Establishment and characterization of canine mammary tumoroids for translational research

Antonella Raffo-Romero1, Soulaimane Aboulouard1, Emmanuel Bouchaert1,2

  • 1Université Lille, Inserm, CHU Lille, U1192, Laboratoire Protéomique, Réponse Inflammatoire Et Spectrométrie de Masse (PRISM), Lille, France.

BMC Biology
|February 4, 2023
PubMed
Abstract

Insights

Developing canine mammary tumoroids offers a promising new preclinical model for cancer research. These tumoroids accurately mimic human breast cancer, aiding in drug discovery and understanding tumor biology.

Area of Science:

  • Comparative oncology
  • Preclinical cancer modeling
  • Translational research

Background:

  • Cancer heterogeneity poses challenges for effective therapy development.
  • Current preclinical models often fail to replicate tumor microenvironment and human breast cancer biology.
  • Existing in vitro models, including mouse tumoroids, have limitations, and human cell access raises ethical concerns.

Purpose of the Study:

  • To develop a robust canine mammary tumor model using tumoroids.
  • To recapitulate tumor diversity and heterogeneity in a canine model.
  • To establish a reliable preclinical model for breast cancer research.

Main Methods:

  • Histologic, molecular, and proteomic characterization of canine mammary tumoroids.
  • Assessment of tumoroid similarity to primary tumors.
  • Drug screening using paclitaxel efficacy evaluation.
  • Evaluation of cryopreservation techniques for tumoroid biobanking.

Main Results:

  • Canine mammary tumoroids closely resemble primary tumors histologically and molecularly.
  • Paclitaxel demonstrated similar efficacy in canine and human tumoroids, validating their use in drug screening.
  • Cryopreserved tumoroids maintained key histologic and molecular features (ER, PR, HER2 expression).
  • Proteomic analysis confirmed that cryopreservation preserves molecular diversity.

Conclusions:

  • Canine mammary tumoroids are easily generated and serve as a reliable preclinical model.
  • This model aids in investigating tumorigenesis mechanisms.
  • It facilitates the development of novel treatments for both veterinary and human medicine.

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