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December 3, 2024Scientific Reports3 citationsOpen Access

Exploring an novel diagnostic gene of trastuzumab-induced cardiotoxicity based on bioinformatics and machine learning

JPJixiang PeiLFLuxin FengQMQiang Mu

Key Result

Trastuzumab treatment significantly reduced left ventricular ejection fraction from 65.01% to 51.32% in mice, and bioinformatics analysis identified SLC6A6 as a key downregulated diagnostic biomarker for trastuzumab-induced cardiotoxicity.

Structured PICO

Does Trastuzumab induce cardiotoxicity associated with SLC6A6 downregulation in preclinical models?

P
Population
Bioinformatics datasets (human iPSCs and cardiomyocytes from GEO databases) and preclinical models (8-week-old female C57BL/6J mice, n=30; HL-1 and H9C2 cell lines).
I
Intervention
Trastuzumab (Tra) treatment (in mice: intraperitoneal injection 2.25 mg/kg/day, cumulative dosage 15.75 mg/kg; in cells: 1 μm for 24 h).
C
Comparator
Control (untreated or PBS carrier).
O
Outcome
Expression level of SLC6A6 and cardiac function (LVEF, LVFS) in Trastuzumab-induced cardiotoxicity models.surrogate

SLC6A6 is identified as a novel candidate diagnostic biomarker for Trastuzumab-induced cardiotoxicity through bioinformatics and validated in preclinical models.

Main Result

Absolute Event Rate: 51.32% vs 65.01%

p-value: p=<0.0001

Limitations

  • A large number of clinical trials are still needed to confirm the ability of SLC6A6 as a marker.
  • Future work should explore the expression level of SLC6A6 in the serum of different patients by collecting a large number of clinical patient serum samples.

Abstract

Trastuzumab (Tra)-induced cardiotoxicity (TIC) is a serious side effect of cancer chemotherapy, which can seriously harm the health of cancer patients. However, there is currently a lack of effective and reliable biomarkers for the early diagnosis of TIC in clinical practice. Therefore, we screened the TIC candidate diagnostic gene solute carrier family 6 member 6 (SLC6A6) by combining multi-machine learning algorithm based on bioinformatics. In addition, cross-validation showed that SLC6A6 had a consistent expression trend in multi-data-sets. To further explore the diagnostic capability of SLC6A6 in TIC, we constructed a nomogram diagnostic model based on SLC6A6 expression level, and receiver operating characteristic (ROC) curve, calibration curve and decision curve analysis proved that SLC6A6 had good diagnostic capability. In order to further verify the TIC expression of SLC6A6 in the real world, we have constructed cell and animal models. Animal experiments showed that left ventricular ejection fraction (LVEF) was significantly decreased (from 65.01 ± 3.30% and 351.32 ± 3.51%, p < 0.0001) after Tra injection, and severe cardiac function was impaired. Similarly, RT-QPCR demonstrated that SLC6A6 was significantly downregulated in Tra-treated cardiomyocytes in vitro and in vivo. Our study suggests that the differential expression of SLC6A6 in vitro and in vivo models is associated with TIC, which may be a candidate diagnostic gene for the early occurrence and development of TIC and a potential therapeutic target.

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Cite This Study

Pei et al. (2024) studied Trastuzumab-induced cardiotoxicity (n=120). Trastuzumab vs. Control (untreated/PBS) was evaluated on Left ventricular ejection fraction (LVEF) in animal model (p=<0.0001). Trastuzumab treatment significantly reduced left ventricular ejection fraction from 65.01% to 51.32% in mice, and bioinformatics analysis identified SLC6A6 as a key downregulated diagnostic biomarker for trastuzumab-induced cardiotoxicity.

synapsesocial.com/papers/6a154dcb37103a43379f8738https://doi.org/10.1038/s41598-024-81335-9
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