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231225s2020 xx |||||o 00| ||eng c |
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|a 10.1002/adma.201906508
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|a pubmed24n1012.xml
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|a eng
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|a Madry, Henning
|e verfasserin
|4 aut
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|a Thermosensitive Hydrogel Based on PEO-PPO-PEO Poloxamers for a Controlled In Situ Release of Recombinant Adeno-Associated Viral Vectors for Effective Gene Therapy of Cartilage Defects
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|c 2020
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|a Text
|b txt
|2 rdacontent
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|a ƒaComputermedien
|b c
|2 rdamedia
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|a ƒa Online-Ressource
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|2 rdacarrier
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|a Date Completed 16.11.2020
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|a Date Revised 16.11.2020
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|a published: Print-Electronic
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|a Citation Status MEDLINE
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|a © 2019 The Authors. Published by WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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|a Advanced biomaterial-guided delivery of gene vectors is an emerging and highly attractive therapeutic solution for targeted articular cartilage repair, allowing for a controlled and minimally invasive delivery of gene vectors in a spatiotemporally precise manner, reducing intra-articular vector spread and possible loss of the therapeutic gene product. As far as it is known, the very first successful in vivo application of such a biomaterial-guided delivery of a potent gene vector in an orthotopic large animal model of cartilage damage is reported here. In detail, an injectable and thermosensitive hydrogel based on poly(ethylene oxide) (PEO)-poly(propylene oxide) (PPO)-PEO poloxamers, capable of controlled release of a therapeutic recombinant adeno-associated virus (rAAV) vector overexpressing the chondrogenic sox9 transcription factor in full-thickness chondral defects, is applied in a clinically relevant minipig model in vivo. These comprehensive analyses of the entire osteochondral unit with multiple standardized evaluation methods indicate that rAAV-FLAG-hsox9/PEO-PPO-PEO hydrogel-augmented microfracture significantly improves cartilage repair with a collagen fiber orientation more similar to the normal cartilage and protects the subchondral bone plate from early bone loss
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|a Journal Article
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|a biomaterial-guided therapy
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|a cartilage defects
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|a gene therapy
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|a rAAV
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|a tissue engineering
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|a Drug Carriers
|2 NLM
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|a Hydrogels
|2 NLM
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|a PEO-PPO-PEO
|2 NLM
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|a Propylene Glycols
|2 NLM
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|a Poloxamer
|2 NLM
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|a 106392-12-5
|2 NLM
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|a Polyethylene Glycols
|2 NLM
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|a 3WJQ0SDW1A
|2 NLM
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1 |
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|a Gao, Liang
|e verfasserin
|4 aut
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1 |
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|a Rey-Rico, Ana
|e verfasserin
|4 aut
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1 |
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|a Venkatesan, Jagadeesh K
|e verfasserin
|4 aut
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|a Müller-Brandt, Kathrin
|e verfasserin
|4 aut
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1 |
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|a Cai, Xiaoyu
|e verfasserin
|4 aut
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1 |
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|a Goebel, Lars
|e verfasserin
|4 aut
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1 |
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|a Schmitt, Gertrud
|e verfasserin
|4 aut
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|a Speicher-Mentges, Susanne
|e verfasserin
|4 aut
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1 |
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|a Zurakowski, David
|e verfasserin
|4 aut
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1 |
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|a Menger, Michael D
|e verfasserin
|4 aut
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1 |
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|a Laschke, Matthias W
|e verfasserin
|4 aut
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|a Cucchiarini, Magali
|e verfasserin
|4 aut
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|i Enthalten in
|t Advanced materials (Deerfield Beach, Fla.)
|d 1998
|g 32(2020), 2 vom: 20. Jan., Seite e1906508
|w (DE-627)NLM098206397
|x 1521-4095
|7 nnns
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|g volume:32
|g year:2020
|g number:2
|g day:20
|g month:01
|g pages:e1906508
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|u http://dx.doi.org/10.1002/adma.201906508
|3 Volltext
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