Antimicrobial resistance (AMR) has been identified as one of the greatest threats to public health. According to the Centers of Disease Control and Prevention, more than 2.8 million cases of AMR infections are identified in the United States on an annual basis, leading to death of more than 35,000 people. Further, World Health Organization (WHO) has estimated that, by 2050, the increasing burden of such infections is expected to increase the healthcare expenditure by USD 1.2 trillion, annually. To address this situation, WHO has developed a global action plan for raising public awareness, reducing the incidence of infections, and optimizing the use of antimicrobial drugs, paving the way for the development of alternative anti-infectious modalities. One such example of these modalities includes bacteriophage therapies. These therapeutics have been used in healthcare for over a century, providing an alternative approach to target the disease-causing multi-drug resistant bacteria; however, their use has been limited. With the growing need for therapies targeting AMR infections, bacteriophage therapy are now gaining more traction. These therapeutics tend to cause minimal drug toxicity, replicate themselves at the site of action, have reduced side-effects, and have the potential to self-decompose when the infection causing bacteria have been exterminated.
Given the afore-mentioned advantages of bacteriophage therapy and promising insights from the ongoing research, various clinical trials have been registered for the clinical evaluation of bacteriophage therapies. In fact, with the widespread participation of stakeholders in the research and development of bacteriophage therapy, clinical studies evaluating bacteriophage therapy have increased at a growth rate of more than 30% over the last few years. Moreover, the volume of affiliated scientific literature (2,200+ related publications since 2018) has also increased, demonstrating the growing popularity of bacteriophage therapy and related technologies. Given the encouraging results, this domain has piqued the interest of many private and public investors who have invested more than USD 1 billion over the last few years. With increasing R&D efforts, promising clinical data, and financial support from investors, we anticipate the bacteriophage therapy market to witness notable growth in the mid to long term.
Scope of the Report
The “bacteriophage therapy Market - Distribution by Therapeutic Area (Infectious Diseases, Oncological Disorders, and Other Disorders), Route of Administration (Oral, Topical, Rectal and Intravenous), and Geography (North America, Europe and Asia-Pacific): Industry Trends and Global Forecasts, 2022-2035” report features an extensive study on the current market landscape, offering an informed opinion on the likely evolution and future opportunities associated with the bacteriophage therapy market. The study underlines an in-depth analysis, highlighting the key drivers and the market trends related to this evolving segment of the pharmaceutical industry. Amongst other elements, the report includes:
- A summary of the key insights from the bacteriophage therapy market. It offers a high-level view on the current state of the market and its likely evolution in the mid to long term.
- A general overview of the historical evolution of bacteriophages and their biology. It also includes a detailed discussion on applications of bacteriophage therapy. The chapter concludes with a discussion on the various advantages and limitations associated with the bacteriophage therapy.
- A detailed overview of the overall market landscape of bacteriophage therapy, including information on their current status of development (marketed, clinical, preclinical and discovery), key therapeutic areas (infectious diseases, oncological disorders, and other disorders), type of bacterial strain (Pseudomonas aeruginosa, Escherichia coli, Staphylococcus aureus, Klebsiella pneumoniae, Salmonella, Streptococcus, Acinetobacter baumannii and others), target disease indication (lung infection, bone infection, urinary tract infection, gastrointestinal infection, bacterial infection, blood infection, other disorders, and multiple infections), type of therapy (monotherapy, combination therapy, and both), route of administration (oral route, topical route, rectal route and intravenous route), and information on bacteriophage related technologies.
- An overview of the current status of the market with respect to the players engaged in the manufacturing of bacteriophage therapy, featuring information on the year of establishment, company size, location of headquarters, and leading developers.
- Elaborate profiles of the prominent players engaged in the development of bacteriophage therapy (shortlisted based on the number of drugs progressed to advanced phases of development). Each profile features a brief overview of the company, its financial information (if available), details on its product portfolio, and a section on recent developments and an informed future outlook.
- An in-depth analysis of completed, ongoing and planned clinical studies, based on several relevant parameters, such as trial registration year, trial phase, enrolled patient population, study design, type of sponsor / collaborator, most active players (in terms of number of registered trials), registered trials, and geographical region (by number of registered trials and number of enrolled patient population).
- An in-depth analysis of the various patents that have been filed / granted related to bacteriophage therapy. It includes information on key parameters, such as type of patent (granted patents, patent applications and others), publication year, application year, number of granted patents and patent applications, geographical distribution, Cooperative Patent Classification (CPC) symbols, and type of applicant. It also highlights the leading industry and non-industry players and individual assignees (in terms of number of patents filed / granted).
- An in-depth analysis of various publications for bacteriophage therapy, based on several relevant parameters, such as year of publication, type of article, popular keywords, most popular publishers (in terms of number of publications), key journals (in terms of number of articles published and journal impact factor). It also highlights benchmarking of the publications to develop more insightful opinions on the recent trends related to research and development in this area.
- A detailed study of the various grants that have been awarded to research institutes engaged in projects related to bacteriophage therapy, since 2017, highlighting various important parameters, such as year of award, amount awarded, funding institute, support period, grant type, purpose of grant, focus area, type of recipient organization, and leading recipient organizations.
- An in-depth analysis of the investments made, including grants, venture capital financing, initial public offering, secondary offering, private placement, equity and debt funding, at various stages of development, in companies that are focused on developing bacteriophage therapy.
- A detailed study of the recent collaborations and partnership established in this domain since 2017, including the details of deals that were / are focused on the development of bacteriophage therapy, which were analyzed based on several parameters such as year of partnership, type of partnership (research and development agreement, product development agreement, licensing agreement, merger / acquisition, commercialization agreement, manufacturing agreement, clinical trial agreement, supply agreement, distribution agreement and other agreement), therapeutic area (infectious diseases, hepatological disorders, chronic inflammatory disorders, skin disorders and women’s health), application areas (human health, animal health, diagnostic test, aquaculture, food safety, food safety and environment protection and livestock farming), and regional distribution of partnerships.
- An analysis of the various start-ups engaged in the development of bacteriophage therapy, based on relevant parameters, such as pipeline strength, pipeline maturity, indication diversity, number of patents, financial support and partnership activity
One of the key objectives of the report was to estimate the current market size and potential growth opportunities, over the coming 13 years. Based on various parameters, such as target patient population, region specific adoption rates, and the likely selling price of such therapeutic products, we have provided informed estimates on the evolution of the market in the short to mid-term and long term, for the period 2022-2035. In order to evaluate the current and future opportunity associated with the bacteriophage therapy market, our year-wise projections have been segmented based on several relevant parameters such as, target therapeutic area (infectious diseases, oncological disorders, and other disorders), route of administration (oral, topical, rectal and intravenous), and geographical region (North America, Europe, Asia Pacific, and rest of the world). In order to account for future uncertainties and to add robustness to our model, we have provided three forecast scenarios, namely conservative, base and optimistic scenarios, representing different tracks of the market’s evolution.
The opinions and insights presented in the report were influenced by discussions held with senior stakeholders in the industry.
The report features detailed transcripts of interviews held with the following industry stakeholders:
- Antoine Culot (Chief Executive Officer, Rime Bioinformatics)
- Iddo Weiner (Senior Director, Head of Data-Science, BiomX)
- Mathieu Medina (Project Leader, Hospices Civils De Lyon)
- Mohammadreza Azizkhani (Independent Consultant)
All actual figures have been sourced and analysed from publicly available information forums and primary research discussions. Financial figures mentioned in this report are in USD, unless otherwise specified.
Key Questions Answered
- Who are the leading players engaged in the development of bacteriophage therapy?
- What are the various bacteriophage therapy candidates in the current development pipeline?
- Which geographies are the most active in conducting clinical trials related to bacteriophage therapy?
- What is the focus area of various publications related to bacteriophage therapy?
- Which partnership models are commonly adopted by industry and non-industry stakeholders?
- What are the different initiatives undertaken by start-ups for the development of bacteriophage therapy in the recent past?
- How is the current and future market opportunity, likely to be distributed across key market segments?
Table of Contents
Companies Mentioned (Partial List)
A selection of companies mentioned in this report includes, but is not limited to:
- AB Agri
- Adaptive Phage Therapeutics (APT)
- AmpliPhi Biosciences
- AnimalBiome
- Antibacterial Resistance Leadership Group (ARLG)
- Aquatic Biologicals
- Armata Pharmaceuticals
- Assistance Publique - Hôpitaux de Paris (AP-HP)
- Balgrist University Hospital
- Biomedical Advanced Research and Development Authority
- BiomX
- BioNTech
- C3J Therapeutics
- CARB-X
- ContraFect
- Cornell University
- Cystic Fibrosis Foundation
- Cytophage Technologies
- DuPont Animal Nutrition (now a part of International Flavors & Fragrances (IFF))
- Eliava BioPreparations
- Eliava Foundation
- Eligo Bioscience
- EnBiotix (now known as Spexis)
- EpiBiome
- Felix Biotechnology
- FERRING BV
- Ferring Pharmaceuticals
- Georgia Institute of Technology
- GlaxoSmithKline
- Hôpital de la Croix Rousse
- Hospices Civils de Lyon
- IDbyDNA
- Hirszfeld Institute of Immunology and Experimental Therapy
- Intralytix
- Janssen
- Johnson & Johnson
- JSR
- Locus Biosciences
- L'Oréal
- Maruho
- Massachusetts Institute of Technology
- Mayo Clinic
- Merck
- Michael E. DeBakey Veterans Affairs Medical Center
- Micreos
- Microgen
- MicroPhage
- National Cancer Institute (NCI)
- National Institute of Allergy and Infectious Disease
- Navarrabiomed
- Oyster Point Pharma
- Passport Food Safety Solutions (acquired by Church & Dwight)
- Pasteur Institute
- Phagelux
- PhagePro
- PhagoMed
- Pherecydes Pharma
- Phico Therapeutics
- Polyphor
- Proteon Pharmaceuticals
- Purdue University
- Rigshospitalet
- RondinX
- Sciphage
- Sensei Biotherapeutics
- Skretting
- SNIPR Biome
- Southwest Regional Wound Care Center
- Stanford University
- SyntBioLab
- Synthetic Genomics
- TechnoPhage
- Telum Therapeutics
- TFF Pharmaceuticals
- The Rockefeller University
- The University of Sydney
- The Westmead Institute for Medical Research
- The Combat Capabilities Development Command Soldier Center (CCDC SC)
- United States Department of Defense
- United States Department of Veterans Affairs
- University Hospital of Montpellier
- University of California
- University of Pittsburgh
- University of Washington
- Walter Reed Army Institute of Research (WRAIR)
- Yale University
Methodology
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