Sustained clinico-radiologic response to anti-cytotoxic T lymphocyte antigen 4 antibody therapy in metastatic myxoid liposarcoma

2016 ◽  
Vol 23 (7) ◽  
pp. 549-551
Author(s):  
Constantin A Dasanu

Rarity and heterogeneity of sarcomas pose significant challenges in terms of developing new therapies. Therefore, efforts towards studying immunotherapy in sarcomas may provide hope for effective control of this group of devastating cancers. A sustained clinico-radiologic response to the anti-cytotoxic T lymphocyte antigen 4 antibody ipilimumab in a patient with metastatic myxoid liposarcoma is reported. Although the patient was treated with this agent for metastatic melanoma, both his metastatic cancers – melanoma and sarcoma – meaningfully responded to this agent. Consideration of enrolling patients in immunotherapy trials using various immune checkpoint inhibitors, where available, is of paramount importance, especially when facing advanced and/or refractory sarcoma situation.

2016 ◽  
Vol 23 (8) ◽  
pp. 620-624 ◽  
Author(s):  
Belal Firwana ◽  
Rahul Ravilla ◽  
Mihir Raval ◽  
Laura Hutchins ◽  
Fade Mahmoud

Immunotherapy with checkpoint inhibitors has revolutionized the management of metastatic melanoma. These checkpoints, namely the cytotoxic T lymphocyte antigen 4 and the programmed T cell death 1 receptor, possess an inhibitory effect on the T cell function. Pharmacologic inhibition of cytotoxic T lymphocyte antigen 4 with ipilimumab and programmed T cell death 1 with either pembrolizumab or nivolumab has resulted in long-term sustained responses among patients with metastatic melanoma. The adverse events of these medications are predominantly immune related. Sarcoidosis-like syndrome/lymphadenopathy represents a challenging adverse event to the oncologist as it can be mistaken for progressive disease. Hence, awareness of such adverse event and obtaining a biopsy of the enlarged lymph nodes will confirm the diagnosis and avoid the unnecessary change of current therapies for those with stage IV disease or adding new ones for those with stage III disease. We report three cases of immunotherapy-related sarcoidosis-like syndrome/lymphadenopathy; two cases occurred during adjuvant ipilimumab for stage III surgically resected melanoma and one case during pemprolizumab for stage IV metastatic melanoma.


2020 ◽  
Vol 9 (1) ◽  
pp. 223 ◽  
Author(s):  
Frank Gellrich ◽  
Marc Schmitz ◽  
Stefan Beissert ◽  
Friedegund Meier

Until recently, distant metastatic melanoma was considered refractory to systemic therapy. A better understanding of the interactions between tumors and the immune system and the mechanisms of regulation of T-cells led to the development of immune checkpoint inhibitors. This review summarizes the current novel data on the treatment of metastatic melanoma with anti-programmed cell death protein 1 (PD-1) antibodies and anti-PD-1-based combination regimens, including clinical trials presented at major conference meetings. Immune checkpoint inhibitors, in particular anti-PD-1 antibodies such as pembrolizumab and nivolumab and the combination of nivolumab with the anti-cytotoxic T-lymphocyte-associated protein 4 (CTLA-4) antibody ipilimumab can achieve long-term survival for patients with metastatic melanoma. The anti-PD-1 antibodies nivolumab and pembrolizumab were also approved for adjuvant treatment of patients with resected metastatic melanoma. Anti-PD-1 antibodies appear to be well tolerated, and toxicity is manageable. Nivolumab combined with ipilimumab achieves a 5 year survival rate of more than 50% but at a cost of high toxicity. Ongoing clinical trials investigate novel immunotherapy combinations and strategies (e.g., Talimogene laherparepvec (T-VEC), Bempegaldesleukin (BEMPEG), incorporation or sequencing of targeted therapy, incorporation or sequencing of radiotherapy), and focus on poor prognosis groups (e.g., high tumor burden/LDH levels, anti-PD-1 refractory melanoma, and brain metastases).


2020 ◽  
Vol 33 (5) ◽  
pp. 335
Author(s):  
Nuno Gomes ◽  
Vincent Sibaud ◽  
Filomena Azevedo ◽  
Sofia Magina

Introduction: Immune checkpoint inhibitors revolutionized anti-neoplastic treatment. Recently, the European Medicines Agency and the United States Food and Drug Administration approved inhibitors of various immune checkpoints, namely the cytotoxic T-lymphocyte-associated protein 4, programmed cell death protein 1 and its ligand. Despite the added benefits in the treatment of several neoplasms, immune checkpoint blockade may also be associated with multiple immune-related adverse events.Material and Methods: A literature review in PubMed database on the cutaneous toxicity of immune checkpoint inhibitors was performed until April 30, 2019.Results and Discussion: A total of 380 articles were initially screened, of which 75 are the basis of this bibliographic review. The immune checkpoint inhibitors monoclonal antibodies produce their beneficial effects by activating the patient’s immune system. This activation also results in adverse events that can affect any organ, whereas cutaneous toxicity is the most frequent and precocious. The adverse events of the programmed cell death protein 1 and its ligand and of the cytotoxic T-lymphocyte-associated protein 4 are similar (class effect), despite the apparent higher skin toxicity of inhibitors of the cytotoxic T-lymphocyte-associated protein 4 (or its use in combination with inhibitors of programmed cell death protein 1 and its ligand). The most common cutaneous toxicities are maculopapular exanthema and pruritus, but other more specific adverse effects (e.g. lichenoid or psoriasiform reaction, vitiligo, sarcoidosis, among others) or located in the oral mucosa and/or adnexa are underreported.Conclusion: Given the high rate of cutaneous toxicity associated with new immune checkpoint inhibitors and their impact on quality of life, their early recognition and appropriate approach are crucial in the treatment of cancer patients. Observation by a dermatologist should be provided in patients with certain toxicities.


2018 ◽  
Vol 18 (2) ◽  
pp. 56-60
Author(s):  
Cheuk Man Ho ◽  
Chi Chiu Mok

Abstract The development of immunotherapy has revolutionized the cancer treatment in the recent years. Immune checkpoint inhibitors (ICPis) such as anti-cytotoxic T-lymphocyte-associated antigen 4 (anti-CTLA-4) and anti-programmed cell death protein (anti-PD1) and its ligand (anti-PDL1) have become part of the standard treatment of various malignancies. Immune-related adverse events (irAEs) were common in patients treated with ICPis. Rheumatologists should be aware of the upcoming challenges in the management of irAEs in a patient receiving treatment with ICPis.


2020 ◽  
Vol 8 (Suppl 3) ◽  
pp. A249-A249
Author(s):  
Daniel Delitto ◽  
Evan Lipson ◽  
Laura Cappelli ◽  
Klaus Busam ◽  
Antony Rosen ◽  
...  

BackgroundTumor-specific antibodies have been reported in patients with cancers responding to immune checkpoint inhibitors (ICI), and there is an increasing appreciation for the potential role of B cells in mediating ICI responses. However, the humoral immune response to melanoma remains incompletely defined. We hypothesized that screening sera for antibodies by immunoprecipitation with lysates of cultured melanoma cells would increase the likelihood of detecting circulating antibodies in melanoma patients receiving ICI, and potentially identify novel antibody targets associated with treatment response and/or immune-related adverse events (IRAEs).MethodsPre-and on/post-treatment sera or plasma from 12 clinically-annotated patients with advanced metastatic melanoma receiving ICI were assayed for tumor-specific antibodies with an established immunoprecipitation platform. 35S-methionine-labeled lysates from cultured 624Mel cells were used for immunoprecipitation. 624Mel expresses several shared non-mutated melanoma antigens (e.g., MAGEA3, tyrosinase, MART-1/Melan-A, gp75, and gp100). Antigen identity was determined using on-bead digests followed by mass spectrometry, and was confirmed by immunoprecipitation with in vitro transcription/translation (IVTT) products.ResultsAntibodies reactive against 624Mel proteins were detected in 4 of 12 (33%) patients (table 1). Mass spectrometric sequencing performed on proteins captured with sera from 3 of 4 patients identified several putative antigens. Immunoprecipitation with IVTT candidate proteins confirmed antibodies against melanoma-associated and cancer testis antigens NY-ESO-1, SSX2 and MAGEA10. Antibodies were observed in 1 of 1 (100%) patient with a complete response, 2 of 4 (50%) with a partial response, 1 of 1 (100%) with stable disease, and 0 of 6 (0%) with progressive disease. Antibody levels varied over the course of therapy, with previously undetectable specificities arising during treatment response in patients #1–3. Patient #1 with a complete tumor regression developed antibodies to SSX2 and MAGEA10 that were absent before treatment. Further, detection of these antibodies coincided with diagnosis of IRAEs (anti-SSX2 with pancreatitis and anti-MAGEA10 with dermatitis). In contrast, patient #3, initially with a partial tumor regression, demonstrated a loss of detectable anti-NY-ESO-1 antibodies upon disease progression, and subsequent metastasectomy demonstrated loss of NY-ESO-1 protein expression in the progressing tumor. Testing sera from all 12 patients with IVTT products for NY-ESO-1, SSX2 and MAGEA10 did not reveal additional humoral responses.Abstract 231 Table 1Antibodies detected in the serum or plasma of patients with metastatic melanoma treated with ICI therapy. Treatment response indicates best overall response according to RECIST v1.1. Post-treatment blood collections were drawn during or after ICI therapy.ConclusionsOur comprehensive screening platform detected circulating antibodies specific to multiple melanoma-associated and cancer testis antigens in patients deriving clinical benefit from ICI. Expanded investigations of the evolution of antibody production over the course of ICI therapy, associated with tumor response to treatment and development of IRAEs, are warranted.AcknowledgementsThis study was supported by the Johns Hopkins Bloomberg-Kimmel Institute for Cancer Immunotherapy, and NIH P30-AR070254.Ethics ApprovalThis study was approved by the Johns Hopkins Institutional Review Board, approval #NA_00090257.


BMC Cancer ◽  
2021 ◽  
Vol 21 (1) ◽  
Author(s):  
Rulan Ma ◽  
Quanziang Wang ◽  
Deyu Meng ◽  
Kang Li ◽  
Yong Zhang

Abstract Background Immune checkpoint inhibitors-induced myocarditis presents unique clinical challenges. Here, we assessed post-marketing safety of cytotoxic T-lymphocyte-associated protein-4 (CTLA-4), programmed cell death-1 (PD-1), and programmed death-ligand 1 (PD-L1) inhibitors by mining the real-world data reported in two international pharmacovigilance databases. Methods We analyzed immune checkpoint inhibitors (ICIs)-associated fatal adverse drug events (ADEs) reports from the US Food and Drug Administration (FDA) Adverse Event Reporting System (FAERS) collected from July 1, 2014 to December 31, 2019 and data from EudraVigilance (EV) database accessed on February 29, 2020. Three different data mining approaches were used to detect the signal of fatal myocarditis caused by ICIs. Results Based on 7613 ICIs-related ADEs reported to the EV database and 5786 ICIs-associated ADEs submitted to the FAERS database, the most frequently reported ADE was ipilimumab-related colitis. For myocarditis, nivolumab-associated myocarditis was the most common. Among the five fatal toxic effects associated with ICIs, the lethality rate of myocarditis was the highest. Therefore, we further analyzed ICI-associated myocarditis and found that elderly patients and male patients were more likely to develop ICIs-related myocarditis. The results of signal detection showed that the risk signal of avelumab-related myocarditis detected by reporting odds ratio (ROR) method and proportional reporting ratios (PRR) method was the highest, whereas the signal strength of ipilimumab-related myocarditis detected by Bayesian confidence propagation neural networks (BCPNN) method was the strongest. Conclusion The findings of this study indicated the potential safety issues of developing myocarditis when using ICIs, which were consistent with the results of previous clinical trials and could provide a reference for clinical workers when using ICIs.


2021 ◽  
Author(s):  
Ari Kassardjian ◽  
Neda Moatamed

Abstract Introduction: Immune checkpoint inhibitors in cancer therapy has a significant role in oncology. One of these immune checkpoint mediators is cytotoxic T-lymphocyte associated protein 4 (CTLA-4). Inhibition of the CTLA-4 pathway has already led to the FDA approval of Ipilimumab (anti-CTLA-4), a targeted therapy for melanoma and other malignancies. CD137 is an inducible, costimulatory receptor of the tissue necrosis factor receptor superfamily expressed on activated immune cells. Clinical trials had also been set for anti-CD137 in several malignancies. We investigated the expression of CTLA-4 and CD137 antibodies in benign and malignant uterine cervical tissues. Method: We assessed CTLA-4 and CD137 expression on a tissue microarray (TMA) comprising of 100 normal, non-neoplastic, and neoplastic cervical tissues. When detected as strong granular cytoplasmic reaction in the epithelial cells, CTLA-4 expression was scored as positive. For CD137, the results were recorded based on the presence or absence of staining reaction on the cell membranes of the lymphoplasmacytic infiltrate. Result: Overall, CTLA-4 was positive in 30% (30/100) of the cervical malignancies. Subcategorically, 20% of invasive endocervical adenocarcinomas, 62.5% of adenosquamous carcinomas, and 31% of squamous cell carcinomas were positive for CTLA-4 with a tendency toward lower grades SCCs. CD137 was positive in lymphoplasmacytic infiltrates of all endocervical adenocarcinomas, 90.5% of squamous cell carcinoma, and 87.5% cores of adenosquamous carcinomas. Conclusion: This study has found a significant expression of CTLA-4 in cervical cancer cells and CD137 positivity of lymphoplasmacytic infiltrates with potentials for future targeted immunotherapy.


Author(s):  
Barbara Barnes Rogers, CRNP, MN, AOCN, ANP-BC ◽  
Carolyn Zawislak, MPAS, PA-C ◽  
Victoria Wong, PA-C

Immune checkpoint inhibitors target suppressor receptors, including cytotoxic T-lymphocyte–associated antigen 4 (CTLA-4), programmed cell death protein 1 (PD-1), and programmed cell death ligand 1 (PD-L1). The activated T cells are not antigen specific; therefore, the blockade of the immune checkpoint may result in the development of autoimmune adverse events. The most common immune-related adverse events (irAEs) are rash, colitis, and endocrinopathies. However, irAEs that affect the hematologic system are rare and can affect red blood cells (e.g., autoimmune hemolytic anemia), white blood cells, and platelets (e.g., immune thrombocytopenia). Usually one cell line is affected; however, in some cases, multiple cell lines can be affected. Other changes in the hematologic system can also be affected (e.g., cryoglobulinemia, cytokine release syndrome). Due to the rarity and lack of recognition of these AEs, the timing, spectrum of events, and clinical presentation are poorly understood. Management of hematologic irAEs usually involves the use of steroids; however, other agents (e.g., IVIG, cyclosporine, rituximab) or procedures (e.g., plasma exchange, transfusions) can also be used.


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