Patient-derived three-dimensional culture techniques model tumor heterogeneity in head and neck cancer

Anuraag S. Parikh, Victoria X. Yu, Samuel Flashner, Ogoegbunam B. Okolo, Chao Lu, Brian S. Henick, Fatemeh Momen-Heravi, Sidharth V. Puram, Theodoros Teknos, Quintin Pan, Hiroshi Nakagawa

Résultat de rechercheexamen par les pairs

4 Citations (Scopus)

Résumé

Head and neck squamous cell carcinoma (HNSCC) outcomes remain stagnant, in part due to a poor understanding of HNSCC biology. The importance of tumor heterogeneity as an independent predictor of outcomes and treatment failure in HNSCC has recently come to light. With this understanding, 3D culture systems, including patient derived organoids (PDO) and organotypic culture (OTC), that capture this heterogeneity may allow for modeling and manipulation of critical subpopulations, such as p-EMT, as well as interactions between cancer cells and immune and stromal cells in the microenvironment. Here, we review work that has been done using PDO and OTC models of HNSCC, which demonstrates that these 3D culture models capture in vivo tumor heterogeneity and can be used to model tumor biology and treatment response in a way that faithfully recapitulates in vivo characteristics. As such, in vitro 3D culture models represent an important bridge between 2D monolayer culture and in vivo models such as patient derived xenografts.

Langue d'origineEnglish
Numéro d'article106330
JournalOral Oncology
Volume138
DOI
Statut de publicationPublished - mars 2023

Financement

This work was supported by NIH P01CA098101 (HN), NIH U54CA163004 (HN), NIH R01DK114436 (HN), NIH R01AA026297 (HN), NIH P30CA013696, NIH L30CA264714 (SF). The sources of funding had no impact on the design or content of this review.

Bailleurs de fondsNuméro du bailleur de fonds
National Institutes of HealthP01CA098101, L30CA264714, U54CA163004, R01DK114436, P30CA013696, R01AA026297

    ASJC Scopus Subject Areas

    • Oral Surgery
    • Oncology
    • Cancer Research

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