DNA Damage Response Market: Industry Trends and Global Forecasts - Distribution by Target Disease Indication, Therapeutic Area, Target Molecule, Type of Molecule, Route of Administration, and Key Geographical Regions
As per Roots Analysis, the global DNA damage response market valued at USD 13 million in the current year is anticipated to grow at a lucrative CAGR during the forecast period.
The market sizing and opportunity analysis has been segmented across the following parameters:
Target Disease Indication
Acute Myeloid Leukemias
COVID-19
Diabetic Macular Edemas
Mesotheliomas
Myelodysplastic Syndromes
Non-Squamous Non-Small Cell Lung Cancers
Prostate Cancers
Uterine Serous Carcinomas
Therapeutic Area
Hematological Malignancies
Solid Tumors
Other Disorders
Target Molecule
APE1/Ref-1
Casein Kinase 2
CHK-1
C-Tak
DHODH
MAPKAPK2
p53
WEE 1
Type of Molecule
Biologics
Small Molecule
Route of Administration
Oral Drugs
Intravenous Drugs
Key Geographical Regions
North America (US and Canada)
Europe (Denmark, France, Germany, Italy, Spain and UK)
Asia-Pacific (Australia, Singapore and South Korea)
GLOBAL DNA DAMAGE RESPONSE MARKET: GROWTH AND TRENDS
The DNA damage response (DDR) consists of a coordinated network of pathways that not only facilitate the repair of DNA lesions but also activate cell cycle checkpoints. This leads to cell cycle arrest at critical stages in order to maintain the overall genomic integrity. Notably, if the damage is irreparable, this intricate system ensures that cells either repair their genetic material before undergoing division or facilitate programmed cell death to prevent the propagation of mutations. Further, its high specificity and sensitivity to conventional therapies, and low off-target toxicity have made DDR a promising therapeutic target for a broad range of clinical conditions, including both oncological and non-oncological diseases. Consequently, researchers worldwide are developing DDR inhibitors to counter DDR-mediated resistance to DNA-damaging anticancer therapies and to exploit DDR dysfunction in cancer by targeting alternative pathways.
It is worth mentioning that four poly-ADP ribose polymerase (PARP) inhibitor drugs, which target the DNA damage repair process, are currently approved for advanced-stage cancer treatment. Additionally, drug developers worldwide are investigating other molecular targets within the DNA damage response pathway, including ATM, ATR, CHK1, and WEE1.
GLOBAL DNA DAMAGE RESPONSE MARKET: KEY INSIGHTS
The report delves into the current state of global DNA damage response market and identifies potential growth opportunities within industry. Some key findings from the report include:
Presently, close to 45 companies are engaged in the development of DNA damage response (DDR) targeting therapeutics in order to treat a range of clinical conditions.
Majority of pipeline drug candidates are in the early phases of development; these are predominantly designed to target epitopes on biological molecules that are a characteristic of various oncological disorders.
The preclinical pipeline of DDR targeting therapeutics is substantial and growing; majority of these drug candidates (over 75%) are small molecules.
Over 70% of drug candidates targeting ATR are in clinical trials and around 55% of such interventions are designed for oral administration.
About 65% of DDR targeting drugs intended to treat solid tumors have already demonstrated preclinical proof of concept.
Since 2010, over 220 clinical trials have been registered to evaluate the efficacy of DDR targeting therapies; average completion time for such studies was relatively less in Asia-Pacific.
Innovation in this field is evident across the plethora of scientific articles published in prestigious journals; the current focus appears to be on identification of novel targets, specifically against different types of cancers.
The number of publications in this domain has increased significantly in the past one year; around 30% of the articles have been published since 2021.
Published articles / papers indicate that the focus of current research activity is on target molecules, such as ATR, ADP, ATR and HSP.
There has been an evident increase in research focused on DDR targeting therapies against cancers, such as leukemia, lung and ovarian cancers.
Several parameters, ranging from initial stages of development to launch of the drug, influence the pricing and adoption rates; developers must consider the combination of all these factors to survive the competition.
In pursuit of a competitive edge and the successful establishment of a large consumer base, it is imperative for innovators to understand both direct and indirect influences on the adoption and pricing of their respective products.
Considering the promising development pipeline of therapies and encouraging clinical research outcomes, the DDR targeting therapeutics market is anticipated to grow at a significant annualized till 2035.
The projected market opportunity is likely to be well-distributed across different target disease indications, routes of administration and key geographical regions.
Example Players in the DNA Damage Response Market
Aprea Therapeutics
AstraZeneca
Chordia Therapeutics
Mission Therapeutics
Repare Therapeutics
Senhwa Biosciences
GLOBAL DNA DAMAGE RESPONSE MARKET
Market Sizing and Opportunity Analysis: The report features an in-depth analysis of the global DNA damage response market, focusing on key market segments, including [A] target disease indication, [B] therapeutic area, [C] target molecule, [D] type of molecule, [E] route of administration and [F] key geographical regions.
Market Landscape: A comprehensive evaluation of DNA damage response targeting therapeutics, considering various parameters, such as [A] phase of development, [B] target disease indication(s), [C] therapeutic area, [D] target molecule, [E] type of molecule, [F] type of therapy, [G] dosage form, [H] route of administration and [I] special drug designation awarded (if any). Additionally, a comprehensive evaluation of the companies engaged in development of DNA damage response targeting therapeutics, based on [A] year of establishment, [B] company size (in terms of employee count) and [C] location of respective headquarters.
Key Insights: An insightful analysis of contemporary market trends that have been depicted using four schematic representations, including [A] a bubble analysis comparing the leading players engaged in DNA damage response market, [B] an analysis of DNA damage response targeting therapeutics developers, based on their target therapeutic area and company size, [C] a detailed analysis highlighting the regional distribution of developers engaged in DNA damage response market, and [D] a comprehensive analysis illustrating the distribution of DNA damage response targeting therapeutics.
Company Profiles: In-depth profiles of companies engaged in the development of DNA damage response targeting therapeutics, focusing on [A] company overview, [B] details related to its respective drug candidates and [C] recent developments and an informed future outlook.
Clinical Trial Analysis: An in-depth analysis of more than 250 completed, ongoing and planned clinical studies of various DNA damage response targeting therapeutics, based on various relevant parameters, such as [A] trial registration year, [B] number of patients enrolled, [C] gender of patients enrolled, [D] trial phase, [E] recruitment status and study design, leading [F] sponsors / collaborators and leading players (in terms of number of trials conducted), [G] type of organization, [H] popular therapeutic areas and [I] regional distribution of trials.
Publication Analysis: An insightful analysis of more than 150 peer-reviewed scientific articles related to DNA damage response targeting therapeutics, based on [A] year of publication, [B] type of publication, [C] key research hubs, [D] most popular authors, [E] provision of grant awarded, [F] target molecule, and [G] most popular journals.
KEY QUESTIONS ANSWERED IN THIS REPORT
How many companies are currently engaged in this market?
Which are the leading companies in this market?
What factors are likely to influence the evolution of this market?
What is the current and future market size?
What is the CAGR of this market?
How is the current and future market opportunity likely to be distributed across key market segments?
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