An oxidized chondroitin sulfate-crosslinked and CuCDs-loaded decellularized bovine pericardium with improved anti-coagulation, pro-endothelialization and anti-calcification properties for BHVs†

IF 6.1 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Shubin Shi, Xu Wei, Xu Peng, Xinyun Pu, Shaoxiong Feng, Xi Gao and Xixun Yu
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Abstract

With the growth of the elderly people and the development of transcatheter aortic valve replacement (TAVR) technology, bioprosthetic heart valves (BHVs) originating from the decellularized bovine pericardium (DBP) have become a favourable option for severe valvular heart disease (VHD). However, currently, available commercial bioprosthetic heart valves prepared from glutaraldehyde (GA)-crosslinked xenografts have limited durability because of various factors, including severe cytotoxicity, inflammatory response, poor pro-endothelialization ability and calcification. Therefore, the development of valve materials with better performance is urgent. In this work, we first synthesized Cu-doped carbon dots (CuCDs) with excellent biocompatibility and high stability using sodium citrate, ethylenediamine and copper chloride. Subsequently, oxidized chondroitin sulfate (OCS) was used to crosslink the decellularized bovine pericardium to obtain OCS–BP followed by loading CuCDs onto the surface of this OCS-fixed BP sample through amide bonds formed by an EDC/NHS-catalyzed reaction between the functional groups on CuCDs and OCS–BP to prepare the BHV (CuCDs–OCS–BP) with specific properties. Relevant experiments conducted both in vivo and in vitro indicate that CuCDs–OCS–BP with good stability showed improved mechanical properties, compliance and flexibility, encouraging HUVEC-cytocompatibility, excellent anti-blood cell adhesion, antithrombogenic properties, anti-inflammatory and anti-calcification properties, and a good endothelialisation ability due to the catalytic generation of endogenous nitric oxide. Overall, CuCDs–OCS–BP is a promising material for BHVs.

一种氧化硫酸软骨素交联和负载cuds的脱细胞牛心包,具有改善bhv的抗凝血,促内皮化和抗钙化特性。
随着老年人的增长和经导管主动脉瓣置换术(TAVR)技术的发展,源自脱细胞牛心包(DBP)的生物人工心脏瓣膜(bhv)已成为治疗严重瓣膜性心脏病(VHD)的有利选择。然而,目前可用的由戊二醛(GA)交联异种移植物制备的生物人工心脏瓣膜,由于各种因素,包括严重的细胞毒性、炎症反应、促内皮化能力差和钙化,其耐久性有限。因此,开发性能更好的阀门材料刻不容缓。本文首次以柠檬酸钠、乙二胺和氯化铜为原料合成了具有良好生物相容性和高稳定性的cu掺杂碳点(CuCDs)。随后,用氧化硫酸软骨素(OCS)将脱细胞的牛心包交联得到OCS-BP,然后通过EDC/ nhs催化的cucd上的官能团与OCS-BP之间形成酰胺键,将cucd装载到OCS-BP固定的BP样品表面,制备出具有特定性能的BHV (CuCDs-OCS-BP)。体内和体外相关实验表明,稳定性良好的CuCDs-OCS-BP具有较好的力学性能、顺应性和柔韧性,促进huvec细胞相容性,具有优异的抗血细胞粘附、抗血栓形成、抗炎和抗钙化性能,并且由于内源性一氧化氮的催化生成,具有良好的内皮化能力。总的来说,CuCDs-OCS-BP是一种很有前途的bhv材料。
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来源期刊
Journal of Materials Chemistry B
Journal of Materials Chemistry B MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.30%
发文量
866
期刊介绍: Journal of Materials Chemistry A, B & C cover high quality studies across all fields of materials chemistry. The journals focus on those theoretical or experimental studies that report new understanding, applications, properties and synthesis of materials. Journal of Materials Chemistry A, B & C are separated by the intended application of the material studied. Broadly, applications in energy and sustainability are of interest to Journal of Materials Chemistry A, applications in biology and medicine are of interest to Journal of Materials Chemistry B, and applications in optical, magnetic and electronic devices are of interest to Journal of Materials Chemistry C.Journal of Materials Chemistry B is a Transformative Journal and Plan S compliant. Example topic areas within the scope of Journal of Materials Chemistry B are listed below. This list is neither exhaustive nor exclusive: Antifouling coatings Biocompatible materials Bioelectronics Bioimaging Biomimetics Biomineralisation Bionics Biosensors Diagnostics Drug delivery Gene delivery Immunobiology Nanomedicine Regenerative medicine & Tissue engineering Scaffolds Soft robotics Stem cells Therapeutic devices
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