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

Peptide-conjugated biodegradable polyester scaffolds for bone regeneration

用于骨再生的肽偶联可生物降解聚酯支架

Zhou, Tongqing; Ma, Peter X

Dynamic adaptive coassembled sericin protein orchestrating stem cell development for nucleus pulposus regeneration

动态适应性共组装丝胶蛋白调控干细胞发育,促进髓核再生。

Li, Xing; Zhao, Yize; Gu, Peiyang; Zhao, Chengkun; Fan, Yujiang; Zhang, Xingdong; Zhao, Chao; Ma, Peter X; Feng, Ganjun; Sun, Yong

Gli1(+) Cells Exhibit Clonogenicity and Slow-Cycling Features at the Temporomandibular Joint (TMJ) Enthesis-Condyle Interface

在颞下颌关节 (TMJ) 附着点-髁突界面,Gli1(+) 细胞表现出克隆形成能力和慢周期特征。

Correia Cavalcante, Rafael; Zhang, Honghao; Ma, Peter X; Mishina, Yuji

Two-step Gelatin Embedding Preserves Fibrocartilage Morphology, Enthesis, and Cartilage Stain of Bone Joints

两步明胶包埋法可保留骨关节的纤维软骨形态、附着点和软骨染色

Correia Cavalcante, Rafael; Zhou, Tongqing; Bhandari, Nidhi; Rickman, Zachary; Ma, Peter X; Mishina, Yuji

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

Nanofibrous scaffolds for bone and cartilage regeneration

用于骨骼和软骨再生的纳米纤维支架

Cavalcante, Rafael Correia; Yang, Xianrui; Xiu, Kemao; Liu, Chuan-Ju; Ma, Peter X

Neural crest-specific disruption of Evc2 provides an animal model to study the temporomandibular joint (TMJ) development and homeostasis in response to jaw loading

神经嵴特异性破坏 Evc2 基因提供了一种动物模型,可用于研究颞下颌关节 (TMJ) 的发育和稳态对下颌负荷的反应。

Cavalcante, Rafael Correia; Zhang, Honghao; Miranda, Felicia; Midla, Susannah C; Lefebvre, Veronique M; Ma, Peter X; Cevidanes, Lucia H S; Mishina, Yuji

FGF2-Regulated Osteogenic Differentiation of Human Bone Marrow Stromal Cells

FGF2调控人骨髓基质细胞的成骨分化

Yang, Xianrui; Hatch, Nan E; Ma, Peter X

Role of FGF2 in promoting osteogenic differentiation for craniofacial bone regeneration

FGF2在促进颅面骨再生中成骨分化的作用

Yang, Xianrui; Ma, Peter X

New block copolymers to form nanofibers with superior mechanical properties and to conjugate signaling molecules directing tissue regeneration

新型嵌段共聚物可形成具有优异机械性能的纳米纤维,并可偶联信号分子以引导组织再生

Zhou, Tongqing; Cavalcante, Rafael C; Ma, Peter X