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Should prolactin be reconsidered as a therapeutic target in human breast cancer?

V Goffin1, P Touraine, C Pichard

  • 1INSERM Unité 344-Endocrinologie Moléculaire, Faculté de Médecine Necker, Paris, France. goffin@necker.fr

Insights

Prolactin (PRL) may drive breast cancer growth through local mammary synthesis and autocrine signaling. Targeting PRL

Area of Science:

  • Endocrinology
  • Oncology
  • Molecular Biology

Background:

  • Prolactin (PRL) was historically linked to breast cancer, but interest waned due to ineffective dopamine agonist treatments.
  • Recent findings show PRL is synthesized within the mammary gland, acting locally via autocrine/paracrine pathways.
  • This necessitates re-evaluating PRL's role in breast cancer progression and exploring novel therapeutic targets.

Purpose of the Study:

  • To explore new strategies for inhibiting the proliferative effects of prolactin on breast cancer cells.
  • To identify potential therapeutic targets at different stages of prolactin action.
  • To investigate the dual role of prolactin and its fragments in breast cancer and angiogenesis.

Main Methods:

  • Discussion of three potential therapeutic targets: mammary PRL synthesis, PRL-receptor interaction, and intracellular signaling.
  • Review of molecular events, mechanisms, and available inhibitory tools for each target level.
  • Analysis of prolactin cleavage, focusing on the anti-angiogenic PRL 16K fragment and its implications.

Main Results:

  • Prolactin's proliferative action on mammary tumor cells can be targeted at synthesis, receptor binding, or downstream signaling.
  • The anti-angiogenic fragment, PRL 16K, suggests a complex role for prolactin in tumor evolution.
  • A potential balance between intact PRL's proliferation and PRL 16K's anti-angiogenesis may influence tumor development.

Conclusions:

  • Targeting mammary PRL synthesis, receptor interaction, or signaling pathways offers novel therapeutic strategies for breast cancer.
  • The enzymatic cleavage of prolactin presents a new molecular target for breast cancer treatment.
  • Understanding the interplay between PRL and its fragments could lead to innovative anti-cancer therapies.

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