日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

(*) Constrained Cage Culture Improves Engineered Cartilage Functional Properties by Enhancing Collagen Network Stability.

(*)受限笼培养通过增强胶原蛋白网络稳定性来改善工程软骨的功能特性

Nims Robert J, Cigan Alexander D, Durney Krista M, Jones Brian K, O'Neill John D, Law Wing-Sum A, Vunjak-Novakovic Gordana, Hung Clark T, Ateshian Gerard A

Heterogeneous engineered cartilage growth results from gradients of media-supplemented active TGF-β and is ameliorated by the alternative supplementation of latent TGF-β

异质性工程软骨生长是由培养基中添加的活性TGF-β梯度引起的,而补充潜伏性TGF-β则可以改善这种生长。

Albro, Michael B; Nims, Robert J; Durney, Krista M; Cigan, Alexander D; Shim, Jay J; Vunjak-Novakovic, Gordana; Hung, Clark T; Ateshian, Gerard A

Continuum theory of fibrous tissue damage mechanics using bond kinetics: application to cartilage tissue engineering

基于键动力学的纤维组织损伤力学连续介质理论:在软骨组织工程中的应用

Nims, Robert J; Durney, Krista M; Cigan, Alexander D; Dusséaux, Antoine; Hung, Clark T; Ateshian, Gerard A

Nutrient Channels Aid the Growth of Articular Surface-Sized Engineered Cartilage Constructs

营养通道促进关节表面大小的工程化软骨构建体的生长

Cigan, Alexander D; Durney, Krista M; Nims, Robert J; Vunjak-Novakovic, Gordana; Hung, Clark T; Ateshian, Gerard A

Optimizing nutrient channel spacing and revisiting TGF-beta in large engineered cartilage constructs

优化营养通道间距并重新审视大型工程化软骨构建体中的TGF-β

Cigan, Alexander D; Nims, Robert J; Vunjak-Novakovic, Gordana; Hung, Clark T; Ateshian, Gerard A

Matrix Production in Large Engineered Cartilage Constructs Is Enhanced by Nutrient Channels and Excess Media Supply

营养通道和过量培养基供应可增强大型工程软骨构建体中的基质生成。

Nims, Robert J; Cigan, Alexander D; Albro, Michael B; Vunjak-Novakovic, Gordana; Hung, Clark T; Ateshian, Gerard A

Nutrient channels and stirring enhanced the composition and stiffness of large cartilage constructs

营养通道和搅拌作用增强了大型软骨结构的组成和刚度。

Cigan, Alexander D; Nims, Robert J; Albro, Michael B; Vunjak-Novakovic, Gordana; Hung, Clark T; Ateshian, Gerard A

Accumulation of exogenous activated TGF-β in the superficial zone of articular cartilage

外源性活化TGF-β在关节软骨表层积聚

Albro, Michael B; Nims, Robert J; Cigan, Alexander D; Yeroushalmi, Kevin J; Alliston, Tamara; Hung, Clark T; Ateshian, Gerard A

Insulin, ascorbate, and glucose have a much greater influence than transferrin and selenous acid on the in vitro growth of engineered cartilage in chondrogenic media.

胰岛素、抗坏血酸和葡萄糖对软骨生成培养基中工程软骨的体外生长具有比转铁蛋白和亚硒酸更大的影响

Cigan Alexander D, Nims Robert J, Albro Michael B, Esau John D, Dreyer Marissa P, Vunjak-Novakovic Gordana, Hung Clark T, Ateshian Gerard A