unacceptably high death rates that caused the FDA to issue clinical holds on several of these trials. Also highlighted are the therapies based on the B Cell Maturation Antigen (BCMA), another very promising target for anti-myeloma development.


Cancers ◽  
2019 ◽  
Vol 12 (1) ◽  
pp. 15 ◽  
Author(s):  
Francesca Bonello ◽  
Roberto Mina ◽  
Mario Boccadoro ◽  
Francesca Gay

Immunotherapy is the latest innovation for the treatment of multiple myeloma (MM). Monoclonal antibodies (mAbs) entered the clinical practice and are under evaluation in clinical trials. MAbs can target highly selective and specific antigens on the cell surface of MM cells causing cell death (CD38 and CS1), convey specific cytotoxic drugs (antibody-drug conjugates), remove the breaks of the immune system (programmed death 1 (PD-1) and PD-ligand 1/2 (L1/L2) axis), or boost it against myeloma cells (bi-specific mAbs and T cell engagers). Two mAbs have been approved for the treatment of MM: the anti-CD38 daratumumab for newly-diagnosed and relapsed/refractory patients and the anti-CS1 elotuzumab in the relapse setting. These compounds are under investigation in clinical trials to explore their synergy with other anti-MM regimens, both in the front-line and relapse settings. Other antibodies targeting various antigens are under evaluation. B cell maturation antigens (BCMAs), selectively expressed on plasma cells, emerged as a promising target and several compounds targeting it have been developed. Encouraging results have been reported with antibody drug conjugates (e.g., GSK2857916) and bispecific T cell engagers (BiTEs®), including AMG420, which re-directs T cell-mediated cytotoxicity against MM cells. Here, we present an overview on mAbs currently approved for the treatment of MM and promising compounds under investigation.


Blood ◽  
2018 ◽  
Vol 132 (Supplement 1) ◽  
pp. 5656-5656
Author(s):  
Muhammad Asad Fraz ◽  
Muhammad Junaid Tariq ◽  
Muhammad Usman ◽  
Nadia Carenina Nunes Cavalcante Parr ◽  
Awais Ijaz ◽  
...  

Abstract Introduction Immunotherapy using monoclonal antibodies (mAbs) have been gaining significance in the treatment of multiple myeloma (MM). These include naked antibodies, checkpoint inhibitors (CPIs), novel bispecific mAbs targeting two epitopes and antibody-drug conjugates (ADCs) having a mAb conjugated to a cytotoxic drug. This review aims to summarize phase I and I/II clinical trials using mABs for the treatment of MM. Methods A comprehensive literature search using data from PubMed, Embase, AdisInsight and Clinicaltrials.gov was performed for identification of early phase (I and I/II) trials of mAbs in MM treatment (January 2008 to December 2017). Studies involving mAbs including targeting antibodies, ADCs, CPIs and bispecific mAbs were included, without considering the geo-location, age, sex or specific eligibility criteria. Drugs already approved by FDA were excluded. Results Total of 2537 phase I and phase I/II studies were identified. After screening by two reviewers and categorization by their mechanism of action, 74 clinical trials (CTs) that involved mAbs as monotherapy or in combination with other chemotherapeutic drugs for the treatment of newly diagnosed MM (NDMM) and relapsed/refractory MM (RRMM). 41 CTs are active, completed or discontinued (Table 1) and 33 CTs are recruiting, approved for recruitment or planned. Most explored mechanism of action in these trials was mAb therapy directed against CD38, IL-6, huCD40, PD-L1 and PD-1. Isatuximab (Anti-CD38) has shown objective response rate (ORR) of >50% in combination with lenalidomide (R) or pomalidomide (P) plus dexamethasone (d) in ongoing phase I trials NCT01749969 (n=57) and NCT02283775 (n=89) respectively. According to Vij et al. (2016) and Mikhael et al. (2018), 54% ORR (n=31) and 62% ORR (n=28) was shown by combination of isatuximab with Rd and Pd in 57 and 45 evaluable RRMM patients, respectively. In Vij et al. (2016) study, stringent complete response (sCR) in 2 (3%) patients, very good partial response (VGPR) in 13 (23%) and partial response (PR) in 16 (28%) patients was observed. In Mikhael et al. (2018) study, sCR in 1 (2%) patient, CR in 1 (2%), VGPR in 10 (21%) and PR in 16 (34%) patients was observed. In comparison, Martin et al. (2014) mentioned ORR of only 24% with isatuximab monotherapy in 34 RRMM patients. Grade (G) ≥3 pneumonia (n=4) was the most common high-grade adverse events (AEs) being reported (Table 2). Siltuximab (Anti-IL-6) has shown clinical efficacy in combination with bortezomib (V) + d and RVd in phase I and I/II CTs. Shah et al. (2016) and Suzuki et al. (2015) found ORR to be 90.9% and 67% in 11 (NDMM) and 9 (RRMM) patients when siltuximab was given combined with RVd and Vd, respectively. Clinical benefit response (CBR) i.e. ≥ minimal response (MR) was 100% with siltuximab + RVd in NDMM patients. In comparison, siltuximab monotherapy in 13 RRMM patients yielded an ORR of 15% (2 CR) as reported by Kurzrock et al. (2012). G≥3 neutropenia (n=9), G≥3 thrombocytopenia (n=6) and G≥3 lymphopenia (n=8) were most common reported high-grade AEs. Checkpoint inhibitors including pembrolizumab (anti-PD-1) and pidilizumab (anti-PD-L1) are being investigated in RRMM treatment. According to Otero et al. (2017) and Ribrag et al. (2017), 50% ORR was obtained with pembrolizumab combined with Rd compared to 0% with monotherapy, respectively. However, combination therapy was associated with G≥3 neutropenia (n=17), thrombocytopenia (n=9) and anemia (n=6) while no high-grade AEs were observed with monotherapy. Antibody-Drug conjugates including lorvotuzumab mertansine and indatuximab ravtansine have been investigated in CTs for MM treatment. Lorvotuzumab mertansine has shown clinical efficacy in combination with Rd in a phase I trial (NCT00991562). Berdeja et al. (2012) reported an ORR of 59% (1 sCR, 1 CR, 8 VGPR, 9 PR) in 32 RRMM patients. In a phase I/II trial (NCT01638936) of indatuximab ravtansine combined with either Rd or Pd, Kelly et al. (2016) showed ORR of 77% with Rd (n=43) including at least 1 CR and 4 VGPR and 79% with Pd (n=14) including 4 VGPR in total 57 RRMM patients. Conclusion Combination regimens including monoclonal antibodies, CPIs and ADCs have shown clinically significant response in RRMM and NDMM patients. The mAbs caused hematological and nonhematological AEs like cytopenias and infections which needs to be monitored closely. Disclosures No relevant conflicts of interest to declare.


Author(s):  
Hanley Abramson

The past two decades have seen a revolution in multiple myeloma (MM) therapy with the introduction of several small molecules, mostly orally effective, whose mechanisms are based on proteasome inhibition, histone deacetylase (HDAC) blockade, and immunomodulation. Immunotherapeutic approaches to MM treatment using monoclonal antibodies (mAbs), while long in development, began to reap success with the identification of CD38 and SLAMF7 as suitable targets for development, culminating in the 2015 FDA approval of daratumumab and elotuzumab, respectively. This review highlights additional mAbs now in the developmental pipeline. Isatuximab, another anti-CD38 mAb, currently is under study in four phase III trials and may offer certain advantages over daratumumab. Several antibody-drug conjugates (ADCs) in the early stages of development are described, including JNJ-63723283, which has attained FDA breakthrough status for MM. Other mAbs described in this review include denosumab, recently approved for myeloma-associated bone loss, and checkpoint inhibitors, although the future status of the latter combined with immunomodulators has been clouded by unacceptably high death rates that caused the FDA to issue clinical holds on several of these trials. Also highlighted are therapies based on the B Cell Maturation Antigen (BCMA), another very promising target for anti-myeloma development.


2021 ◽  
Vol 14 (1) ◽  
Author(s):  
Christopher T. Su ◽  
J. Christine Ye

AbstractThe pace of innovation of multiple myeloma therapy in recent years is remarkable with the advent of monoclonal antibodies and the approval of novel agents with new mechanisms of action. Emerging therapies are on the horizon for clinical approval with significant implications in extending patient survival and advancing closer to the goal of a cure, especially in areas of immunotherapy such as chimeric antigen receptor T cells, bispecific T cell engager antibodies, antibody drug conjugates, newer generations of monoclonal antibodies, and small molecule inhibitor and modulators. This review provides an update of current myeloma therapeutics in active preclinical and early clinical development and discusses the mechanism of action of several classes of novel therapeutics.


2020 ◽  
Vol 15 (4) ◽  
pp. 272-292
Author(s):  
Romeo G. Mihăilă

Background: The therapeutic outcomes and the prognosis of patients with various hematologic malignancies are not always ideal with the current standard of care. Objective: The aim of this study is to analyze the results of the use of monoclonal antibodies, bispecific antibodies and antibody-drug conjugates for the therapy of malignant hemopathies. Methods: A mini-review was achieved using the articles published in Web of Science and PubMed between January 2017 and January 2020 and the new patents were made in this field. Results: Naked monoclonal antibodies have improved the therapeutic results obtained with standard of care, but they also have side effects and the use of some of them can lead to the loss of the target antigen through trogocytosis, which explains the resistance that occurs during therapy. The results obtained with naked monoclonal antibodies have been improved by a better monoclonal antibody preparation, the use of bispecific antibodies (against two antigens on the target cell surface or by binding both surface antigen on target cells and T-cell receptor complex, followed by cytotoxic T-lymphocytes activation and subsequent cytolysis of the target cell), the use of monoclonal or bispecific constructs in frontline regimens, combining immunotherapy with chemotherapy, including through the use of antibody-drug conjugates (which provides a targeted release of a chemotherapeutic agent). Conclusion: Immunotherapy and immuno-chemotherapy have improved the outcome of the patients with malignant hemopathies through a targeted, personalized therapy, with reduced systemic toxicity, which in some cases can even induce deep complete remissions, including minimal residual disease negativity.


2019 ◽  
Vol 26 (32) ◽  
pp. 5968-5981 ◽  
Author(s):  
Mattia D’Agostino ◽  
Giulia Gazzera ◽  
Giusy Cetani ◽  
Sara Bringhen ◽  
Mario Boccadoro ◽  
...  

Background: Survival of multiple myeloma patients has considerably improved in the last decades thanks to the introduction of many new drugs, including immunomodulatory agents, proteasome inhibitors and, more recently, monoclonal antibodies. Methods: We analyzed the most recent literature focusing on the clinical and pharmacologic aspects of monoclonal antibody-based therapies in multiple myeloma, including monoclonal antibodies directed against plasma cell antigens, as well as checkpoint blockade therapy directed against immune inhibitory molecules, used as single agents or in combination therapy. Results: Anti-CD38 monoclonal antibodies including daratumumab, isatuximab and MOR202 have shown outstanding results in relapsed and/or refractory multiple myeloma patients. The addition of daratumumab to bortezomib-dexamethasone or lenalidomidedexamethasone substantially improved patients’ outcome in this patient population. The anti- SLAMF7 molecule elotuzumab in combination with lenalidomide-dexamethasone showed to be superior to lenalidomide-dexamethasone alone, without adding meaningful toxicity. Checkpoint blockade therapy in combination with immunomodulatory agents produced objective responses in more than 50% of treated patients. However, this combination was also associated with an increase in toxicity and a thorough safety evaluation is currently ongoing. Conclusion: Monoclonal antibodies are reshaping the standard of care for multiple myeloma and ongoing trials will help physicians to optimize their use in order to further improve patients’ outcome.


Cancers ◽  
2021 ◽  
Vol 13 (7) ◽  
pp. 1571
Author(s):  
Jakub Radocha ◽  
Niels W. C. J. van de Donk ◽  
Katja Weisel

Multiple myeloma is the second most common hematologic malignancy. Current treatment strategies are mainly based on immunomodulatory drugs, proteasome inhibitors or combination of both. Novel agents added to these backbone treatments represent a promising strategy in treatment of newly diagnosed as well as relapsed and refractory multiple myeloma patients. In this respect, the incorporation of monoclonal antibodies into standard-of-care regimens markedly improved prognosis of myeloma patients during the last years. More specifically, monoclonal anti-CD38 antibodies, daratumumab and isatuximab, have been implemented into treatment strategies from first-line treatment to refractory disease. In addition, the monoclonal anti-SLAM-F7 antibody elotuzumab in combination with immunomodulatory drugs has improved the clinical outcomes of patients with relapsed/refractory disease. Belantamab mafodotin is the first approved antibody drug conjugate directed against B cell maturation antigen and is currently used as a monotherapy for patients with advanced disease. This review focuses on clinical efficacy and safety of monoclonal antibodies as well as antibody drug conjugates in multiple myeloma.


2005 ◽  
Vol 41 ◽  
pp. 205-218
Author(s):  
Constantine S. Mitsiades ◽  
Nicholas Mitsiades ◽  
Teru Hideshima ◽  
Paul G. Richardson ◽  
Kenneth C. Anderson

The ubiquitin–proteasome pathway is a principle intracellular mechanism for controlled protein degradation and has recently emerged as an attractive target for anticancer therapies, because of the pleiotropic cell-cycle regulators and modulators of apoptosis that are controlled by proteasome function. In this chapter, we review the current state of the field of proteasome inhibitors and their prototypic member, bortezomib, which was recently approved by the U.S. Food and Drug Administration for the treatment of advanced multiple myeloma. Particular emphasis is placed on the pre-clinical research data that became the basis for eventual clinical applications of proteasome inhibitors, an overview of the clinical development of this exciting drug class in multiple myeloma, and a appraisal of possible uses in other haematological malignancies, such non-Hodgkin's lymphomas.


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