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Updated: Mar 12, 2026

Assessment of Cardiac Morphological and Functional Changes in Mouse Model of Transverse Aortic Constriction by Echocardiographic Imaging
Published on: June 21, 2016
Antineoplastic-related cardiotoxicity, morphofunctional aspects in a murine model: contribution of the new tool
Carmela Coppola1, Gennaro Riccio1, Antonio Barbieri2
1Division of Cardiology, Istituto Nazionale per lo Studio e la Cura dei Tumori "Fondazione G. Pascale", IRCCS, Naples, Italy.
Objective:
Considering that global left ventricular systolic radial strain is a sensitive technique for the early detection of left ventricular dysfunction due to antineoplastics and the analysis of segmental myocardial contractility, we evaluated this technique for early detection of trastuzumab-related cardiotoxicity by comparing it with cardiac structural damage.
Methods:
Groups of six mice were injected with trastuzumab or doxorubicin, used either as single agents or in combination. Cardiac function was evaluated by transthoracic echocardiography measurements before and after treatment for 2 or 7 days, by using a Vevo 2100 high-resolution imaging system. After echocardiography, mice were euthanized, and hearts were processed for histological evaluations, such as cardiac fibrosis, apoptosis, capillary density, and inflammatory response.
Results:
Trastuzumab-related cardiotoxicity was detected early by 2D strain imaging. Radial strain was reduced after 2 days in mice treated with trastuzumab alone (21.2%±8.0% vs 40.5%±4.8% sham; P<0.01). Similarly, trastuzumab was found to induce apoptosis, capillary density reduction, and inflammatory response in cardiac tissue after 2 days of treatment, in a fashion similar to doxorubicin. On the contrary, fractional shortening reduction and cardiac fibrosis were observed only after 7 days of trastuzumab treatment, in contrast to doxorubicin treatment which induced early fibrosis and fractional shortening reduction.
Conclusion:
The reduction of left ventricular systolic strain after 2 days of trastuzumab treatment may indicate early myocardial functional damage before the reduction in left ventricular ejection fraction and this early dysfunction is well correlated with structural myocardial damage, such as apoptosis and inflammatory response. Fractional shortening reduction after 7 days of trastuzumab treatment is related to fibrosis in cardiac tissue.
Insights
Global left ventricular systolic radial strain detects early trastuzumab cardiotoxicity before ejection fraction changes. This functional damage correlates with structural changes like apoptosis and inflammation, appearing sooner than fibrosis.
Area of Science:
- Cardiology
- Oncology
- Pharmacology
Background:
- Antineoplastic agents, such as trastuzumab, can cause cardiotoxicity.
- Early detection of cardiotoxicity is crucial for patient management.
- Left ventricular systolic radial strain is a sensitive measure of myocardial function.
Purpose of the Study:
- To evaluate left ventricular systolic radial strain for early detection of trastuzumab-induced cardiotoxicity.
- To compare strain imaging findings with structural cardiac damage.
Main Methods:
- Mice received trastuzumab or doxorubicin.
- Transthoracic echocardiography with 2D strain imaging was performed before and after treatment.
- Histological analyses included fibrosis, apoptosis, capillary density, and inflammation.
Main Results:
- Trastuzumab reduced radial strain by 2 days, indicating early cardiotoxicity.
- Trastuzumab induced apoptosis, reduced capillary density, and inflammation within 2 days.
- Fractional shortening reduction and fibrosis were observed after 7 days of trastuzumab treatment.
Conclusions:
- Reduced left ventricular systolic strain detects early myocardial functional damage from trastuzumab.
- Early dysfunction correlates with structural damage (apoptosis, inflammation).
- Fractional shortening reduction after 7 days is linked to cardiac fibrosis.
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