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Articular cartilage regeneration by activated skeletal stem cells
by
Zhao, Liming
, Hoover, Malachia Y.
, Goodman, Stuart B.
, Weissman, Irving L.
, Longaker, Michael T.
, Walkiewicz, Marcin P.
, Lopez, Michael T.
, Quarto, Natalina
, Levi, Benjamin
, Gulati, Gunsagar S.
, Ransom, Ryan C.
, Steininger, Holly
, Wan, Derrick C.
, Yang, Fan
, Murphy, Matthew P.
, Marecic, Owen
, Chan, Charles K. F.
, Koepke, Lauren S.
, Tong, Xinming
, Ambrosi, Thomas H.
, Wang, Yuting
in
631/532
/ 631/532/2118
/ 692/308/2171
/ 692/308/2778
/ 692/308/575
/ Adult
/ Animals
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer Research
/ Cartilage
/ Cartilage (articular)
/ Cartilage diseases
/ Cartilage, Articular - cytology
/ Cartilage, Articular - physiology
/ Cell Differentiation
/ Cells, Cultured
/ Chondrocytes - cytology
/ Chondrocytes - physiology
/ Chondrogenesis
/ Chondrogenesis - physiology
/ Fetal Tissue Transplantation
/ Fetus - cytology
/ Growth factors
/ Heterografts
/ Humans
/ Hydrogels
/ Infectious Diseases
/ Joint diseases
/ Joints (anatomy)
/ Letter
/ Male
/ Mesenchymal Stem Cells - physiology
/ Metabolic Diseases
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ Microfracture
/ Molecular Medicine
/ Neurosciences
/ Osteoarthritis
/ Physiological aspects
/ Regeneration (Biology)
/ Regeneration - physiology
/ Skeleton
/ Stem cells
/ Stem Cells - cytology
/ Stem Cells - physiology
/ Surgery
/ Tissue Engineering - methods
/ Vascular endothelial growth factor
2020
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Articular cartilage regeneration by activated skeletal stem cells
by
Zhao, Liming
, Hoover, Malachia Y.
, Goodman, Stuart B.
, Weissman, Irving L.
, Longaker, Michael T.
, Walkiewicz, Marcin P.
, Lopez, Michael T.
, Quarto, Natalina
, Levi, Benjamin
, Gulati, Gunsagar S.
, Ransom, Ryan C.
, Steininger, Holly
, Wan, Derrick C.
, Yang, Fan
, Murphy, Matthew P.
, Marecic, Owen
, Chan, Charles K. F.
, Koepke, Lauren S.
, Tong, Xinming
, Ambrosi, Thomas H.
, Wang, Yuting
in
631/532
/ 631/532/2118
/ 692/308/2171
/ 692/308/2778
/ 692/308/575
/ Adult
/ Animals
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer Research
/ Cartilage
/ Cartilage (articular)
/ Cartilage diseases
/ Cartilage, Articular - cytology
/ Cartilage, Articular - physiology
/ Cell Differentiation
/ Cells, Cultured
/ Chondrocytes - cytology
/ Chondrocytes - physiology
/ Chondrogenesis
/ Chondrogenesis - physiology
/ Fetal Tissue Transplantation
/ Fetus - cytology
/ Growth factors
/ Heterografts
/ Humans
/ Hydrogels
/ Infectious Diseases
/ Joint diseases
/ Joints (anatomy)
/ Letter
/ Male
/ Mesenchymal Stem Cells - physiology
/ Metabolic Diseases
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ Microfracture
/ Molecular Medicine
/ Neurosciences
/ Osteoarthritis
/ Physiological aspects
/ Regeneration (Biology)
/ Regeneration - physiology
/ Skeleton
/ Stem cells
/ Stem Cells - cytology
/ Stem Cells - physiology
/ Surgery
/ Tissue Engineering - methods
/ Vascular endothelial growth factor
2020
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Articular cartilage regeneration by activated skeletal stem cells
by
Zhao, Liming
, Hoover, Malachia Y.
, Goodman, Stuart B.
, Weissman, Irving L.
, Longaker, Michael T.
, Walkiewicz, Marcin P.
, Lopez, Michael T.
, Quarto, Natalina
, Levi, Benjamin
, Gulati, Gunsagar S.
, Ransom, Ryan C.
, Steininger, Holly
, Wan, Derrick C.
, Yang, Fan
, Murphy, Matthew P.
, Marecic, Owen
, Chan, Charles K. F.
, Koepke, Lauren S.
, Tong, Xinming
, Ambrosi, Thomas H.
, Wang, Yuting
in
631/532
/ 631/532/2118
/ 692/308/2171
/ 692/308/2778
/ 692/308/575
/ Adult
/ Animals
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer Research
/ Cartilage
/ Cartilage (articular)
/ Cartilage diseases
/ Cartilage, Articular - cytology
/ Cartilage, Articular - physiology
/ Cell Differentiation
/ Cells, Cultured
/ Chondrocytes - cytology
/ Chondrocytes - physiology
/ Chondrogenesis
/ Chondrogenesis - physiology
/ Fetal Tissue Transplantation
/ Fetus - cytology
/ Growth factors
/ Heterografts
/ Humans
/ Hydrogels
/ Infectious Diseases
/ Joint diseases
/ Joints (anatomy)
/ Letter
/ Male
/ Mesenchymal Stem Cells - physiology
/ Metabolic Diseases
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ Microfracture
/ Molecular Medicine
/ Neurosciences
/ Osteoarthritis
/ Physiological aspects
/ Regeneration (Biology)
/ Regeneration - physiology
/ Skeleton
/ Stem cells
/ Stem Cells - cytology
/ Stem Cells - physiology
/ Surgery
/ Tissue Engineering - methods
/ Vascular endothelial growth factor
2020
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Articular cartilage regeneration by activated skeletal stem cells
Journal Article
Articular cartilage regeneration by activated skeletal stem cells
2020
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Overview
Osteoarthritis (OA) is a degenerative disease resulting in irreversible, progressive destruction of articular cartilage
1
. The etiology of OA is complex and involves a variety of factors, including genetic predisposition, acute injury and chronic inflammation
2
–
4
. Here we investigate the ability of resident skeletal stem-cell (SSC) populations to regenerate cartilage in relation to age, a possible contributor to the development of osteoarthritis
5
–
7
. We demonstrate that aging is associated with progressive loss of SSCs and diminished chondrogenesis in the joints of both mice and humans. However, a local expansion of SSCs could still be triggered in the chondral surface of adult limb joints in mice by stimulating a regenerative response using microfracture (MF) surgery. Although MF-activated SSCs tended to form fibrous tissues, localized co-delivery of BMP2 and soluble VEGFR1 (sVEGFR1), a VEGF receptor antagonist, in a hydrogel skewed differentiation of MF-activated SSCs toward articular cartilage. These data indicate that following MF, a resident stem-cell population can be induced to generate cartilage for treatment of localized chondral disease in OA.
Endogenous skeletal stem cells are recruited to form cartilage in mice when stimulated by microfracture surgery together with localized delivery of growth factors, pointing to a new approach for treating cartilage defects.
Publisher
Nature Publishing Group US,Nature Publishing Group
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