Javascript must be enabled to continue!
Sensitivity to DNA Damage Is a Common Component of Hormone-Based Strategies for Protection of the Mammary Gland
View through CrossRef
AbstractAn early full-term pregnancy significantly reduces the risk of getting breast cancer in women. In animals, this protection can be mimicked by a short-term exposure to physiologic doses of estrogen plus progesterone. Sensitization of p53 and up-regulation of transforming growth factor β are believed to be important aspects of the mechanism by which protection is imparted. Little is known, however, about the use of this pathway in response to other chemopreventive agents. In this article, we investigated the ability of retinoids, such as 9-cis retinoic acid, all-trans retinoic acid, and N-4-hydroxyphenylretinamide (4-HPR), to sensitize the ductal epithelial cells of virgin mammary glands to DNA damage responses. Using a whole-organ culture system, we observed enhanced cell death in response to γ-irradiation in the virgin tissues treated with retinoids for 72 hours. These retinoids were partially dependent on p53 and transforming growth factor β to exert their radiosensitizing effects. However, 4-HPR seemed to sensitize other cells or activate these pathways in a different manner as costimulation with ovarian hormones and 4-HPR was additive, whereas coculture of ovarian hormones and the natural retinoids did not increase amount of death. Taken together, these data suggest that sensitization of the mammary epithelium to p53-dependent apoptosis is a common pathway, which is engaged by retinoids as well as ovarian hormones.
American Association for Cancer Research (AACR)
Title: Sensitivity to DNA Damage Is a Common Component of Hormone-Based Strategies for Protection of the Mammary Gland
Description:
AbstractAn early full-term pregnancy significantly reduces the risk of getting breast cancer in women.
In animals, this protection can be mimicked by a short-term exposure to physiologic doses of estrogen plus progesterone.
Sensitization of p53 and up-regulation of transforming growth factor β are believed to be important aspects of the mechanism by which protection is imparted.
Little is known, however, about the use of this pathway in response to other chemopreventive agents.
In this article, we investigated the ability of retinoids, such as 9-cis retinoic acid, all-trans retinoic acid, and N-4-hydroxyphenylretinamide (4-HPR), to sensitize the ductal epithelial cells of virgin mammary glands to DNA damage responses.
Using a whole-organ culture system, we observed enhanced cell death in response to γ-irradiation in the virgin tissues treated with retinoids for 72 hours.
These retinoids were partially dependent on p53 and transforming growth factor β to exert their radiosensitizing effects.
However, 4-HPR seemed to sensitize other cells or activate these pathways in a different manner as costimulation with ovarian hormones and 4-HPR was additive, whereas coculture of ovarian hormones and the natural retinoids did not increase amount of death.
Taken together, these data suggest that sensitization of the mammary epithelium to p53-dependent apoptosis is a common pathway, which is engaged by retinoids as well as ovarian hormones.
Related Results
Investigations into the puerperium of Beagle-breed female dogs
Investigations into the puerperium of Beagle-breed female dogs
The present thesis focusses on the study of the puerperium of female dogs, with the general objective to increase available knowledge regarding the puerperium of that species and t...
Embryonic Mammary Gland Development
Embryonic Mammary Gland Development
AbstractMammary glands are derived from the ectoderm and are a defining feature of mammals. The number of glands that develop along the ‘mammary lines’ on either side of the ventra...
Abstract LB-009: Collagen regulation in postpartum mammary gland involution, a novel breast cancer prevention target
Abstract LB-009: Collagen regulation in postpartum mammary gland involution, a novel breast cancer prevention target
Abstract
Collagen is the most abundant extracellular protein in breast tissue and plays a critical role in breast cancer progression. Intravital imaging shows collag...
An entire functional mammary gland may comprise the progeny from a single cell
An entire functional mammary gland may comprise the progeny from a single cell
ABSTRACT
Any epithelial portion of a normal mouse mammary gland can reproduce an entire functional gland when transplanted into an epithelium-free mammary fat pad. M...
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Abstract
Background: Age-associated epigenetic alteration is the underlying cause of DNA damage in aging cells. Two types of youth-associated DNA-protection epigenetic mark...
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Introduction: The United States currently faces two opioid crises, an evolved crisis currently manifesting as widespread abuse of illicit opioids, and a crisis in pain management l...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Abstract A05: Deep immunofluorescence imaging of solvent-cleared mouse mammary glands
Abstract A05: Deep immunofluorescence imaging of solvent-cleared mouse mammary glands
Abstract
We seek to trace the progression of epithelial lesions originating from Lgr5+ cells in mouse mammary glands using the 3DISCO protocol for solvent-cleared ti...

