0000000000077708

AUTHOR

Garry P. Duffy

0000-0002-4994-9511

showing 3 related works from this author

The pre-vascularisation of a collagen-chondroitin sulphate scaffold using human amniotic fluid-derived stem cells to enhance and stabilise endothelia…

2015

Abstract A major problem in tissue engineering (TE) is graft failure in vivo due to core degradation in in vitro engineered constructs designed to regenerate thick tissues such as bone. The integration of constructs post-implantation relies on the rapid formation of functional vasculature. A recent approach to overcome core degradation focuses on the creation of cell-based, pre-engineered vasculature formed within the TE construct in vitro , prior to implantation in vivo . The primary objective of this study was to investigate whether an amniotic fluid-derived stem cell (AFSC)–human umbilical vein endothelial cell (HUVEC) co-culture could be used to engineer in vitro vasculature in a collag…

ScaffoldMaterials scienceBiomedical EngineeringNeovascularization PhysiologicBiochemistryUmbilical veinBiomaterialsTissue engineeringBlood vessel prosthesisIn vivoMaterials TestingHumansBone regenerationMolecular BiologyCells CulturedBioprosthesisTissue ScaffoldsStem CellsChondroitin SulfatesEndothelial CellsEquipment DesignGeneral MedicineAmniotic FluidBlood Vessel ProsthesisCapillariesCell biologyEquipment Failure AnalysisEndothelial stem cellCollagenStem cellStem Cell TransplantationBiotechnologyBiomedical engineeringActa Biomaterialia
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Additive Manufacturing of Multi‐Scale Porous Soft Tissue Implants That Encourage Vascularization and Tissue Ingrowth

2021

Medical devices, such as silicone-based prostheses designed for soft tissue implantation, often induce a suboptimal foreign-body response which results in a hardened avascular fibrotic capsule around the device, often leading to patient discomfort or implant failure. Here, it is proposed that additive manufacturing techniques can be used to deposit durable coatings with multiscale porosity on soft tissue implant surfaces to promote optimal tissue integration. Specifically, the “liquid rope coil effect”, is exploited via direct ink writing, to create a controlled macro open-pore architecture, including over highly curved surfaces, while adapting atomizing spray deposition of a silicone ink t…

Materials scienceSwinesoft tissue implantsmedical grade siliconeSiliconesBiomedical EngineeringTissue integrationPharmaceutical Science02 engineering and technology010402 general chemistry01 natural sciencesBiomaterialsMedical grade siliconechemistry.chemical_compoundSiliconeSettore BIO/10 - BiochimicaMaterials TestingAnimalsHumansPorosityImplant failureSoft tissueProstheses and Implantsmedical device coatings021001 nanoscience & nanotechnology0104 chemical scienceschemistrydevice-tissue interactionImplant0210 nano-technologyadditive manufacturingPorosityTissue ingrowthBiomedical engineeringAdvanced Healthcare Materials
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The Foreign Body Response to an Implantable Therapeutic Reservoir in a Diabetic Rodent Model

2021

Advancements in type 1 diabetes mellitus treatments have vastly improved in recent years. The move toward a bioartificial pancreas and other fully implantable systems could help restore patient's glycemic control. However, the long-term success of implantable medical devices is often hindered by the foreign body response. Fibrous encapsulation "walls off" the implant to the surrounding tissue, impairing its functionality. In this study we aim to examine how streptozotocin-induced diabetes affects fibrous capsule formation and composition surrounding implantable drug delivery devices following subcutaneous implantation in a rodent model. After 2 weeks of implantation, the fibrous capsule sur…

Type 1 diabetesPathologymedicine.medical_specialtyBioartificial pancreasbusiness.industryMicro computed tomographyforeign body responseBiomedical EngineeringMedicine (miscellaneous)BioengineeringRodent modelRodentiaProstheses and ImplantsX-Ray Microtomographymedicine.diseaseForeign BodiesDiabetes mellitusdiabetes mellitusRaman spectroscopymedicineAnimalsForeign bodymicro-computed tomographybusinessTissue Engineering Part C: Methods
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