Acetylcholine-loaded nanoparticles protect against doxorubicin-induced toxicity inin vitrocardiac spheroids.

IF 8.2 2区 医学 Q1 ENGINEERING, BIOMEDICAL Biofabrication Pub Date : 2025-02-18 DOI:10.1088/1758-5090/adb7c2
Clara Liu Chung Ming, Runali Patil, Ahmed Refaat, Sean Lal, Xiaowei Wang, Carmine Gentile
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引用次数: 0

Abstract

Doxorubicin (DOX) is widely used in chemotherapy, yet it significantly contributes to heart failure-associated death. Acetylcholine (ACh) is cardioprotective by enhancing heart rate variability and reducing mitochondrial dysfunction and inflammation. Nonetheless, the protective role of ACh in countering DOX-induced cardiotoxicity (DIC) remains underexplored as current approaches to increasing ACh levels are invasive and unsafe for patients. In this study, we explore the protective effects of ACh against DIC through three distinct ACh administration strategies: i) freely-suspended 100µM ACh; ii) ACh-producing cholinergic neurons (CNs); or iii) ACh-loaded nanoparticles (ACh-NPs). These are tested inin vitrocardiac spheroids (CSs), which have previously been shown to approximate the complex DIC. We assess ACh's protective effects by measuring the toxicity ratio (cell death/viability), contractile activity, gene expression changes via qPCR and nitric oxide (NO) signaling. Our findings show that ACh effectively attenuates DOX-induced cell death and contractile dysfunction. ACh also counteracts the DOX-induced downregulation of genes controlling myocardial fibrosis, endothelial and cardiomyocyte dysfunction, and autonomic dysregulation. ACh cardioprotection against DOX is dependent on NO signaling in endothelial cells but not in cardiac myocytes or fibroblasts. Altogether, this study shows for the first time that elevating ACh levels showed a promising therapeutic approach for preventing DIC.

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来源期刊
Biofabrication
Biofabrication ENGINEERING, BIOMEDICAL-MATERIALS SCIENCE, BIOMATERIALS
CiteScore
17.40
自引率
3.30%
发文量
118
审稿时长
2 months
期刊介绍: Biofabrication is dedicated to advancing cutting-edge research on the utilization of cells, proteins, biological materials, and biomaterials as fundamental components for the construction of biological systems and/or therapeutic products. Additionally, it proudly serves as the official journal of the International Society for Biofabrication (ISBF).
期刊最新文献
Advancing regenerative medicine: the Aceman System's pioneering automation and machine learning in mesenchymal stem cell biofabrication. Incorporating biomechanics as a key evaluation metric for organoids. Valorization of crop by-products into bio-based dental materials: advancements and prospects. Acetylcholine-loaded nanoparticles protect against doxorubicin-induced toxicity inin vitrocardiac spheroids. Advances in biofabrication and simulation strategies for gut-on-a-chip.
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