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IMMUNE CHECKPOINT INHIBITORS MARKET

Immune checkpoint inhibitors are a part of immuno-oncology therapies, which involves use of patientsu2019 immune system to fight against cancer. Immuno-oncology uses novel immunotherapies such as immune checkpoint inhibitors that boost the immune system of patients. These therapies target the immune system of the body instead of the tumors and enable the immune system to recognize and target cancer cells. Immune checkpoint inhibitors are immunotherapy products that block the proteins, which stop immune system from attacking the cancer cells. These drugs block certain checkpoint proteins such as CTLA-4, PD-1, and PD-L1. Manufacturers are engaged in research and development of immune checkpoint inhibitors as standalone therapies as well as in combination with other immuno-oncology products. Immune checkpoint inhibitors work against a wide variety of cancer, which include non-small cell lung cancer, lymphoma, skin cancer, breast cancer, and others. Depending on the functioning of these therapies they are further classified into subtypes such as programmed death receptor-1 (PD-1) inhibitors, programmed death-ligand 1 (PD-L1) inhibitors, and cytotoxic t-lymphocyte antigen 4 (CTLA-4) inhibitors. Commercially available immune checkpoint inhibitors include Iplimumab, Nivolumab, Rituximab, Blinatumomab, Proleukin, Gardasil, and Kymriah.

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IMMUNE CHECKPOINT INHIBITORS MARKET

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  1. Coherent Market Insights Market Research and Business Consulting Services https://www.coherentmarketinsights.com/ COVID-19 Impact Tracker

  2. IMMUNE CHECKPOINT INHIBITORS MARKET Immune checkpoint inhibitors are a part of immuno-oncology therapies, which involves use of patients’ immune system to fight against cancer. Immuno-oncology uses novel immunotherapies such as immune checkpoint inhibitors that boost the immune system of patients. These therapies target the immune system of the body instead of the tumors and enable the immune system to recognize and target cancer cells. Immune checkpoint inhibitors are immunotherapy products that block the proteins, which stop immune system from attacking the cancer cells. These drugs block certain checkpoint proteins such as CTLA-4, PD-1, and PD-L1. Manufacturers are engaged in research and development of immune checkpoint inhibitors as standalone therapies as well as in combination with other immuno-oncology products. Immune checkpoint inhibitors work against a wide variety of cancer, which include non-small cell lung cancer, lymphoma, skin cancer, breast cancer, and others. Depending on the functioning of these therapies they are further classified into subtypes such as programmed death receptor-1 (PD-1) inhibitors, programmed death-ligand 1 (PD-L1) inhibitors, and cytotoxic t-lymphocyte antigen 4 (CTLA-4) inhibitors. Commercially available immune checkpoint inhibitors include Iplimumab, Nivolumab, Rituximab, Blinatumomab, Proleukin, Gardasil, and Kymriah.

  3. Introduction of novel immune checkpoint inhibitors with less side effects is driving global immune checkpoint inhibitors market growth Cancer treatment has become more refined with improved treatment success rate due to improved therapeutic outcomes. This has been possible due to better understanding of the disease pathophysiology, functioning of the tumor cells, and effective ways to tackle with the same. Immune checkpoint inhibitors exhibit lesser side effects as compared to conventional cancer therapies such as chemotherapy, radiation therapy, and others. Manufactures are developing immune checkpoint inhibitors, which are tailored to attack or block particular targets. For instance, Iplimumab, a human monoclonal antibody, which blocks cytotoxic T-lymphocyte-associated antigen-4 is available. The global immune checkpoint inhibitors market size was valued at US$ 10,543.8 million in 2017, and is expected to witness a robust CAGR of 11.8% over the forecast period (2018 – 2026).

  4. Figure No.1: Global Immune Checkpoint Inhibitors Market Share (%), by Region, 2018 and 2026 Source: Coherent Market Insights Analysis (2017)

  5. Active research and development by leading players as well as small innovative organizations are expected to boost growth of the immune checkpoint inhibitors market Immune checkpoint inhibitor is gaining significant traction as an efficient therapy for cancer treatment worldwide owing to less side effects, and targeted therapeutic effect. Therefore, various pharmaceuticals, biotech companies, universities, and cancer centers are focusing on investing in this segment. According to the Tufts Center for the Study of Drug Development (CSDD) report, 2016, currently, over 130 biotech and 20 pharma companies are developing immuno-oncology therapies, thereby fueling immune checkpoint inhibitors market growth in the forecast period. Also, according to the New York-based, Cancer Research Institute (CRI), 2017, currently 2,004 immuno-oncology agents including 940 in clinical stage and 1,064 in preclinical stage are under development. Leading players are actively investing in research and development in oncology treatment through various collaborations and individual research studies, owing to benefits associated with immune-oncology therapies.

  6. Figure No.2: Global Immune Checkpoint Inhibitors Market Size (US$ Mn) Analysis and Forecast and Y-o-Y Growth (%) (2018-2026) Source: Coherent Market Insights Analysis (2017)

  7. Table No.1: Atezolizumab (Tecentriq) Years of Approval and Indications Source: Company Annual Reports However, high cost of immuno-oncology therapies, which is unaffordable to low and middle income population is restraining immune checkpoint inhibitors market growth. For instance, Keytruda (Pembrolizumab), a monoclonal antibody for the treatment of various types of cancer cost around US$ 2,250 for a vial of 50 mg. Some of the major players operating in the immune checkpoint inhibitors market include Bristol-Myers Squibb Company, Merck & Co., Inc., F. Hoffmann-La Roche AG, AstraZeneca Plc., Novartis International AG, ImmunOs Therapeutics AG, Immutep Ltd., NewLink Genetics Corporation, Ono Pharmaceutical Co., Ltd., and Pfizer, Inc.

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