PEER-REVIEWED PUBLICATION

2025

A non-glutaraldehyde synergistic crosslinking and modification strategy for functionalized pericardial biomaterials via ATRP for bioprosthetic heart valves

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Pu H, Yu T, et al.

Journal of Materials Chemistry B

Sichuan University, Ya'an People's Hospital, Chinese Academy of Medical Sciences, Tianfu Jincheng Laboratory, Fuwai Yunnan Cardiovascular Hospital

RESEARCH SUMMARY
This study introduces a novel, non-glutaraldehyde crosslinking and surface functionalization method for decellularized porcine pericardium (D-PP) using atom transfer radical polymerization (ATRP). The approach yields a synergistically crosslinked and functionalized pericardial biomaterial (PT-BS-PP) with improved mechanical strength, biocompatibility, and anti-calcification properties compared to glutaraldehyde-treated controls. The PT-BS-PP scaffolds demonstrated reduced immune response, enhanced endothelialization, and superior hemocompatibility in vitro and in vivo. This glutaraldehyde-free ATRP-based modification represents a significant advancement toward safer, longer-lasting bioprosthetic heart valve materials.
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CELLSCALE INSTRUMENT USED

BioTester

Uniaxial tensile testing was performed using a CellScale BioTester 5000 to measure the mechanical strength of decellularized and crosslinked pericardial strips. Samples were elongated at a rate of 12.5 mm/min until rupture to determine ultimate tensile strength, strain at break, and Young’s modulus. The BioTester provided consistent data confirming that ATRP crosslinking significantly enhanced the tensile performance of the pericardial biomaterials without compromising elasticity.
AUTHORS

Hongxia Pu, Tao Yu, Canyu Wang, Zhizhuo Zhou, Da Zhu, Gaocan Li, Qinsheng Hu, Yunbing Wang.

PUBLICATION DETAILS
JOURNAL

Journal of Materials Chemistry B

YEAR

2025

INSTITUTIONS

Sichuan University, Ya'an People's Hospital, Chinese Academy of Medical Sciences, Tianfu Jincheng Laboratory, Fuwai Yunnan Cardiovascular Hospital

COUNTRIES

China

INSTRUMENT USED

BioTester

TESTING METHODS

Tensile Testing

RESEARCH APPLICATIONS

Cardiac Tissue Engineering & MechanicsECM & Decellularized Matrix MechanicsHeart Valve Tissue Engineering & Mechanics

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