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细胞介导交联实现力学增强型可注射水凝胶用于高效细胞递送
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作者 余隆康 臧晶 +7 位作者 张建航 黄伟 高洪杰 张逸慧 陈明宇 乔磊 尤业字 王龙海 《功能高分子学报》 北大核心 2025年第5期400-411,共12页
可注射水凝胶在细胞治疗中具有广泛应用前景,但其力学性能弱和异物反应限制了其在体内的应用效果。本文提出了一种细胞介导共价交联的水凝胶构建策略,利用双端N-羟基琥珀酰亚胺交联剂(NHS-PEG-NHS)将细胞聚集体表面的氨基与共聚多肽侧... 可注射水凝胶在细胞治疗中具有广泛应用前景,但其力学性能弱和异物反应限制了其在体内的应用效果。本文提出了一种细胞介导共价交联的水凝胶构建策略,利用双端N-羟基琥珀酰亚胺交联剂(NHS-PEG-NHS)将细胞聚集体表面的氨基与共聚多肽侧链氨基原位交联,构建了细胞-多肽杂化水凝胶。细胞交联点的引入显著提升了凝胶的力学强度与抗溶胀性能,实现了细胞的高效原位封装。共聚多肽由L-丝氨酸、D-丝氨酸与L-赖氨酸共聚而成,其高水合结构赋予材料优异的生物相容性与抗异物反应能力,能维持细胞长期活性。本策略为构建兼具力学稳定性与免疫友好性的可注射水凝胶提供了新思路,适用于高效细胞递送和细胞治疗。 展开更多
关键词 可注射水凝胶 细胞介导交联 力学增强 细胞递送 生物相容性
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Strong electronic metal-support interactions for enhanced hydroformylation activity and stability over Rh single-atom catalysts through phosphorus doping
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作者 Boyang Fu Ping Ma +11 位作者 Xiaoyang Ding Kaifu Cai Limin Sun Yujin Zhu Qiwei Yin Yihao Sun Tianle Liu Yuzhen Li Yuxing Xu Jian Gu Haowen Ma Junling Lu 《中国科学技术大学学报》 北大核心 2025年第3期2-10,1,I0001,共11页
By simplifying catalyst-product separation and reducing phosphorus waste,heterogeneous hydroformylation offers a more sustainable alternative to homogeneous processes.However,heterogeneous hydroformylation catalysts d... By simplifying catalyst-product separation and reducing phosphorus waste,heterogeneous hydroformylation offers a more sustainable alternative to homogeneous processes.However,heterogeneous hydroformylation catalysts developed thus far still suffer from the issues of much lower activity and metal leaching,which severely hinder their practical application.Here,we demonstrate that incorporating phosphorus(P)atoms into graphitic carbon nitride(PCN)supports facilitates charge transfer from Rh to the PCN support,thus largely enhancing electronic metal-support interactions(EMSIs).In the styrene hydroformylation reaction,the activity of Rh_(1)/PCN single-atom catalysts(SACs)with varying P contents exhibited a volcano-shaped relationship with P doping,where the Rh_(1)/PCN SAC with optimal P doping showed exceptional activity,approximately 5.8-and 3.3-fold greater than that of the Rh_(1)/g-C_(3)N_(4)SAC without P doping and the industrial homogeneous catalyst HRh(CO)(PPh_(3))_(3),respectively.In addition,the optimal Rh_(1)/PCN SAC catalyst also demonstrated largely enhanced multicycle stability without any visible metal aggregation owing to the increased EMSIs,which sharply differed from the severe metal aggregation of large nanoparticles on the Rh_(1)/g-C_(3)N_(4)SAC.Mechan-istic studies revealed that the enhanced catalytic performance could be attributed to electron-deficient Rh species,which reduced CO adsorption while simultaneously promoting alkene adsorption through increased EMSIs.These findings suggest that tuning EMSIs is an effective way to achieve SACs with high activity and durability. 展开更多
关键词 heterogeneous hydroformylation Rh single-atom catalysts electronic metal-support interactions phosphorus doping
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