Literature DB >> 20698749

Human adipose-derived stromal cells stimulate autogenous skeletal repair via paracrine Hedgehog signaling with calvarial osteoblasts.

Benjamin Levi1, Aaron W James, Emily R Nelson, Shuli Li, Michelle Peng, George W Commons, Min Lee, Benjamin Wu, Michael T Longaker.   

Abstract

Human adipose-derived stromal cells (hASCs) have the proven capacity to ossify skeletal defects. The mechanisms whereby hASCs stimulate bone repair are not fully understood. In this study, we examined the potential for hASCs to stimulate autogenous repair of a mouse calvarial defect. Immunofluoresence, osteogenic stains, and surface electron microscopy were used to demonstrate osteogenic differentiation of hASCs. hASCs were engrafted into 4 mm calvarial defects in athymic mice using an osteoconductive scaffold. Analysis included microcomputed tomography, histology, in situ hybridization, and quantitative real-time-polymerase chain reaction. Next, the in vitro interaction between hASCs and mouse calvarial osteoblasts (mOBs) was assessed by the conditioned medium and coculture assays. The medium was supplemented with Hedgehog signaling modifiers, including recombinant N-terminal Sonic hedgehog, smoothened agonist, and cyclopamine. Finally, cyclopamine was delivered in vivo to hASC-engrafted defects. Significant calvarial healing was observed among hASC-engrafted defects compared with control groups (no treatment or scaffold alone) (*P<0.05). hASCs showed evidence of stimulation of host mouse osteogenesis, including (1) increased expression of bone markers at the defect edge by in situ hybridization, and (2) increased host osteogenic gene expression by species-specific quantitative real-time polymerase chain reaction. Using the conditioned medium or coculture assays, hASCs stimulated mOB osteogenic differentiation, accompanied by Hedgehog signaling activation. N-terminal Sonic hedgehog or smoothened agonist replicated, while cyclopamine reversed, the pro-osteogenic effect of the conditioned medium on mOBs. Finally, cyclopamine injection arrested bone formation in vivo. hASCs heal critical-sized mouse calvarial defects, this is, at least in part, via stimulation of autogenous healing of the host defect. Our studies suggest that hASC-derived Hedgehog signaling may play a paracrine role in skeletal repair.

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Year:  2010        PMID: 20698749      PMCID: PMC3128781          DOI: 10.1089/scd.2010.0250

Source DB:  PubMed          Journal:  Stem Cells Dev        ISSN: 1547-3287            Impact factor:   3.272


  59 in total

1.  Studies in cranial suture biology: regional dura mater determines in vitro cranial suture fusion.

Authors:  J P Bradley; J P Levine; J G McCarthy; M T Longaker
Journal:  Plast Reconstr Surg       Date:  1997-10       Impact factor: 4.730

2.  FGF-induced vesicular release of Sonic hedgehog and retinoic acid in leftward nodal flow is critical for left-right determination.

Authors:  Yosuke Tanaka; Yasushi Okada; Nobutaka Hirokawa
Journal:  Nature       Date:  2005-05-12       Impact factor: 49.962

3.  Studies in cranial suture biology: regional dura mater determines overlying suture biology.

Authors:  J P Levine; J P Bradley; D A Roth; J G McCarthy; M T Longaker
Journal:  Plast Reconstr Surg       Date:  1998-05       Impact factor: 4.730

4.  Induction of osteogenic differentiation of human mesenchymal stem cells by histone deacetylase inhibitors.

Authors:  Hyun Hwa Cho; Hyung Taek Park; Yeon Jeong Kim; Yong Chan Bae; Kuen Taek Suh; Jin Sup Jung
Journal:  J Cell Biochem       Date:  2005-10-15       Impact factor: 4.429

5.  Tissue-engineered bone from BMP-2-transduced stem cells derived from human fat.

Authors:  Jason L Dragoo; Jay R Lieberman; Richard S Lee; Dan A Deugarte; Yupo Lee; Patricia A Zuk; Marc H Hedrick; Prosper Benhaim
Journal:  Plast Reconstr Surg       Date:  2005-05       Impact factor: 4.730

6.  Autologous stem cells (adipose) and fibrin glue used to treat widespread traumatic calvarial defects: case report.

Authors:  Stefan Lendeckel; Andreas Jödicke; Petros Christophis; Kathrin Heidinger; Jan Wolff; John K Fraser; Marc H Hedrick; Lars Berthold; Hans-Peter Howaldt
Journal:  J Craniomaxillofac Surg       Date:  2004-12       Impact factor: 2.078

7.  Induction of osteogenic differentiation by hedgehog proteins.

Authors:  T Nakamura; T Aikawa; M Iwamoto-Enomoto; M Iwamoto; Y Higuchi; M Pacifici; N Kinto; A Yamaguchi; S Noji; K Kurisu; T Matsuya; P Maurizio
Journal:  Biochem Biophys Res Commun       Date:  1997-08-18       Impact factor: 3.575

8.  Sonic hedgehog gene-enhanced tissue engineering for bone regeneration.

Authors:  P C Edwards; S Ruggiero; J Fantasia; R Burakoff; S M Moorji; E Paric; P Razzano; D A Grande; J M Mason
Journal:  Gene Ther       Date:  2005-01       Impact factor: 5.250

9.  Bone induction in craniofacial defects.

Authors:  R P Nacamuli; M T Longaker
Journal:  Orthod Craniofac Res       Date:  2005-11       Impact factor: 1.826

10.  FGF-, BMP- and Shh-mediated signalling pathways in the regulation of cranial suture morphogenesis and calvarial bone development.

Authors:  H J Kim; D P Rice; P J Kettunen; I Thesleff
Journal:  Development       Date:  1998-04       Impact factor: 6.868

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  31 in total

1.  Strategic Targeting of Multiple BMP Receptors Prevents Trauma-Induced Heterotopic Ossification.

Authors:  Shailesh Agarwal; Shawn J Loder; Christopher Breuler; John Li; David Cholok; Cameron Brownley; Jonathan Peterson; Hsiao H Hsieh; James Drake; Kavitha Ranganathan; Yashar S Niknafs; Wenzhong Xiao; Shuli Li; Ravindra Kumar; Ronald Tompkins; Michael T Longaker; Thomas A Davis; Paul B Yu; Yuji Mishina; Benjamin Levi
Journal:  Mol Ther       Date:  2017-07-15       Impact factor: 11.454

2.  Undifferentiated human adipose-derived stromal/stem cells loaded onto wet-spun starch-polycaprolactone scaffolds enhance bone regeneration: nude mice calvarial defect in vivo study.

Authors:  Pedro P Carvalho; Isabel B Leonor; Brenda J Smith; Isabel R Dias; Rui L Reis; Jeffrey M Gimble; Manuela E Gomes
Journal:  J Biomed Mater Res A       Date:  2013-10-12       Impact factor: 4.396

3.  Acute skeletal injury is necessary for human adipose-derived stromal cell-mediated calvarial regeneration.

Authors:  Benjamin Levi; Aaron W James; Emily R Nelson; Michelle Peng; Derrick C Wan; George W Commons; Min Lee; Benjamin Wu; Michael T Longaker
Journal:  Plast Reconstr Surg       Date:  2011-03       Impact factor: 4.730

4.  Dura mater stimulates human adipose-derived stromal cells to undergo bone formation in mouse calvarial defects.

Authors:  Benjamin Levi; Emily R Nelson; Shuli Li; Aaron W James; Jeong S Hyun; Daniel T Montoro; Min Lee; Jason P Glotzbach; George W Commons; Michael T Longaker
Journal:  Stem Cells       Date:  2011-08       Impact factor: 6.277

5.  Enhancement of human adipose-derived stromal cell angiogenesis through knockdown of a BMP-2 inhibitor.

Authors:  Benjamin Levi; Emily R Nelson; Jeong S Hyun; Jason P Glotzbach; Shuli Li; Allison Nauta; Daniel T Montoro; Min Lee; George C Commons; Shijun Hu; Joseph C Wu; Geoffrey C Gurtner; Michael T Longaker
Journal:  Plast Reconstr Surg       Date:  2012-01       Impact factor: 4.730

Review 6.  Adipose-derived stromal/stem cells: a primer.

Authors:  Jeffrey M Gimble; Bruce A Bunnell; Trivia Frazier; Brian Rowan; Forum Shah; Caasy Thomas-Porch; Xiying Wu
Journal:  Organogenesis       Date:  2013-01-01       Impact factor: 2.500

7.  Adipogenic and osteogenic differentiation of Lin(-)CD271(+)Sca-1(+) adipose-derived stem cells.

Authors:  Jingang Xiao; Xiaojuan Yang; Wei Jing; Weihua Guo; Qince Sun; Yunfeng Lin; Lei Liu; Wentong Meng; Weidong Tian
Journal:  Mol Cell Biochem       Date:  2013-02-21       Impact factor: 3.396

8.  Antagonism between Hedgehog and Wnt signaling pathways regulates tumorigenicity.

Authors:  Mei Ding; Xin Wang
Journal:  Oncol Lett       Date:  2017-09-22       Impact factor: 2.967

9.  Sonic Hedgehog contributes to gastric mucosal restitution after injury.

Authors:  Chang Xiao; Rui Feng; Amy C Engevik; Jason R Martin; Julie A Tritschler; Michael Schumacher; Robert Koncar; Joseph Roland; Ki Taek Nam; James R Goldenring; Yana Zavros
Journal:  Lab Invest       Date:  2012-10-22       Impact factor: 5.662

10.  The acid-secreting parietal cell as an endocrine source of Sonic Hedgehog during gastric repair.

Authors:  Amy C Engevik; Rui Feng; Li Yang; Yana Zavros
Journal:  Endocrinology       Date:  2013-10-03       Impact factor: 4.736

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