A Novel, Sterilized Microvascular Tissue Product Improves Healing in a Murine Pressure Ulcer Model

scientific article published on 21 November 2018

A Novel, Sterilized Microvascular Tissue Product Improves Healing in a Murine Pressure Ulcer Model is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1097/GOX.0000000000002010
P932PMC publication ID6414103
P698PubMed publication ID30881803

P50authorBruce A BunnellQ61140452
P2093author name stringJeffrey M Gimble
H Alan Tucker
Trivia Frazier
Xiying Wu
Theodore Brown
Doan Nguyen
Douglas M Arm
Andrea Alarcon Uquillas
Dale R Peterson
Claire Llamas
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Adipose stromal cells repair pressure ulcers in both young and elderly mice: potential role of adipogenesis in skin repairQ35665307
The murine excisional wound model: Contraction revisitedQ37392284
Combining decellularized human adipose tissue extracellular matrix and adipose-derived stem cells for adipose tissue engineeringQ37662440
The economics of pressure relieving surfaces: an illustrative case study of the impact of high-specification surfaces on hospital financesQ37735351
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Pressure ulcers in long-term careQ37884944
A systematic review of skin substitutes for foot ulcersQ38022463
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Side effects of cytokines approved for therapyQ38255698
MicroRNA regulation of stem cell differentiation and diseases of the bone and adipose tissue: Perspectives on miRNA biogenesis and cellular transcriptomeQ38366284
The International Pressure Ulcer Prevalence™ Survey: 2006-2015: A 10-Year Pressure Injury Prevalence and Demographic Trend Analysis by Care SettingQ39098653
P.R.L. platelet rich lipotransfert: our experience and current state of art in the combined use of fat and PRP.Q39320825
Cost-Effectiveness of Becaplermin Gel on Diabetic Foot Ulcer HealingChanges in Wound Surface AreaQ39859593
Serially Transplanted Nonpericytic CD146(-) Adipose Stromal/Stem Cells in Silk Bioscaffolds Regenerate Adipose Tissue In Vivo.Q40006058
Exosomes from marrow stromal cells expressing miR-146b inhibit glioma growthQ41114486
Comparison of three methods for the derivation of a biologic scaffold composed of adipose tissue extracellular matrixQ42704976
Results of nine international pressure ulcer prevalence surveys: 1989 to 2005.Q44671857
MSC-based product characterization for clinical trials: an FDA perspectiveQ45862249
Non-reconstructable peripheral vascular disease of the lower extremity in ten patients treated with adipose-derived stromal vascular fraction cellsQ46238482
Protective effect of mesenchymal stem cells on the pressure ulcer formation by the regulation of oxidative and endoplasmic reticulum stress.Q46246169
An economic evaluation of VAC therapy compared with wound dressings in the treatment of diabetic foot ulcersQ47793526
Multipotential human adipose-derived stromal stem cells exhibit a perivascular phenotype in vitro and in vivo.Q50466801
db/db mice exhibit severe wound-healing impairments compared with other murine diabetic strains in a silicone-splinted excisional wound model.Q50874632
Adipose Tissue and Extracellular Matrix Development by Injectable Decellularized Adipose Matrix Loaded with Basic Fibroblast Growth Factor.Q51412770
Quantitative and reproducible murine model of excisional wound healing.Q51645013
Application of enhanced stromal vascular fraction and fat grafting mixed with PRP in post-traumatic lower extremity ulcers.Q51735503
Decellularized extracellular matrix derived from human adipose tissue as a potential scaffold for allograft tissue engineering.Q52609544
Compression-induced HIF-1 enhances thrombosis and PAI-1 expression in mouse skin.Q54163942
The loss of MCP-1 attenuates cutaneous ischemia-reperfusion injury in a mouse model of pressure ulcerQ80547516
A population of multipotent CD34-positive adipose stromal cells share pericyte and mesenchymal surface markers, reside in a periendothelial location, and stabilize endothelial networksQ81514904
Pressure ulcers: description of a new model and use of mesenchymal stem cells for repairQ82674366
The performance of decellularized adipose tissue microcarriers as an inductive substrate for human adipose-derived stem cellsQ83760513
P433issue11
P921main subjectpressure ulcerQ308978
P304page(s)e2010
P577publication date2018-11-21
P1433published inPlastic and reconstructive surgery. Global openQ27725386
P1476titleA Novel, Sterilized Microvascular Tissue Product Improves Healing in a Murine Pressure Ulcer Model
P478volume6

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