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RESEARCH PRODUCT
Recent Insights into the Development of Preclinical Trastuzumab- Resistant HER2+ Breast Cancer Models.
Pilar ErolesIon CristóbalFederico RojoSandra ZazoAna RoviraPaula González-alonsoAna LluchEster Martín-aparicioJoan AlbanellJuan Madoz-gúrpideCristina Chamizosubject
0301 basic medicineOncologyDrugmedicine.medical_specialtymedicine.drug_classReceptor ErbB-2medicine.medical_treatmentmedia_common.quotation_subjectBreast NeoplasmsDiseaseMonoclonal antibodyBiochemistryTargeted therapy03 medical and health sciences0302 clinical medicineBreast cancerAcquired resistanceAntineoplastic Agents ImmunologicalTrastuzumabInternal medicineCell Line TumorDrug DiscoverymedicineBiomarkers TumorAnimalsHumansskin and connective tissue diseasesneoplasmsmedia_commonPharmacologybusiness.industryOrganic ChemistryTrastuzumabmedicine.diseaseGene Expression Regulation Neoplastic030104 developmental biologyDrug Resistance Neoplasm030220 oncology & carcinogenesisMolecular MedicineFemalebusinessAdjuvantmedicine.drugdescription
Background: Overexpression and amplification of the human epidermal growth factor receptor 2 (HER2) occur in 20% of total breast carcinomas. HER2-overexpression is implicated in disease initiation and progression and associated with poor prognosis. Trastuzumab, a humanized monoclonal antibody, is the standard HER2-targeted therapy for early and metastatic HER2-amplified breast cancer patients. Trastuzumab has significantly increased clinical benefit in HER2+ metastatic and adjuvant settings; however, it is not effective for many patients due to primary or acquired resistance to the drug. During the last decade, many studies have revealed a number of novel molecular traits of HER2+ breast cancer, allowing us to uncover the molecular mechanisms involved in trastuzumab resistance and develop strategies to overcome resistance to therapy. Objective: In this review, we comprehensively addressed the current achievements in preclinical studies; we discussed molecular mechanisms of acquired trastuzumab resistance in HER2+ breast cancer models and potential therapeutic approaches based on the molecular features for HER2+ breast cancer. Conclusion: Enhanced understanding of the molecular profiles in HER2+ breast cancer may lead to the identification of novel biomarkers for the development of diagnostic approaches and improvement of therapeutic targets for the prevention and treatment of trastuzumab resistant HER2+ breast cancer.
year | journal | country | edition | language |
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2018-05-22 | Current medicinal chemistry |