Patient Derived Xenograft (PDX) Models Industry Forecast 2025-2034: Market Expansion, Trends, and Competitive Landscape

 

The patient derived xenograft (PDX) models market size has grown rapidly in recent years. It will grow from $0.4 billion in 2024 to $0.47 billion in 2025 at a compound annual growth rate (CAGR) of 16.4%.  The growth in the historic period can be attributed to research & development investments, regulatory support, partnerships and collaborations, increasing number of contract research organizations (CROs), and rising number of cancer cases.

The patient derived xenograft (PDX) models market size is expected to see rapid growth in the next few years. It will grow to $0.85 billion in 2029 at a compound annual growth rate (CAGR) of 16.0%. The growth in the forecast period can be attributed to demand for personalized medicine, rising in demand for humanized PDX models, growing incidence of cancer, focus on precision oncology, and increasing R&D investment for cancer research. Major trends in the forecast period include technological developments, rising demand for humanized PDX models, collaborative research initiatives, growing investments in cancer research, and increasing focus on immuno-oncology.

 

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How have varous drivers impacted the growth of the patient derived xenograft (pdx) models market?
The demand for personalized medicine is expected to propel the growth of the patient-derived xenograft (PDX) models market going forward. Personalized medicine involves tailoring medical treatment to each patient's specific characteristics, considering factors such as genetics, environment, and lifestyle. The demand for personalized medicine is increasing due to advancements in genomic research, which enable tailored treatments based on individual genetic profiles, leading to more effective and targeted healthcare outcomes. Patient-derived xenograft (PDX) models aid personalized medicine by allowing the testing of individual patient tumors to predict treatment responses and tailor therapies accordingly. For instance, in February 2024, according to the Personalized Medicine Coalition (PMC), a US-based nonprofit umbrella organization, in 2023, the FDA approved 16 new personalized treatments for rare diseases, a significant increase from six approvals in 2022. Therefore, the demand for personalized medicine drives the patient-derived xenograft (PDX) models market growth.

What are the primary segments of the patient derived xenograft (pdx) models market?
The patient derived xenograft (PDX) models market covered in this report is segmented –
1) By Type: Mice Models, Rat Models
2) By Technique: Heterotopic Implantation, Orthotropic Implantation
3) By Tumor Type: Gastrointestinal Tumor Models, Lung Tumor Models, Hematological Tumor Models, Gynecological Tumor Models, Respiratory Tumor Models, Urological Tumor Models, Other Tumor Models
4) By Application: Preclinical Drug Development, Precision Medicine, Co-Clinical Trials, Basic Cancer Research
5) By End-User: Academic And Research Organizations, Contract Research Organizations, Pharmaceutical And Biotechnological Companies, Other End-Users

Subsegments:
1) By Mice Models: Immunodeficient Mice Models (Nude Mice, SCID Mice), Humanized Mice Models, Genetically Modified Mice Models
2) By Rat Models: Immunodeficient Rat Models, Humanized Rat Models, Genetically Modified Rat Models

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Which firms are leading the patient derived xenograft (pdx) models market?
Major companies operating in the patient derived xenograft (PDX) models market are  Laboratory Corporation of America Holdings, WuXi AppTec Co. Ltd., Charles River Laboratories International Inc., The Jackson Laboratory, Inotiv Inc, Biocytogen Pharmaceuticals Co. Ltd., Taconic Biosciences Inc, BioDuro-Sundia Inc, Horizon Discovery Ltd., Crown Bioscience Inc., Champions Oncology Inc., Oncodesign Services S.A, Genesis Biotechnology Group LLC., Creative Animodel, Abnova Corp., Certis Oncology Solutions Inc., Xentech, Aragen Bioscience Inc., EPO Experimental Pharmacology & Oncology Berlin-Buch GmbH., Urosphere, Hera BioLabs, InnoSer, Pharmatest Services Ltd., IVRS AB, Altogen Inc

How will industry trends affect the trajectory of the patient derived xenograft (pdx) models market?
Major companies operating in the patient-derived xenograft (PDX) models market are developing innovative models with in vivo bioluminescence imaging capabilities to enable real-time monitoring of tumor growth. In vivo bioluminescence imaging helps PDX models by enabling non-invasive real-time monitoring of tumor metastasis and treatment responses, enhancing the effectiveness of preclinical research in drug development. For instance, in March 2024, InVitro Research Solutions Private Limited, an India-based Contract Research Organization (CRO), launched an innovative orthotopic model of human glioblastoma in NSG-SGM3 mice by using patient-derived xenografts (PDX) and in vivo bioluminescence imaging. This model aims to enable personalized treatment of glioblastoma, the most common and aggressive type of brain cancer. These models are critical for understanding glioblastoma biology and evaluating new targeted therapies and immunotherapies to improve outcomes.

Which geographic trends are shaping the patient derived xenograft (pdx) models market, and which region has the highest market share?

North America was the largest region in the patient derived xenograft (PDX) models market in 2023. Asia-Pacific is expected to be the fastest-growing region in the forecast period. The regions covered in the patient derived xenograft (PDX) models market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa.

What Does The Patient Derived Xenograft (PDX) Models Market Report 2025 Offer?

The patient derived xenograft (pdx) models market research report from The Business Research Company offers global market size, growth rate, regional shares, competitor analysis, detailed segments, trends, and opportunities.

Patient-derived xenograft (PDX) models involve transplanting human tumor tissue into immunodeficient animal hosts. They mimic the complexity of human tumors more closely than traditional cell line models. PDX models are crucial for studying tumor biology and testing potential cancer therapies before clinical trials.

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