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Italian BiomemX Srl heart organ chip

NegotiableUpdate on 05/06
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Overview

The Italian BiomemX Srl heart organ chip and BiomemX heart organ chip model (Uheart) have achieved early detection of 3D QT syndrome (the main cause of drug loss) by applying precise mechanical force, uBeat The system can induce stem cells or primary cells to differentiate into more mature tissues, such as allowing cardiac muscle cells to achieve synchronous beating. Its flagship model uHeart (heart chip) is compatible with measuring key parameters such as heart rate, electrical activity, contractility, calcium processing, etc., and responds to drugs in a dose-dependent manner

Product Details

Italian BiomemX Srl heart organ chipIn 2026, Beijing Kilby Biotechnology Co., Ltd. (hereinafter referred to as "Beijing Kilby") was authorized by Italy's BiomemX Srl to become its strategic partner in China, responsible for the sales promotion and technical services of its entire product line in the Chinese market.

意大利BiomimX Srl 心脏器官芯片

Italian BiomemX Srl heart organ chip,Biomimx Heart Organ Chip Model (Uheart):

UHeart reproduced the heart tissue generated by miniature human hearts with realistic beating function, and BiomimX proprietary technology (uECG) achieved early detection of 3D QT syndrome (the main cause of drug loss) for the first time.

UHeart can measure key functions of the heart to understand changes in heart rate, structural toxicity, and electrical activity.

UHeart can indeed respond to drugs in a dose-dependent manner like the human heart, making it an ideal platform for screening drugs for cardiac toxicity and antiarrhythmic drug efficacy.

意大利BiomimX Srl 心脏器官芯片

Product Application Cases


In Vitro Mechanical Stimulation to Reproduce the Pathological Hallmarks of Human Cardiac Fibrosis on A Beating Chip and Predict The Efficacy of Drugs and Advanced Therapies
Roberta Visone, Camilla Paoletti, Alessandro Cordiale, Letizia Nicoletti, Carla Divieto, Marco Rasponi, Valeria Chiono, Paola Occhetta
Advanced Healthcare Materials, Nov 2023

doi: 10.1007/s12551-021-00841-6