Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Treatment of ErbB2 breast cancer by mitochondrial targeting

View through CrossRef
Abstract Background ErbB2 breast cancer still remains an unmet need due to primary and/or acquired resistance to current treatment strategies. MEDICA compounds consist of synthetic long-chain α,ω-dicarboxylic acids previously reported to suppress breast cancer in PyMT transgenic mice. Methods MEDICA efficacy and mode of action in the ErbB2 context was studied in ErbB2 transgenic mice and human breast cancer cells. Results MEDICA treatment is shown here to suppress ErbB2 breast tumors and lung metastasis in ErbB2/neu MMTV transgenic mice, to suppress ErbB2/neu xenografts in nod/scid mice, and to suppress survival of AU565 and BT474 human ErbB2 breast cancer cells. Suppression of ErbB2 breast tumors by MEDICA is due to lipid raft disruption with loss of ErbB family members, including EGFR, ErbB2, and ErbB3. In addition, MEDICA inhibits mTORC1 activity, independently of abrogating the ErbB receptors and their signaling cascades. The double hit of MEDICA in abrogating ErbB and mTORC1 is partly accounted for by targeting mitochondria complex I. Conclusions Mitochondrial targeting by MEDICA suppresses ErbB2 breast tumors and metastasis due to lipid raft disruption and inhibition of mTORC1 activity. Inhibition of mTORC1 activity by MEDICA avoids the resistance acquired by canonical mTORC1 inhibitors like rapalogs or mTOR kinase inhibitors.
Title: Treatment of ErbB2 breast cancer by mitochondrial targeting
Description:
Abstract Background ErbB2 breast cancer still remains an unmet need due to primary and/or acquired resistance to current treatment strategies.
MEDICA compounds consist of synthetic long-chain α,ω-dicarboxylic acids previously reported to suppress breast cancer in PyMT transgenic mice.
Methods MEDICA efficacy and mode of action in the ErbB2 context was studied in ErbB2 transgenic mice and human breast cancer cells.
Results MEDICA treatment is shown here to suppress ErbB2 breast tumors and lung metastasis in ErbB2/neu MMTV transgenic mice, to suppress ErbB2/neu xenografts in nod/scid mice, and to suppress survival of AU565 and BT474 human ErbB2 breast cancer cells.
Suppression of ErbB2 breast tumors by MEDICA is due to lipid raft disruption with loss of ErbB family members, including EGFR, ErbB2, and ErbB3.
In addition, MEDICA inhibits mTORC1 activity, independently of abrogating the ErbB receptors and their signaling cascades.
The double hit of MEDICA in abrogating ErbB and mTORC1 is partly accounted for by targeting mitochondria complex I.
Conclusions Mitochondrial targeting by MEDICA suppresses ErbB2 breast tumors and metastasis due to lipid raft disruption and inhibition of mTORC1 activity.
Inhibition of mTORC1 activity by MEDICA avoids the resistance acquired by canonical mTORC1 inhibitors like rapalogs or mTOR kinase inhibitors.

Related Results

Coexisting Granulomatous Mastitis and Breast Cancer: A Systematic Review
Coexisting Granulomatous Mastitis and Breast Cancer: A Systematic Review
Abstract Introduction: Granulomatous mastitis (GM) is a rare inflammatory breast disease that mimics carcinoma. GM can coexist with breast cancer (BC), though the relationship rema...
Breast Carcinoma within Fibroadenoma: A Systematic Review
Breast Carcinoma within Fibroadenoma: A Systematic Review
Abstract Introduction Fibroadenoma is the most common benign breast lesion; however, it carries a potential risk of malignant transformation. This systematic review provides an ove...
Abstract 1824: Hypoxia induces lapatinib resistance in ErbB2-positive breast cancer cells via regulation of DUSP2
Abstract 1824: Hypoxia induces lapatinib resistance in ErbB2-positive breast cancer cells via regulation of DUSP2
Abstract Breast cancer is one of the most common cancers among women. Many factors are associated with this disease including overexpression/amplification of the tyr...
Abstract 1823: Novel regulation of Jagged1 by ErbB2 in breast cancer: implications for anti-ErbB2 therapy
Abstract 1823: Novel regulation of Jagged1 by ErbB2 in breast cancer: implications for anti-ErbB2 therapy
Abstract We have demonstrated that Notch1 is required for trastuzumab resistance in ErbB2 positive breast cancer. This indicates that ErbB2 suppresses Notch1 in brea...
Desmoid-Type Fibromatosis of The Breast: A Case Series
Desmoid-Type Fibromatosis of The Breast: A Case Series
Abstract IntroductionDesmoid-type fibromatosis (DTF), also called aggressive fibromatosis, is a rare, benign, locally aggressive condition. Mammary DTF originates from fibroblasts ...
Abstract 1331: The BK5.erbB2 mouse as a novel model of esophageal adenocarcinoma
Abstract 1331: The BK5.erbB2 mouse as a novel model of esophageal adenocarcinoma
Abstract The incidence of esophageal adenocarcinoma (EAC) is rising rapidly throughout the Western world, and is associated with gastroesophageal reflux disease (GER...
ERBB2 activation leads to an anti-oncogenic signalling
ERBB2 activation leads to an anti-oncogenic signalling
Approximately 20% of breast cancers display ERBB2 (HER2) gene amplification and/or protein overexpression. In cancer cells, ERBB2 can function both in the homodimeric and het- erod...
Abstract P3-14-14: Activation of SRC and MAPK Mediates Resistance to Lapatinib in ER-/ERBB2+ Breast Cancer
Abstract P3-14-14: Activation of SRC and MAPK Mediates Resistance to Lapatinib in ER-/ERBB2+ Breast Cancer
Abstract Background Resistance to lapatinib represents a significant problem in the treatment of ERBB2+ breast cancer, especially after failure of pri...

Back to Top