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October 23, 2020Small139 citationsOpen Access

A Heart‐Breast Cancer‐on‐a‐Chip Platform for Disease Modeling and Monitoring of Cardiotoxicity Induced by Cancer Chemotherapy

JLJunmin LeeSMShreya MehrotraEZElaheh Zare‐Eelanjegh

Key Result

A dual-organ heart-breast cancer-on-a-chip platform with electrochemical immuno-aptasensors accurately monitored cell-secreted biomarkers for early detection of chemotherapy-induced cardiotoxicity.

Structured PICO

P
Population
induced pluripotent stem cell (iPSC)-derived cardiac tissues (healthy and fibrotic) interacting with breast cancer (BC) tissues on a dual-organ platform
I
Intervention
Doxorubicin (DOX) treatment and a nanoparticle-based DOX-delivery system
C
Comparator
Conventional enzyme-linked immunosorbent assay (ELISA)
O
Outcome
Biomarker production trend for early monitoring of chemotherapy-induced cardiotoxicity (CIC) and breast cancer progressionsurrogate

A novel heart-breast cancer-on-a-chip platform with immuno-aptasensors provides a highly sensitive in vitro model for early detection of doxorubicin-induced cardiotoxicity.

Abstract

Cardiotoxicity is one of the most serious side effects of cancer chemotherapy. Current approaches to monitoring of chemotherapy-induced cardiotoxicity (CIC) as well as model systems that develop in vivo or in vitro CIC platforms fail to notice early signs of CIC. Moreover, breast cancer (BC) patients with preexisting cardiac dysfunctions may lead to different incident levels of CIC. Here, a model is presented for investigating CIC where not only induced pluripotent stem cell (iPSC)-derived cardiac tissues are interacted with BC tissues on a dual-organ platform, but electrochemical immuno-aptasensors can also monitor cell-secreted multiple biomarkers. Fibrotic stages of iPSC-derived cardiac tissues are promoted with a supplement of transforming growth factor-β 1 to assess the differential functionality in healthy and fibrotic cardiac tissues after treatment with doxorubicin (DOX). The production trend of biomarkers evaluated by using the immuno-aptasensors well-matches the outcomes from conventional enzyme-linked immunosorbent assay, demonstrating the accuracy of the authors' sensing platform with much higher sensitivity and lower detection limits for early monitoring of CIC and BC progression. Furthermore, the versatility of this platform is demonstrated by applying a nanoparticle-based DOX-delivery system. The proposed platform would potentially help allow early detection and prediction of CIC in individual patients in the future.

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Cite This Study

Lee et al. (2020) studied Chemotherapy-induced cardiotoxicity and breast cancer. Heart-Breast Cancer-on-a-Chip Platform with electrochemical immuno-aptasensors vs. Conventional enzyme-linked immunosorbent assay (ELISA) was evaluated on Biomarker production trend and detection of chemotherapy-induced cardiotoxicity. A dual-organ heart-breast cancer-on-a-chip platform with electrochemical immuno-aptasensors accurately monitored cell-secreted biomarkers for early detection of chemotherapy-induced cardiotoxicity.

synapsesocial.com/papers/6a14e36d253bd9cd3ce626fahttps://doi.org/10.1002/smll.202004258
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