Growth factor dependency in mammary organoids regulates ductal morphogenesis during organ regeneration

Sounak Sahu1, Mary E Albaugh1,2, Betty K Martin1,2

  • 1Mouse Cancer Genetics Program, Centre for Cancer Research, National Cancer Institute, Bldg- 560, Room 32-33, 1050 Boyles Street, Frederick, MD, 21702, USA.

Scientific Reports
|May 3, 2022
PubMed

Insights

Mammary organoids derived from adult stem cells can regenerate glands. Growth factors are crucial for mammary gland development and regeneration, with imaging tools aiding in studying this process.

Area of Science:

  • Stem cell biology
  • Developmental biology
  • Regenerative medicine

Background:

  • Signaling pathways and growth factors (GFs) are critical for stem cell fate, differentiation, and tissue repair.
  • Dysregulation of these pathways can lead to human diseases.
  • Adult stem cells offer potential for regenerative therapies.

Purpose of the Study:

  • To investigate the role of GFs in mammary organoid development and regeneration.
  • To establish and utilize advanced imaging techniques for studying mammary gland morphogenesis.
  • To explore the potential of mammary organoids as a model for tissue regeneration.

Main Methods:

  • Generation of murine mammary organoids from adult stem cells in suspension culture.
  • Utilizing a GF cocktail targeting EGF and FGF signaling pathways.
  • Employing a toolkit of in vivo (whole animal, ultrasound) and ex vivo (tissue clearing, confocal imaging) approaches.

Main Results:

  • Mammary organoids cultured with a GF cocktail recapitulated key mammary gland epithelial layers.
  • In vitro culture with individual GFs impaired organoid structure.
  • Ex vivo imaging demonstrated ductal branching after transplantation, though with fewer terminal end buds.

Conclusions:

  • Mammary organoids serve as a valuable model for studying organ regeneration and development.
  • GFs play a significant role in mammary gland morphogenesis and regeneration.
  • Advanced imaging modalities provide novel insights into in vivo mammary gland development and can aid in tumor progression monitoring.