Caris Life Sciences Exceeds 1,000 Published Studies Milestone

IRVING, Texas, Dec. 19, 2024 /PRNewswire/ -- Caris Life Sciences(® )(Caris), a leading next-generation AI TechBio company and precision medicine pioneer, proudly announced publishing more than 1,000 studies across peer-reviewed manuscripts, posters and abstracts since 2015, in collaboration with its research partners. This achievement underscores Caris' unwavering commitment to advancing the field of precision medicine and improving patient outcomes through innovative molecular science and artificial intelligence. In 2024 alone, Caris published more than 70 studies in peer-reviewed manuscripts and more than 120 posters and abstracts in collaboration with leading cancer centers, including those within the Caris Precision Oncology Alliance((TM)) (Caris POA).

"Reaching this milestone is a testament to our team's dedication to advancing science and global knowledge of cancer biology through our collaborations with leading cancer centers and research institutions," said Caris President David Spetzler, MS, PhD, MBA. "We are excited to continue pushing the boundaries of precision medicine and contributing valuable insights to the scientific community. Great science takes a team effort. The combination of clinical experts, tumor biologists and data scientists highlights the power of the Caris POA to drive innovation."

Caris' extensive work includes groundbreaking research in comprehensive molecular profiling for both tissue and blood samples, the clinical value of liquid biopsies and the identification of clonal hematopoiesis. These contributions have been published in scientific journals and presented at prestigious conferences and symposiums, highlighting Caris' role as a leader in precision oncology.

"We are honored to share our findings with the global scientific community and to collaborate with our partners to advance the understanding and treatment of cancer," said George W. Sledge, Jr., MD, EVP and Chief Medical Officer of Caris. "Our goal is to provide clinicians and patients with the highest quality information to guide personalized treatment plans and improve outcomes."

Notable scientific publications in 2024 include:

    --  Nature Cancer: Tissue-specific thresholds of mutation burden associated
        with anti-PD-1/L1 therapy benefit and prognosis in microsatellite-stable
        cancers. By leveraging the whole-exome sequencing-based TMB (tumor
        mutation burden) coupled with real-world clinical data from over 70,000
        patients, Caris and POA researchers demonstrated that TMB thresholds
        predicting anti-PD-1/L1 immunotherapies differ by cancer type, offering
        deeper insights into using TMB to guide therapy.


    --  Cancer Cell: Mutation burden and anti-PD-1 outcomes are not universally
        associated with immune cell infiltration or lymphoid activation.
        Researchers at Caris and the Caris POA explored immune profiles from
        data generated by WES and WTS, IHC and immune infiltration analysis. The
        study highlights the complexity and cancer type-specificity of immune
        markers associated with outcomes from anti-PD-1 therapies, revealing
        that TMB does not consistently correlate with immune cell infiltration
        or lymphoid activation across different malignancies, emphasizing the
        need for a multiomic approach.


    --  JCO Precision Oncology: Analysis of Concordance Between Next-Generation
        Sequencing Assessment of Microsatellite Instability and
        Immunohistochemistry-Mismatch Repair From Solid Tumors. The study
        showcases the extremely high concordance between next-generation
        sequencing-based MSI and immunohistochemistry-based MMR measurements
        across more than 190,000 patients. Importantly, NGS-MSI could detect
        certain mismatch repair deficiencies that IHC-MMR missed, and vice
        versa, highlighting the power of NGS testing.


    --  European Urology: Correlative Analysis of ATM, RB1, ERCC2, and FANCC
        Mutations and Pathologic Complete Response After Neoadjuvant
        Chemotherapy in Patients with Muscle-invasive Bladder Cancer: Results
        from the SWOG S1314 Trial. Caris' next-generation sequencing platform
        highlighted the predictive value of key gene alterations in bladder
        cancer. The results from the trial provide important insight on
        incorporating genetic profiling in cancer treatment.


    --  Journal of Clinical Investigation: Renal cell carcinoma histologic
        subtypes exhibit distinct transcriptional profiles. Caris and
        collaborators within the Caris POA used WES and WTS to identify distinct
        molecular profiles that differentiate main subtypes of RCC, highlighting
        that molecular insights from the comprehensive molecular data can guide
        individualized, histology-specific treatment strategies.
    --  Clinical Cancer Research: Clinical and Genomic Features of Classical and
        Basal Transcriptional Subtypes in Pancreatic Cancer. Utilizing WTS and
        real-world outcomes data, the study characterizes differential outcomes
        from a large cohort of more than 8,000 pancreatic cancer patients by
        classifying tumors into distinct transcriptional subtypes, which can
        serve as a strong independent predictor of outcomes.

The Caris POA is a growing network of leading cancer centers and research consortia worldwide that collaborate to advance precision oncology and biomarker-driven research. Its members work together to establish and optimize standards of care for molecular testing through innovative research to improve clinical outcomes for cancer patients.

About Caris Life Sciences

Caris Life Sciences® (Caris) is a leading next-generation AI TechBio company and precision medicine pioneer that is actively developing and delivering innovative solutions to revolutionize healthcare and improve the human condition. Through comprehensive molecular profiling (Whole Exome and Whole Transcriptome Sequencing) and the application of advanced AI and machine learning algorithms, Caris has created the large-scale, multimodal database and computing capability needed to analyze and unravel the molecular complexity of disease. This convergence of sequencing power, big data and AI technologies provides an unmatched platform to deliver the next generation of precision medicine tools for early detection, diagnosis, monitoring, therapy selection and drug development.

Caris was founded with a vision to realize the potential of precision medicine in order to improve the human condition, and we value our employees as much as we do our patients of every creed, color, sex, sexual orientation and religion. Headquartered in Irving, Texas, Caris has offices in Phoenix, New York, Cambridge (MA), Tokyo, Japan and Basel, Switzerland. Caris or its distributor partners provide services in the U.S., Europe, Asia and other international markets. To learn more, please visit CarisLifeSciences.com.

Caris Life Sciences Media Contact:
Corporate Communications
CorpComm@CarisLS.com
214.294.5606

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