Activity and resistance of trastuzumab according to different clinical settings
Elda Tagliabue1, Manuela Campiglio, Serenella M Pupa
1Molecular Targeting Unit, Department of Experimental Oncology and Molecular Medicine, Fondazione IRCCS Istituto Nazionale dei Tumori, Via Venezian 1, 20133 Milan, Italy. elda.tagliabue@istitutotumori.mi.it
Abstract:
Trastuzumab, a humanized monoclonal antibody directed against HER2, has shown efficacy in breast cancers; however many patients do not respond to this reagent. Here, we discuss the potential mechanisms of trastuzumab efficacy and resistance in different clinical settings as a step toward optimizing the appropriate application of this antibody. The three major antitumor mechanisms of trastuzumab, i.e., inhibition of proliferation, antibody-dependent cell cytotoxicity (ADCC) and inhibition of DNA repair, appear to be differentially operative in different clinical settings. ADCC appears to be the prevalent mechanism in trastuzumab neoadjuvant monotherapy, whereas in neoadjuvant, adjuvant or metastatic settings in which trastuzumab is combined with chemotherapy, the relative role of ADCC is probably small, considering the compromising effects of chemotherapy on the immune cells that mediate this mechanism. In neoadjuvant and adjuvant settings involving concomitant use of trastuzumab and chemotherapy, the primary mechanism at play is presumably inhibition of DNA repair by the antibody, while in sequential protocols, the antibody acts mostly by exerting cytostatic activity through inhibition of HER2-mediated tumor cell proliferation. According to the ability of the antibody to induce cytotoxic or cytostatic antitumor effects depending on the clinical setting, different criteria, i.e., RECIST for cytotoxic effect, OS, and DFS for cytostatic, must be considered in accurately estimating antibody efficacy. Moreover, since trastuzumab resistance likely depends directly on the mechanisms responsible for its antitumor activity, resistance mechanisms must also be considered with respect to the different clinical settings.
Insights
Trastuzumab
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Trastuzumab is a HER2-targeted antibody for breast cancer.
- Patient response to Trastuzumab varies, necessitating understanding of its mechanisms.
Purpose of the Study:
- To explore Trastuzumab's efficacy and resistance mechanisms in various clinical settings.
- To optimize Trastuzumab's application based on its mode of action.
Main Methods:
- Review of Trastuzumab's antitumor mechanisms: proliferation inhibition, antibody-dependent cell cytotoxicity (ADCC), and DNA repair inhibition.
- Analysis of mechanism relevance across different treatment settings (neoadjuvant, adjuvant, metastatic) and combinations (monotherapy, with chemotherapy).
Main Results:
- ADCC is key in neoadjuvant monotherapy.
- Chemotherapy combination reduces ADCC's role.
- DNA repair inhibition dominates in combined neoadjuvant/adjuvant therapy.
- Proliferation inhibition is primary in sequential therapy.
Conclusions:
- Trastuzumab's efficacy mechanisms (cytotoxic vs. cytostatic) differ by clinical setting.
- Appropriate efficacy assessment requires setting-specific criteria (RECIST, OS, DFS).
- Resistance mechanisms are linked to the operative antitumor mechanisms in each setting.
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