Skip to Content
Merck
CN
  • Gdf5 progenitors give rise to fibrocartilage cells that mineralize via hedgehog signaling to form the zonal enthesis.

Gdf5 progenitors give rise to fibrocartilage cells that mineralize via hedgehog signaling to form the zonal enthesis.

Developmental biology (2015-07-05)
Nathaniel A Dyment, Andrew P Breidenbach, Andrea G Schwartz, Ryan P Russell, Lindsey Aschbacher-Smith, Han Liu, Yusuke Hagiwara, Rulang Jiang, Stavros Thomopoulos, David L Butler, David W Rowe
ABSTRACT

The sequence of events that leads to the formation of a functionally graded enthesis is not clearly defined. The current study demonstrates that clonal expansion of Gdf5 progenitors contributes to linear growth of the enthesis. Prior to mineralization, Col1+ cells in the enthesis appose Col2+ cells of the underlying primary cartilage. At the onset of enthesis mineralization, cells at the base of the enthesis express alkaline phosphatase, Indian hedgehog, and ColX as they mineralize. The mineralization front then extends towards the tendon midsubstance as cells above the front become encapsulated in mineralized fibrocartilage over time. The hedgehog (Hh) pathway regulates this process, as Hh-responsive Gli1+ cells within the developing enthesis mature from unmineralized to mineralized fibrochondrocytes in response to activated signaling. Hh signaling is required for mineralization, as tissue-specific deletion of its obligate transducer Smoothened in the developing tendon and enthesis cells leads to significant reductions in the apposition of mineralized fibrocartilage. Together, these findings provide a spatiotemporal map of events - from expansion of the embryonic progenitor pool to synthesis of the collagen template and finally mineralization of this template - that leads to the formation of the mature zonal enthesis. These results can inform future tendon-to-bone repair strategies to create a mechanically functional enthesis in which tendon collagen fibers are anchored to bone through mineralized fibrocartilage.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Formaldehyde-12C solution, 20% in H2O, 99.9 atom % 12C
Sigma-Aldrich
Phosphatase substrate, 40 mg capsules
Sigma-Aldrich
Phosphatase substrate, powder
Sigma-Aldrich
Phosphatase substrate, 5 mg tablets
Sigma-Aldrich
Phosphatase substrate, 100 mg capsules
Sigma-Aldrich
4-Nitrophenyl phosphate disodium salt hexahydrate, suitable for enzyme immunoassay, ≥99.0% (enzymatic)
Sigma-Aldrich
Formaldehyde solution, ACS reagent, 37 wt. % in H2O, contains 10-15% Methanol as stabilizer (to prevent polymerization)
Sigma-Aldrich
Formaldehyde solution, meets analytical specification of USP, ≥34.5 wt. %
Sigma-Aldrich
Formaldehyde solution, Molecular Biology, BioReagent, ≥36.0% in H2O (T)
Sigma-Aldrich
Formaldehyde solution, Molecular Biology, 36.5-38% in H2O
Sigma-Aldrich
4-Nitrophenyl phosphate disodium salt hexahydrate, tablet
Sigma-Aldrich
4-Nitrophenyl phosphate disodium salt hexahydrate, tablet
Sigma-Aldrich
4-Nitrophenyl phosphate disodium salt hexahydrate, tablet
Sigma-Aldrich
4-Nitrophenyl phosphate disodium salt hexahydrate, powder, BioReagent, suitable for cell culture, ≥97%
Sigma-Aldrich
Phosphatase substrate, 40 mg tablets
Sigma-Aldrich
Phosphatase substrate, Suitable for manufacturing of diagnostic kits and reagents
Sigma-Aldrich
Sucrose, puriss., meets analytical specification of Ph. Eur., BP, NF
Sigma-Aldrich
Sucrose, ACS reagent
Sigma-Aldrich
Tamoxifen, ≥99%
Sigma-Aldrich
Sucrose, 99% (GC), Vetec, reagent grade