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Thicker cartilage and chondroprotection after joint destabilisation in CTGF null mice is due to compensation by Activin A

Conference paper

Muhammad H. et al, (2021), INTERNATIONAL JOURNAL OF EXPERIMENTAL PATHOLOGY, 102, A14 - A15

Molecular and skeletal characterization of mice with a fibrillin-1 mutation: insight into tissue bioavailability of TGF beta in Marfan syndrome

Conference paper

Wilson G. et al, (2021), INTERNATIONAL JOURNAL OF EXPERIMENTAL PATHOLOGY, 102, 124 - 125

IS THE PARADOXICAL INCREASE OF CARTILAGE THICKNESS IN CTGF NULL MICE DUE TO COMPENSATION BY ACTIVIN A

Conference paper

Muhammad H. et al, (2020), OSTEOARTHRITIS AND CARTILAGE, 28, S74 - S75

FGF2 promotes regeneration of cartilage in vivo by promoting MSC chemokinesis

Conference paper

Muhammad H. et al, (2019), INTERNATIONAL JOURNAL OF EXPERIMENTAL PATHOLOGY, 100, A28 - A28

CARTILAGE INJURY SUPPRESSES ENDOGENOUS RETINOIC ACID THROUGH ACTIVATION OF TGF beta-ACTIVATED KINASE 1 (TAK1)

Conference paper

Zhu L. et al, (2018), OSTEOARTHRITIS AND CARTILAGE, 26, S107 - S107

FIBROBLAST GROWTH FACTOR 2 PROMOTES REGENERATION OF CARTILAGE BY ATTRACTING MESENCHYMAL STEM CELLS TO THE SITE OF CARTILAGE INJURY

Conference paper

Khan SN. et al, (2018), OSTEOARTHRITIS AND CARTILAGE, 26, S37 - S37

Human migratory meniscus progenitor cells are controlled via the TGF-β pathway.

Journal article

Muhammad H. et al, (2014), Stem Cell Reports, 3, 789 - 803

Manipulation of chondrogenic progenitor cells from late stages of osteoarthritis for cartilage repair

Conference paper

Schminke B. et al, (2014), European Cells and Materials

A discoidin domain receptor 1 knock-out mouse as a novel model for osteoarthritis of the temporomandibular joint.

Journal article

Schminke B. et al, (2014), Cell Mol Life Sci, 71, 1081 - 1096

Current concepts in stem cell therapy for articular cartilage repair.

Journal article

Muhammad H. et al, (2013), Expert Opin Biol Ther, 13, 541 - 548

Use of Chondrogenic Progenitor Cells in Osteoarthritis

Chapter

Schminke B. et al, (2013), Stem Cells and Bone Tissue, 231 - 244

The primary cilium as a dual sensor of mechanochemical signals in chondrocytes.

Journal article

Muhammad H. et al, (2012), Cell Mol Life Sci, 69, 2101 - 2107