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An Initial Evaluation of Human Plasma cMLC-1: A Potential Protein Biomarker for Trastuzumab-Induced Cardiotoxicity,
Ling Yu1,2, Read Allen3, Lin Jia1
1Division of Gastrointestinal and Oncologic Surgery, Department of Surgery, Massachusetts General Hospital, Harvard Medical School, Boston, MA, United States.
Background:
Trastuzumab is a targeted therapy for human epidermal growth factor receptor 2 (HER2)-positive breast cancer. However, trastuzumab-induced cardiotoxicity (TIC) has been reported when trastuzumab is administered to patients as a single agent or combined with anthracycline. Currently no means for detecting the early onset of TIC such as a protein biomarker is available. In this regard and based on promising results from a preliminary animal study, the potential of cardiac myosin light chain 1(cMLC-1) as a biomarker to predict TIC, screen patients for breast cancer and monitor tumor progression in breast cancer patients was evaluated.
Methods:
Archived plasma samples collected before and after trastuzumab treatment at various fixed time points from 15 HER2+ patients with or without cardiotoxicity, recently collected plasma samples from 79 breast cancer patients (40 HER2+, 39 HER2-), and 46 healthy donors were analyzed for cMLC-1 levels using an enzyme-linked immunosorbent assay (ELISA).
Results:
An elevated plasma cMLC-1 level was found to be associated with TIC in 3 out of 7 (43%) trastuzumab-treated HER2+ breast cancer patients. However, this study provided an opportunity for us to study plasma cMCL-1 levels in breast cancer patients. It was demonstrated that elevated plasma cMCL-1 is associated with breast cancer. The cutoff cMLC-1 concentration is estimated to be 44.99 ng/mL with a sensitivity of 59.49% (95%CI: 48.47%-69.63%) and specificity of 71.74% (95%CI: 57.45% -82.68%). We also found a noticeable but not significantly more elevated plasma cMCL-1 level in HER2- than in HER2+ breast cancer patients with the given sample sizes. As a result, improved sensitivity of 79.49% (95%CI: 64.47%-89.22%) with the specificity of 63.04% (95%CI:48.60%-75.48%) were obtained for cMLC-1 to predict HER2- breast cancer with the cutoff at 37.17 ng/mL. Moreover, this study determined that cMLC-1 level was significantly higher in patients with metastatic breast cancer than in patients with non-metastatic breast cancer.
Conclusions:
While the analysis of cMLC-1 levels in the plasma of a limited number of trastuzumab-treated HER2+ breast cancer patients failed to fully support its identification as a blood protein biomarker for predicting TIC, additional analyses of plasma cMLC-1 levels did significantly establish its correlations with breast cancer and disease progression. Our findings shed light on and filled, to some extent, the gap of knowledge of the potential of cMLC-1 as a blood protein biomarker for screening breast cancer and monitoring disease progression of breast cancer.
Insights
Cardiac myosin light chain 1 (cMLC-1) shows potential as a biomarker for breast cancer screening and monitoring disease progression. While not fully validated for predicting trastuzumab-induced cardiotoxicity, elevated cMLC-1 levels correlate with breast cancer presence and metastasis.
Area of Science:
- Biochemistry
- Oncology
- Cardiology
Background:
- Trastuzumab is a targeted therapy for HER2-positive breast cancer.
- Trastuzumab-induced cardiotoxicity (TIC) is a concern, with no current early detection biomarkers.
- Cardiac myosin light chain 1 (cMLC-1) was investigated as a potential biomarker.
Purpose of the Study:
- To evaluate cMLC-1 as a biomarker for predicting TIC.
- To assess cMLC-1 for screening breast cancer patients.
- To monitor tumor progression in breast cancer patients.
Main Methods:
- Plasma samples from 15 HER2+ patients (with/without cardiotoxicity), 79 breast cancer patients (HER2+ and HER2-), and 46 healthy donors were analyzed.
- Enzyme-linked immunosorbent assay (ELISA) was used to measure cMLC-1 levels.
- Statistical analysis was performed to determine correlations and predictive values.
Main Results:
- Elevated cMLC-1 was associated with TIC in 43% of patients.
- Elevated plasma cMLC-1 correlated significantly with breast cancer presence (sensitivity 59.49%, specificity 71.74% at 44.99 ng/mL).
- Higher cMLC-1 levels were observed in metastatic vs. non-metastatic breast cancer patients, and in HER2-negative breast cancer patients.
Conclusions:
- cMLC-1 shows promise as a biomarker for breast cancer screening and monitoring disease progression.
- While not fully validated for TIC prediction, cMLC-1's association with breast cancer and metastasis is significant.
- Further research is needed to fully elucidate cMLC-1's role in TIC and breast cancer management.
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