The antifibrotic adipose‐derived stromal cell: Grafted fat enriched with CD74+ adipose‐derived stromal cells reduces chronic radiation‐induced skin fibrosis

Abstract Fat grafting can reduce radiation‐induced fibrosis. Improved outcomes are found when fat grafts are enriched with adipose‐derived stromal cells (ASCs), implicating ASCs as key drivers of soft tissue regeneration. We have identified a subpopulation of ASCs positive for CD74 with enhanced ant...

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Main Authors: Mimi R. Borrelli, Ronak A. Patel, Sandeep Adem, Nestor M. Diaz Deleon, Abra H. Shen, Jan Sokol, Sara Yen, Erin Y. Chang, Rahim Nazerali, Dung Nguyen, Arash Momeni, Kevin C. Wang, Michael T. Longaker, Derrick C. Wan
Format: Article
Language:English
Published: Wiley 2020-11-01
Series:Stem Cells Translational Medicine
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Online Access:https://doi.org/10.1002/sctm.19-0317
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spelling doaj-7c0f0be51ecf4304b00b834d9aeca1122020-11-25T03:07:50ZengWileyStem Cells Translational Medicine2157-65642157-65802020-11-019111401141310.1002/sctm.19-0317The antifibrotic adipose‐derived stromal cell: Grafted fat enriched with CD74+ adipose‐derived stromal cells reduces chronic radiation‐induced skin fibrosisMimi R. Borrelli0Ronak A. Patel1Sandeep Adem2Nestor M. Diaz Deleon3Abra H. Shen4Jan Sokol5Sara Yen6Erin Y. Chang7Rahim Nazerali8Dung Nguyen9Arash Momeni10Kevin C. Wang11Michael T. Longaker12Derrick C. Wan13Hagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAProgram in Epithelial Biology, Department of Dermatology Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAProgram in Epithelial Biology, Department of Dermatology Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAHagey Laboratory for Pediatric Regenerative Medicine, Department of Surgery, Division of Plastic Surgery Stanford University School of Medicine Stanford California USAAbstract Fat grafting can reduce radiation‐induced fibrosis. Improved outcomes are found when fat grafts are enriched with adipose‐derived stromal cells (ASCs), implicating ASCs as key drivers of soft tissue regeneration. We have identified a subpopulation of ASCs positive for CD74 with enhanced antifibrotic effects. Compared to CD74− and unsorted (US) ASCs, CD74+ ASCs have increased expression of hepatocyte growth factor, fibroblast growth factor 2, and transforming growth factor β3 (TGF‐β3) and decreased levels of TGF‐β1. Dermal fibroblasts incubated with conditioned media from CD74+ ASCs produced less collagen upon stimulation, compared to fibroblasts incubated with media from CD74− or US ASCs. Upon transplantation, fat grafts enriched with CD74+ ASCs reduced the stiffness, dermal thickness, and collagen content of overlying skin, and decreased the relative proportions of more fibrotic dermal fibroblasts. Improvements in several extracellular matrix components were also appreciated on immunofluorescent staining. Together these findings indicate CD74+ ASCs have antifibrotic qualities and may play an important role in future strategies to address fibrotic remodeling following radiation‐induced fibrosis.https://doi.org/10.1002/sctm.19-0317adiposeadipose stem cellsFACSstem cellstransplantation
collection DOAJ
language English
format Article
sources DOAJ
author Mimi R. Borrelli
Ronak A. Patel
Sandeep Adem
Nestor M. Diaz Deleon
Abra H. Shen
Jan Sokol
Sara Yen
Erin Y. Chang
Rahim Nazerali
Dung Nguyen
Arash Momeni
Kevin C. Wang
Michael T. Longaker
Derrick C. Wan
spellingShingle Mimi R. Borrelli
Ronak A. Patel
Sandeep Adem
Nestor M. Diaz Deleon
Abra H. Shen
Jan Sokol
Sara Yen
Erin Y. Chang
Rahim Nazerali
Dung Nguyen
Arash Momeni
Kevin C. Wang
Michael T. Longaker
Derrick C. Wan
The antifibrotic adipose‐derived stromal cell: Grafted fat enriched with CD74+ adipose‐derived stromal cells reduces chronic radiation‐induced skin fibrosis
Stem Cells Translational Medicine
adipose
adipose stem cells
FACS
stem cells
transplantation
author_facet Mimi R. Borrelli
Ronak A. Patel
Sandeep Adem
Nestor M. Diaz Deleon
Abra H. Shen
Jan Sokol
Sara Yen
Erin Y. Chang
Rahim Nazerali
Dung Nguyen
Arash Momeni
Kevin C. Wang
Michael T. Longaker
Derrick C. Wan
author_sort Mimi R. Borrelli
title The antifibrotic adipose‐derived stromal cell: Grafted fat enriched with CD74+ adipose‐derived stromal cells reduces chronic radiation‐induced skin fibrosis
title_short The antifibrotic adipose‐derived stromal cell: Grafted fat enriched with CD74+ adipose‐derived stromal cells reduces chronic radiation‐induced skin fibrosis
title_full The antifibrotic adipose‐derived stromal cell: Grafted fat enriched with CD74+ adipose‐derived stromal cells reduces chronic radiation‐induced skin fibrosis
title_fullStr The antifibrotic adipose‐derived stromal cell: Grafted fat enriched with CD74+ adipose‐derived stromal cells reduces chronic radiation‐induced skin fibrosis
title_full_unstemmed The antifibrotic adipose‐derived stromal cell: Grafted fat enriched with CD74+ adipose‐derived stromal cells reduces chronic radiation‐induced skin fibrosis
title_sort antifibrotic adipose‐derived stromal cell: grafted fat enriched with cd74+ adipose‐derived stromal cells reduces chronic radiation‐induced skin fibrosis
publisher Wiley
series Stem Cells Translational Medicine
issn 2157-6564
2157-6580
publishDate 2020-11-01
description Abstract Fat grafting can reduce radiation‐induced fibrosis. Improved outcomes are found when fat grafts are enriched with adipose‐derived stromal cells (ASCs), implicating ASCs as key drivers of soft tissue regeneration. We have identified a subpopulation of ASCs positive for CD74 with enhanced antifibrotic effects. Compared to CD74− and unsorted (US) ASCs, CD74+ ASCs have increased expression of hepatocyte growth factor, fibroblast growth factor 2, and transforming growth factor β3 (TGF‐β3) and decreased levels of TGF‐β1. Dermal fibroblasts incubated with conditioned media from CD74+ ASCs produced less collagen upon stimulation, compared to fibroblasts incubated with media from CD74− or US ASCs. Upon transplantation, fat grafts enriched with CD74+ ASCs reduced the stiffness, dermal thickness, and collagen content of overlying skin, and decreased the relative proportions of more fibrotic dermal fibroblasts. Improvements in several extracellular matrix components were also appreciated on immunofluorescent staining. Together these findings indicate CD74+ ASCs have antifibrotic qualities and may play an important role in future strategies to address fibrotic remodeling following radiation‐induced fibrosis.
topic adipose
adipose stem cells
FACS
stem cells
transplantation
url https://doi.org/10.1002/sctm.19-0317
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