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

Synthetic helical peptides on nanofibers to activate cell-surface receptors and synergistically enhance critical-sized bone defect regeneration.

纳米纤维上的合成螺旋肽可激活细胞表面受体,并协同增强临界尺寸骨缺损的再生

Zhou Tongqing, C Cavalcante Rafael, Ge Chunxi, Franceschi Renny T, Ma Peter X

RUNX2 is essential for maintaining synchondrosis chondrocytes and cranial base growth.

RUNX2 对于维持软骨结合软骨细胞和颅底生长至关重要

Hallett Shawn A, Dixon Ashley, Marrale Isabella, Batoon Lena, Brenes José, Zhou Annabelle, Arbiv Ariel, Kaartinen Vesa, Allen Benjamin, Ono Wanida, Franceschi Renny T, Ono Noriaki

Nanofibrous 3D scaffolds capable of individually controlled BMP and FGF release for the regulation of bone regeneration

用于调控骨再生的纳米纤维三维支架,能够单独控制BMP和FGF的释放。

Rambhia, Kunal J; Sun, Hongli; Feng, Kai; Kannan, Rahasudha; Doleyres, Yasmine; Holzwarth, Jeremy M; Doepker, Mikayla; Franceschi, Renny T; Ma, Peter X

Discoidin domain receptors; an ancient family of collagen receptors has major roles in bone development, regeneration and metabolism

盘状结构域受体;一类古老的胶原受体家族,在骨骼发育、再生和代谢中发挥着重要作用。

Franceschi, Renny T; Hallett, Shawn A; Ge, Chunxi

Cranial Base Synchondrosis: Chondrocytes at the Hub

颅底软骨结合:软骨细胞位于中心

Hallett, Shawn A; Ono, Wanida; Franceschi, Renny T; Ono, Noriaki

Protein phosphatase PP5 controls bone mass and the negative effects of rosiglitazone on bone through reciprocal regulation of PPARγ (peroxisome proliferator-activated receptor γ) and RUNX2 (runt-related transcription factor 2)

蛋白磷酸酶 PP5 通过对 PPARγ(过氧化物酶体增殖激活受体 γ)和 RUNX2(Runt 相关转录因子 2)的相互调节来控制骨量和罗格列酮对骨骼的负面影响。

Stechschulte, Lance A; Ge, Chunxi; Hinds, Terry D Jr; Sanchez, Edwin R; Franceschi, Renny T; Lecka-Czernik, Beata

Genetic inhibition of PPARγ S112 phosphorylation reduces bone formation and stimulates marrow adipogenesis

基因抑制PPARγ S112磷酸化可减少骨形成并刺激骨髓脂肪生成。

Ge, Chunxi; Zhao, Guisheng; Li, BinBin; Li, Yan; Cawthorn, William P; MacDougald, Ormond A; Franceschi, Renny T

MAP Kinase-Dependent RUNX2 Phosphorylation Is Necessary for Epigenetic Modification of Chromatin During Osteoblast Differentiation

MAP激酶依赖的RUNX2磷酸化是成骨细胞分化过程中染色质表观遗传修饰所必需的

Li, Yan; Ge, Chunxi; Franceschi, Renny T

Skeletal Stem Cells: Origins, Functions and Uncertainties

骨骼干细胞:起源、功能和不确定性

Mohamed, Fatma F; Franceschi, Renny T

Discoidin Receptor 2 Controls Bone Formation and Marrow Adipogenesis

盘状蛋白受体2控制骨形成和骨髓脂肪生成

Ge, Chunxi; Wang, Zhengyan; Zhao, Guisheng; Li, Binbin; Liao, Jinhui; Sun, Hanshi; Franceschi, Renny T