Related Experiment Videos
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
Abstract:
Although prolactin (PRL) has been long suspected to be involved in the progression of human breast cancer, the failure of clinical improvement by treatment with dopamine agonists, which lower circulating levels of PRL, rapidly reduced the interest of oncologists concerning a potential role of this pituitary hormone in the development of breast cancer. Within the last few years, however, several studies reported first, that PRL is also synthesized in the mammary gland, and second that it exerts its proliferative action in an autocrine/paracrine manner. These observations have led to a reconsideration of the role of PRL as an active participant in breast cancer and are an impetus to search for alternative strategies aimed at inhibiting the proliferative effects of PRL on tumor mammary cells. In this report, we discuss the three possible levels that can be targeted for this purpose: the mammary synthesis of PRL, the interaction of the hormone with its receptor at the surface of mammary cells, and the intracellular signaling cascades triggered by the activated receptor. For each of these steps, we discuss the molecular event(s) that can be targeted, our understanding of the mechanisms involving these putative targets as well as the tools currently available for their inhibition. Besides its proliferative effect, PRL is also involved in the control of angiogenesis through one of its cleaved fragments, named PRL 16K, which has been shown to inhibit the angiogenic process. In view of this biological activity, we discuss first the cleavage of PRL with respect to the human mammary gland and, second, the hypothesis speculating that a balance between the proliferative effect of intact PRL and the anti-angiogenic activity of its 16K-like fragments might be physiologically relevant in the evolution of mammary tumors. If true, our hypothesis would suggest that the enzymatic cleavage of PRL could represent a new molecular target in the search for alternative strategies in the treatment of breast cancer.
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.