Pancreatic Cancer Market to Grow Rapidly by 2034, Predicts DelveInsight | Key Companies - FibroGen, OSE Immunotherapeutics, Panbela Therapeutics, Lokon Pharma, Helix Biopharma, Tvardi Therapeutics, BioNTech, XBiotech, Lumicell, CARsgen Ther

The pancreatic cancer market is expected to show positive growth, mainly attributed to the increasing incident cases and also, the launch of upcoming therapies during the forecast period. Additionally, advances in disease mechanisms have yielded new diagnostic and therapeutic approaches, opening the way to more medical development.


New York, USA, July 09, 2024 (GLOBE NEWSWIRE) -- Pancreatic Cancer Market to Grow Rapidly by 2034, Predicts DelveInsight | Key Companies - FibroGen, OSE Immunotherapeutics, Panbela Therapeutics, Lokon Pharma, Helix Biopharma, Tvardi Therapeutics, BioNTech, XBiotech, Lumicell, CARsgen Therapeutics 

The pancreatic cancer market is expected to show positive growth, mainly attributed to the increasing incident cases and also, the launch of upcoming therapies during the forecast period. Additionally, advances in disease mechanisms have yielded new diagnostic and therapeutic approaches, opening the way to more medical development.

DelveInsight’s Pancreatic Cancer Market Insights report includes a comprehensive understanding of current treatment practices, pancreatic cancer emerging drugs, market share of individual therapies, and current and forecasted pancreatic cancer market size from 2020 to 2034, segmented into 7MM (the United States, the EU-4 [Italy, Spain, France, and Germany], the United Kingdom, and Japan).

Key Takeaways from the Pancreatic Cancer Market Report

  • According to DelveInsight’s analysis, the market size of pancreatic cancer in the 7MM was found to be around USD 1.6 billion in 2020.
  • As per DelveInsight's analysis, in 2023, the US accounted for approximately 64,000 incident cases of pancreatic cancer. These are expected to increase during the forecast period (2024−2034) owing to increasing aging populations, improved screening methods leading to earlier detection, and advancements in medical technology allowing for better diagnosis and treatment.
  • Prominent companies working in the domain of pancreatic cancer, including FibroGen, OSE Immunotherapeutics, Lokon Pharma, Oncotelic, Helix Biopharma Corporation, Tvardi Therapeutics, AIM ImmunoTech, BioNTech, Prestige Biopharma, HCW Biologics, Cantex Pharmaceuticals, XBiotech, Lumicell, CARsgen Therapeutics, Panbela Therapeutics, and others, are actively working on innovative drugs for pancreatic cancer. These novel pancreatic cancer therapies are anticipated to enter the pancreatic cancer market in the forecast period and are expected to change the market.
  • Some of the key therapies for pancreatic cancer treatment include Pamrevlumab, OSE2101, LOAd703, OT-101, L-DOS47 + Doxorubicin, TTI-101, Rintatolimod, BNT122, PBP1510, HCW9218, Azeliragon, XB2001, LUM015, CT041, SBP-101, and others. 

Discover which therapies are expected to grab the pancreatic cancer market share @ Pancreatic Cancer Market Report

Pancreatic Cancer Overview

Pancreatic cancer is a highly aggressive malignancy originating in the tissues of the pancreas, an organ situated behind the lower part of the stomach that plays a crucial role in digestion and blood sugar regulation. The exact causes of pancreatic cancer are not fully understood, but several risk factors have been identified. These include smoking, chronic pancreatitis, diabetes, obesity, and a family history of the disease. Genetic mutations, either inherited or acquired, also play a significant role.

The symptoms of pancreatic cancer often do not appear until the disease is advanced, making early detection challenging. Common symptoms include jaundice, unexplained weight loss, abdominal pain radiating to the back, loss of appetite, and new-onset diabetes. Some patients may also experience nausea, vomiting, and changes in stool consistency.

Diagnosing pancreatic cancer typically involves a combination of imaging tests, blood tests, and biopsy procedures. Imaging techniques such as computed tomography (CT) scans, magnetic resonance imaging (MRI), and endoscopic ultrasound (EUS) help visualize the pancreas and identify any abnormalities. Blood tests may reveal elevated levels of certain tumor markers, like CA 19-9. A definitive diagnosis is usually confirmed through a biopsy, where a tissue sample from the pancreas is examined under a microscope for cancerous cells. Early and accurate diagnosis is critical for the management and treatment of pancreatic cancer, though it remains a daunting challenge due to the disease's elusive nature in its initial stages.

Pancreatic Cancer Epidemiology Segmentation

The pancreatic cancer epidemiology section provides insights into the historical and current pancreatic cancer patient pool and forecasted trends for the 7MM. It helps recognize the causes of current and forecasted patient trends by exploring numerous studies and views of key opinion leaders.

The pancreatic cancer market report proffers epidemiological analysis for the study period 2020–2034 in the 7MM segmented into:

  • Total Incident Cases of Pancreatic Cancer
  • Total Incident Cases of Pancreatic Cancer by Age
  • Total Incident Cases of Pancreatic Cancer by Stage
  • Total Incident Cases of Pancreatic Cancer by Molecular Alterations
  • Total Treated Cases of Pancreatic Cancer by Line of Therapy

Download the report to understand which factors are driving pancreatic cancer epidemiology trends @ Pancreatic Cancer Epidemiological Insights

Pancreatic Cancer Treatment Market 

Pancreatic cancer is among the most common cancers with a high mortality rate. Surgery is the best treatment for localized or regional cases, while chemotherapy is the primary drug treatment at all stages. Targeted therapies like LYNPARZA for BRCA mutations, VITRAKVI and ROZLYTREK for NTRK gene expression in solid tumors, and KEYTRUDA for patients with microsatellite instability-high expression in solid tumors are used in conjunction with traditional treatments. In addition, recently in February 2024, the FDA approved ONIVYDE (irinotecan liposome) with oxaliplatin, fluorouracil, and leucovorin, for the first-line treatment of metastatic pancreatic adenocarcinoma.

Chemotherapy remains the main pharmaceutical approach alongside surgery for treating pancreatic cancer. Initially, gemcitabine-based regimens are preferred due to their lower adverse event rates compared to 5-FU-based options. For second-line treatment following FOLFIRINOX, gemcitabine combined with nab-paclitaxel is considered for eligible patients. Alternatively, monotherapy with gemcitabine or 5-FU is an option for patients with poor performance status, medical comorbidities, or those who are elderly.

As pancreatic cancer progresses quickly and has low survival rates, many patients don't move on to another treatment if the first one doesn't work; about 70% move from their initial treatment to a second option. The choice of a second treatment depends on what they've already tried. Right now, there's no widely agreed-upon standard for second-line therapy in pancreatic cancer, but generally, chemotherapy is favored. Even though chemotherapy gets most of the attention, there's optimism for improvements in treating metastatic pancreatic cancer. Ongoing research, especially in targeted therapies and immunotherapies, offers hope for future advancements and the potential for better outcomes and more treatment options for patients down the line.

Learn more about the FDA-approved drugs for pancreatic cancer @ Drugs for Pancreatic Cancer Treatment 

Pancreatic Cancer Emerging Drugs and Companies

The pancreatic cancer pipeline possesses some drugs in mid and late-stage developments to be approved shortly. The emerging landscape holds a diverse range of therapeutic alternatives for pancreatic cancer treatment, including pamrevlumab (FibroGen), OSE2101 (OSE Immunotherapeutics), LOAd703 (Lokon Pharma), and others in different lines of treatment. 

Pamrevlumab, an innovative antibody pioneered by FibroGen, is designed to suppress the function of connective tissue growth factor (CTGF), a key player in conditions marked by chronic scarring and tissue overgrowth, often resulting in organ impairment. FibroGen is currently conducting Phase III trials, LAPIS and Precision Promise, to evaluate the drug in pancreatic cancer. Anticipated top-line results from LAPIS and Precision Promise trials are slated for the third quarter of 2024 and mid-2024, respectively. 

SBP-101, a unique polyamine analog, is crafted to trigger polyamine metabolic inhibition (PMI) by capitalizing on its notable affinity for pancreatic ductal adenocarcinoma and various other tumors. Presently, the drug is undergoing Phase III trial targeting first-line metastatic pancreatic cancer, with interim results anticipated in the first quarter of 2025. In addition, the drug is also Phase II ready for neoadjuvant pancreatic ductal adenocarcinoma.

The other therapies in the pipeline for pancreatic cancer treatment include

  • OT-101: Oncotelic Inc.
  • L-DOS47 + Doxorubicin: Helix Biopharma Corporation/Theradex
  • TTI-101: Tvardi Therapeutics
  • Rintatolimod: AIM ImmunoTech 
  • BNT122: BioNTech 
  • PBP1510: Prestige Biopharma 
  • HCW9218: HCW Biologics
  • Azeliragon: Cantex Pharmaceuticals
  • XB2001: XBiotech 
  • LUM015: Lumicell 
  • CT041: CARsgen Therapeutics

The anticipated launch of these emerging therapies are poised to transform the pancreatic cancer market landscape in the coming years. As these cutting-edge therapies continue to mature and gain regulatory approval, they are expected to reshape the pancreatic cancer market landscape, offering new standards of care and unlocking opportunities for medical innovation and economic growth.

To know more about pancreatic cancer clinical trials, visit @ Pancreatic Cancer Treatment Drugs 

Pancreatic Cancer Market Dynamics

The pancreatic cancer market dynamics are anticipated to change in the coming years. Combination chemotherapy offers an important option for patients with advanced and metastatic disease, providing short-lived partial remissions or stable disease in newly diagnosed patients, alongside the identification of individuals with targetable germline and somatic alterations and the integration of routine germline and somatic testing in daily practice; meanwhile, multi-modal immunotherapeutic approaches, currently under clinical investigation, have shown safety, prompting further exploration of alternative strategies in clinical settings where the tumor microenvironment has been minimized or reduced, ultimately prioritizing the optimization of treatment towards the most cost-effective regimen for survival benefit in pancreatic cancer care.

Furthermore, many potential therapies are being investigated for the treatment of pancreatic cancer, and it is safe to predict that the treatment space will significantly impact the pancreatic cancer market during the forecast period. Moreover, the anticipated introduction of emerging therapies with improved efficacy and a further improvement in the diagnosis rate are expected to drive the growth of the pancreatic cancer market in the 7MM.

However, several factors may impede the growth of the pancreatic cancer market. Chemotherapy, the current standard of care in pancreatic cancer, can cause significant side effects, impacting patients' quality of life, often diagnosed at advanced stages due to the lack of effective screening methods, resulting in limited treatment options and poorer prognosis, making drug development challenging, with the lowest success rate among solid tumors, and the highest mortality rate among major cancers, contributing to a low 5-year relative survival rate, complicating the analysis of target drug efficacy in a larger population.

Moreover, pancreatic cancer treatment poses a significant economic burden and disrupts patients’ overall well-being and QOL. Furthermore, the pancreatic cancer market growth may be offset by failures and discontinuation of emerging therapies, unaffordable pricing, market access and reimbursement issues, and a shortage of healthcare specialists. In addition, the undiagnosed, unreported cases and the unawareness about the disease may also impact the pancreatic cancer market growth.

Pancreatic Cancer Report MetricsDetails
Study Period2020–2034
Pancreatic Cancer Report Coverage7MM [The United States, the EU-4 (Germany, France, Italy, and Spain), the United Kingdom, and Japan]
Pancreatic Cancer Market Size in 2020USD 1.6 billion
Key Pancreatic Cancer CompaniesFibroGen, OSE Immunotherapeutics, Lokon Pharma, Oncotelic, Helix Biopharma, Tvardi Therapeutics, AIM ImmunoTech, BioNTech, Prestige Biopharma, HCW Biologics, Cantex Pharmaceuticals, XBiotech., Lumicell, CARsgen Therapeutics, Panbela Therapeutics, and others
Key Pancreatic Cancer TherapiesPamrevlumab, OSE2101, LOAd703, OT-101, L-DOS47 + Doxorubicin, TTI-101, Rintatolimod, BNT122, PBP1510, HCW9218, Azeliragon, XB2001, LUM015, CT041, SBP-101, and others

Scope of the Pancreatic Cancer Market Report

  • Pancreatic Cancer Therapeutic Assessment: Pancreatic Cancer current marketed and emerging therapies
  • Pancreatic Cancer Market Dynamics: Attribute Analysis of Emerging Pancreatic Cancer Drugs
  • Competitive Intelligence Analysis: SWOT analysis and Market entry strategies
  • Unmet Needs, KOL’s views, Analyst’s views, Pancreatic Cancer Market Access and Reimbursement

Discover more about pancreatic cancer drugs in development @ Pancreatic Cancer Clinical Trials

Table of Contents

1Key Insights
2Report Introduction
3Pancreatic Cancer-Market Overview at a Glance
3.1Market Share (%) Pancreatic Cancer by Therapies in 2020
3.2Market Share (%) of Pancreatic Cancer by Therapies in 2034
4Pancreatic Cancer - Future Prospects
5Executive Summary of Pancreatic Cancer
6Key Events
7Disease Background and Overview
7.1Introduction
7.2Types of Pancreatic Cancer
7.3Stages of Pancreatic Cancer
7.4Signs and Symptoms
7.5Risk Factors and Causes
7.6Pathophysiology/Mechanisms
7.6.1Carcinogenesis and Molecular Biology
7.6.2Molecular Genetics of Pancreatic Cancer
7.7Diagnosis
7.7.1Differential Diagnosis
7.8Diagnostic Algorithm
7.9Diagnostic Guidelines
7.9.1ASGE Guideline on Screening for Pancreatic Cancer in Individuals With Genetic Susceptibility, 2022
7.9.2Metastatic Pancreatic Cancer: ASCO Guideline, 2020
7.9.3National Institute for Health and Care Excellence, NICE, 2022
7.9.4Clinical Practice Guidelines for Diagnosis of Exocrine Pancreatic Ductal Adenocarcinoma: Evidence Evaluation and Recommendations by the Italian Association of Medical Oncology (AIOM), 2020
7.9.5Clinical Practice Guidelines for Pancreatic Cancer 2019 from the Japan Pancreas Society
8Treatment and Management
8.1Treatment Options by Pancreatic Cancer Stage
8.2Treatment Algorithm
8.3Treatment Guidelines for Pancreatic cancer
8.3.1NCCN Guidelines for the Treatment of Pancreatic Adenocarcinoma, 2022
8.3.2Metastatic Pancreatic Cancer: ASCO Guideline, 2020
8.3.3SEOM clinical guidelines for pancreatic and biliary tract cancer (2020)
8.3.4Clinical Practice Guidelines for Diagnosis of Exocrine Pancreatic Ductal Adenocarcinoma: Evidence Evaluation and Recommendations by the Italian Association of Medical Oncology (AIOM), 2020
8.3.5Clinical Practice Guidelines for Pancreatic Cancer 2019 from the Japan Pancreas Society
9Methodology
10Epidemiology and Patient Population
10.1Key Findings
10.2Assumptions and Rationale 7MM
10.3Total Incident Cases of Pancreatic Cancer in the 7MM
10.4The United States
10.4.1Total Incident Cases of Pancreatic Cancer in the United States
10.4.2Molecular Alteration-specific Incident Cases of Pancreatic Cancer in the United States
10.4.3Stage-specific Incident Cases of Pancreatic Cancer in the United States
10.4.4Age-specific Cases of Pancreatic Cancer in the United States
10.4.5Total Treated Cases of Pancreatic Cancer by Line of Therapy in the United States
10.5EU4 and the UK
10.5.1Total Incident Cases of Pancreatic Cancer in EU4 and the UK
10.5.2Molecular Alteration-specific Incident Cases of Pancreatic Cancer in EU4 and the UK
10.5.3Stage-specific Incident Cases of Pancreatic Cancer in EU4 and the UK
10.5.4Age-specific Cases of Pancreatic Cancer in EU4 and the UK
10.5.5Total Treated Cases of Pancreatic Cancer by Line of Therapy in EU4 and the UK
10.6Japan
10.6.1Total Incident Cases of Pancreatic Cancer in Japan
10.6.2Molecular Alteration-specific Incident Cases of Pancreatic Cancer in Japan
10.6.3Stage-specific Incident Cases of Pancreatic Cancer in Japan
10.6.4Age-specific Cases of Pancreatic Cancer in Japan
10.6.5Total Treated Cases of Pancreatic Cancer by Line of Therapy in Japan
11Patient Journey
12Marketed Products
12.1Key-cross
12.2LYNPARZA (olaparib): AstraZeneca
12.2.1Product Description
12.2.2Regulatory Milestones
12.2.3Other Developmental Activity
12.2.4Clinical Developmental Activities
12.2.4.1Clinical Trials Information
12.2.5Safety and Efficacy
12.3KEYTRUDA (pembrolizumab): Merck Sharp & Dohme LLC
12.3.1Product Description
12.3.2Regulatory Milestones
12.3.3Other Developmental Activities
12.3.4Clinical Developmental Activities
12.3.4.1Clinical Trials Information
1.1.1Safety and Efficacy
12.4VITRAKVI (larotrectinib): Bayer
12.4.1Product Description
12.4.2Regulatory Milestones
12.4.3Other Developmental Activities
12.4.4Clinical Developmental Activities
12.4.4.1Clinical Trials Information
12.4.5Safety and Efficacy
12.5ROZLYTREK (entrectinib): Roche
12.5.1Product Description
12.5.2Regulatory Milestones
12.5.3Other Developmental Activities
12.5.4Clinical Developmental Activities
12.5.4.1Clinical Trials Information
12.5.5Safety and Efficacy
12.6ABRAXANE (nab-paclitaxel): Celgene/Bristol Myers Squibb
12.6.1Product Description
12.6.2Regulatory Milestones
12.6.3Other Developmental Activities
12.6.4Clinical Developmental Activities
12.6.4.1Clinical Trials Information
12.6.5Safety and Efficacy
12.7ONIVYDE (irinotecan liposome): Ipsen
12.7.1Product Description
12.7.2Regulatory Milestones
12.7.3Other Developmental Activities
12.7.4Clinical Developmental Activities
12.7.4.1Clinical Trials Information
12.7.5Safety and Efficacy ONIVYDE
13Emerging Therapies
13.1Key Cross Competition
13.2Pamrevlumab (FG-3019): FibroGen
13.2.1Product description
13.2.2Other developmental activity
13.2.3Clinical developmental activities
13.2.3.1Clinical trials information
13.2.4Safety and efficacy
13.3SBP-101: Panbela Therapeutics
13.3.1Product description
13.3.2Other developmental activity
13.3.3Clinical developmental activities
13.3.3.1Clinical trials information
13.3.4Safety and Efficacy
13.4Tedopi (OSE2101): OSE Immunotherapeutics
13.4.1Product description
13.4.2Other developmental activity
13.4.3Clinical developmental activities
13.4.3.1Clinical trials information
13.4.4Safety and efficacy
13.5LOAd703 (delolimogene mupadenorepvec): Lokon Pharma
13.5.1Product description
13.5.2Other developmental activity
13.5.3Clinical developmental activities
13.5.3.1Clinical trials information
13.5.4Safety and efficacy
13.6L-DOS47 + Doxorubicin: Helix Biopharma Corporation/Theradex
13.6.1Product description
13.6.2Clinical developmental activities
13.6.2.1Clinical trials information
13.6.3Safety and efficacy
13.7HCW9218: HCW Biologics
13.7.1Product description
13.7.2Other developmental activity
13.7.3Clinical developmental activities
13.7.3.1Clinical trials information
13.7.4Safety and efficacy
13.8Azeliragon: Cantex Pharmaceuticals
13.8.1Product description
13.8.2Other developmental activity
13.8.3Clinical developmental activities
13.8.3.1Clinical trials information
13.8.4Safety and efficacy
13.9XB2001: XBiotech
13.9.1Product Description
13.9.2Other Developmental Activity
13.9.3Clinical Developmental Activities
13.9.3.1Clinical Trials Information
13.9.4Safety and Efficacy
 List to be continued…
14Pancreatic Cancer: Seven Major Market Analysis
14.1Key Findings
14.3Market Outlook
14.4Conjoint Analysis
14.5Key Market Forecast Assumptions
14.5.1Cost Assumptions and Rebates
14.5.2Pricing Trends
14.5.3Analogue Assessment
14.5.4Launch Year and Therapy Uptake
14.6Market size of Pancreatic Cancer in the 7MM
14.7Market size of Pancreatic Cancer by Therapies in the 7MM
14.8Market size of Pancreatic Cancer in the United States
14.8.1Total Market size of Pancreatic Cancer in the United States
14.8.2Market Size of Pancreatic Cancer by Therapies in the United States
14.8.2.1Market Size of Pancreatic Cancer by Therapies (Adjuvant/Neo-adjuvant) in the United States
14.8.2.2Market Size of Pancreatic Cancer by Therapies (First-line) in the United States
14.8.2.3Market Size of Pancreatic Cancer by Therapies (Second-line and above) in the United States
14.9Market Size of Pancreatic Cancer in EU4 and the UK
14.9.1Total Market Size of Pancreatic Cancer in EU4 and the UK
14.9.2Market Size of Pancreatic Cancer by Therapies in EU4 and the UK
14.9.2.1Market Size of Pancreatic Cancer by Therapies (Adjuvant/Neo-adjuvant) in EU4 and the UK
14.9.2.2Market Size of Pancreatic Cancer by Therapies (First-line) in EU4 and the UK
14.9.2.3Market Size of Pancreatic Cancer by Therapies (Second-line and above) in EU4 and the UK
14.10Market Size of Pancreatic Cancer in Japan
14.10.1Total Market Size of Pancreatic Cancer in Japan
14.10.2Market Size of Pancreatic Cancer by Therapies in Japan
14.10.2.1Market Size of Pancreatic Cancer by Therapies (Adjuvant/Neo-adjuvant) in Japan
14.10.2.2Market Size of Pancreatic Cancer by Therapies (First-line) in Japan
14.10.2.3Market Size of Pancreatic Cancer by Therapies (Second-line and above) in Japan
15Market Access and Reimbursement
15.1Reimbursement
15.2Key HTA Decisions
15.3Patient Access Program
16KOL Views
17SWOT Analysis
18Unmet Needs
19Appendix
19.1Report Methodology
19.2Bibliography
20DelveInsight Capabilities
21Disclaimer
22About DelveInsight

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