Literature DB >> 20943641

Treatment of HER2-overexpressing breast cancer.

J Baselga1.   

Abstract

The HER family of receptors consists of four closely related type 1 transmembrane TK receptors: HER1 (EGFR), HER2, HER3 and HER4. Signalling via the HER family of receptors underpins the majority of the intricate array of cellular activities on which cell survival and functionality depend. Aberrant HER2 expression and/or functionality have been implicated in the evolution of breast cancer and this receptor has proved to be a potent target for anticancer therapies, including antibody-based therapies to prevent ligand binding, dimer formation or the recruitment of antibody-dependent cell-mediated cytotoxicity, and direct kinase inhibition to prevent molecular activation and recruitment of downstream signalling partners. Novel strategies against HER2 include HER tyrosine kinase inhibitors, HSP90 inhibitors and antibody-chemotherapy conjugates. This latter approach is exemplified by T-DM1, a potent antibody that has a good safety profile and that has shown remarkable activity in patients with advanced disease. In addition, pertuzumab, an mAb that directly inhibits the formation of HER2 dimers including the HER2:HER3 dimer, offers a unique mechanism of HER3 inhibition. All these approaches have shown substantial clinical activity in patients refractory to trastuzumab. It is anticipated that with the increased availability of novel anti-HER2 agents together with a better understanding of the mechanisms of resistance to anti-HER2 agents we should be able to further improve the outcome of patients with HER2 breast cancer. There will also be an increasing tendency towards moving the study of these agents to earlier stages of the disease, namely in the adjuvant and neoadjuvant setting.

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Year:  2010        PMID: 20943641     DOI: 10.1093/annonc/mdq421

Source DB:  PubMed          Journal:  Ann Oncol        ISSN: 0923-7534            Impact factor:   32.976


  36 in total

1.  Medicinal chemistry for 2020.

Authors:  Seetharama D Satyanarayanajois; Ronald A Hill
Journal:  Future Med Chem       Date:  2011-10       Impact factor: 3.808

2.  Trastuzumab-Resistant HER2+ Breast Cancer Cells Retain Sensitivity to Poly (ADP-Ribose) Polymerase (PARP) Inhibition.

Authors:  Zhuo Zhang; Rajani Rajbhandari; Monica E Wielgos; Tiffiny S Cooper; Ling Zeng; Andres Forero; Francisco J Esteva; C Kent Osborne; Rachel Schiff; Albert F LoBuglio; Susan E Nozell; Eddy S Yang
Journal:  Mol Cancer Ther       Date:  2018-03-28       Impact factor: 6.261

3.  Increased gene copy number of HER2 and concordant protein overexpression found in a subset of eyelid sebaceous gland carcinoma indicate HER2 as a potential therapeutic target.

Authors:  Min Joung Lee; Namju Kim; Ho-Kyung Choung; Ji-Young Choe; Sang In Khwarg; Ji Eun Kim
Journal:  J Cancer Res Clin Oncol       Date:  2015-07-04       Impact factor: 4.553

4.  Systematically defining single-gene determinants of response to neoadjuvant chemotherapy reveals specific biomarkers.

Authors:  Agnieszka K Witkiewicz; Uthra Balaji; Erik S Knudsen
Journal:  Clin Cancer Res       Date:  2014-07-21       Impact factor: 12.531

5.  A requirement for Nedd9 in luminal progenitor cells prior to mammary tumorigenesis in MMTV-HER2/ErbB2 mice.

Authors:  J L Little; V Serzhanova; E Izumchenko; B L Egleston; E Parise; A J Klein-Szanto; G Loudon; M Shubina; S Seo; M Kurokawa; M F Ochs; E A Golemis
Journal:  Oncogene       Date:  2013-01-14       Impact factor: 9.867

Review 6.  Role of pertuzumab in the treatment of HER2-positive breast cancer.

Authors:  Michael Hubalek; Christine Brantner; Christian Marth
Journal:  Breast Cancer (Dove Med Press)       Date:  2012-05-28

7.  Trastuzumab as a preoperative monotherapy does not inhibit HER2 downstream signaling in HER2-positive breast cancer.

Authors:  Maëva Lion; Alexandre Harlé; Julia Salleron; Carole Ramacci; Mario Campone; Jean-Louis Merlin
Journal:  Oncol Lett       Date:  2016-07-20       Impact factor: 2.967

Review 8.  Synthetic oleanane triterpenoids: multifunctional drugs with a broad range of applications for prevention and treatment of chronic disease.

Authors:  Karen T Liby; Michael B Sporn
Journal:  Pharmacol Rev       Date:  2012-09-10       Impact factor: 25.468

9.  Using large-scale molecular data sets to improve breast cancer treatment.

Authors:  Chad J Creighton
Journal:  Breast Cancer Manag       Date:  2012-05-01

10.  Validation of a radiosensitivity molecular signature in breast cancer.

Authors:  Steven A Eschrich; William J Fulp; Yudi Pawitan; John A Foekens; Marcel Smid; John W M Martens; Michelle Echevarria; Vidya Kamath; Ji-Hyun Lee; Eleanor E Harris; Jonas Bergh; Javier F Torres-Roca
Journal:  Clin Cancer Res       Date:  2012-07-25       Impact factor: 12.531

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