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US20080020049A1 - Super-sparger microcarrier beads and precision extrusion deposited poly-epsilon-caprolactone structures for biological applications - Google Patents

Super-sparger microcarrier beads and precision extrusion deposited poly-epsilon-caprolactone structures for biological applications
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Publication number
US20080020049A1
US20080020049A1US11/842,796US84279607AUS2008020049A1US 20080020049 A1US20080020049 A1US 20080020049A1US 84279607 AUS84279607 AUS 84279607AUS 2008020049 A1US2008020049 A1US 2008020049A1
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Prior art keywords
porous
scaffold
cells
pores
coolant
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Abandoned
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US11/842,796
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Andrew Darling
Lauren Shor
Wei Sun
Selcuk Guceri
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Individual
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Priority claimed from PCT/US2006/006790external-prioritypatent/WO2006091921A2/en
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Priority to US11/842,796priorityCriticalpatent/US20080020049A1/en
Publication of US20080020049A1publicationCriticalpatent/US20080020049A1/en
Priority to US12/877,818prioritypatent/US8735117B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

In on aspect, the invention includes a microcarrier bead having a porous three-dimensional core having (a) a polymeric porous three-dimensional body having porosity of about 15 to about 90% such that at least 99% of pores are interconnected and have diameters of at most 200 microns, (b) an outer protective layer and optionally (c) a filler. In another aspect, the invention includes a method of making an artificial scaffold wherein a scaffolding material is extruded into a coolant and thereby creating a porous material having a porosity of between 15-90% such that at least 99% of pores are interconnected and have diameters of at most 200 microns.

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Claims (25)

24. In a process for manufacturing an artificial scaffold comprising (a) utilizing a computer aided design program to design the artificial scaffold; (b) converting the computer aided design program designed artificial scaffold into a heterogeneous material and multi-part assembly model which can be used for multi-nozzle printing; and (c) printing the designed artificial scaffold using different nozzles, the improvement comprising extruding a scaffolding material into a coolant having a thermal conductivity greater than 0.026, wherein the coolant has a temperature at least 5° C. lower than the scaffolding material and thereby making the artificial scaffold having porosity of about 15 to about 88% such that at least 99% of pores are interconnected and have diameters of at most 100 microns and optionally an outer protective layer encapsulating the artificial scaffold.
US11/842,7962005-02-252007-08-21Super-sparger microcarrier beads and precision extrusion deposited poly-epsilon-caprolactone structures for biological applicationsAbandonedUS20080020049A1 (en)

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US11/842,796US20080020049A1 (en)2005-02-252007-08-21Super-sparger microcarrier beads and precision extrusion deposited poly-epsilon-caprolactone structures for biological applications
US12/877,818US8735117B2 (en)2005-02-252010-09-08Method for making artificial scaffold having porous three-dimensional body comprising cells

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US65625805P2005-02-252005-02-25
PCT/US2006/006790WO2006091921A2 (en)2005-02-252006-02-24Super-sparger microcarrier beads and precision extrusion deposited poly-epsilon-caprolactone structures for biological applications
US11/842,796US20080020049A1 (en)2005-02-252007-08-21Super-sparger microcarrier beads and precision extrusion deposited poly-epsilon-caprolactone structures for biological applications

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PCT/US2006/006790Continuation-In-PartWO2006091921A2 (en)2005-02-252006-02-24Super-sparger microcarrier beads and precision extrusion deposited poly-epsilon-caprolactone structures for biological applications

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US12/877,818Active2028-01-31US8735117B2 (en)2005-02-252010-09-08Method for making artificial scaffold having porous three-dimensional body comprising cells

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US20110136162A1 (en)*2009-08-312011-06-09Drexel UniversityCompositions and Methods for Functionalized Patterning of Tissue Engineering Substrates Including Bioprinting Cell-Laden Constructs for Multicompartment Tissue Chambers
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US8613943B2 (en)2009-01-232013-12-24Royal College Of Surgeons In IrelandProcess for producing a multi-layered scaffold suitable for osteochondral repair
US20140221615A1 (en)*2011-08-302014-08-07Kyoto UniversityPorous scaffold material, and method for producing same
US8936742B2 (en)2010-09-282015-01-20Drexel UniversityIntegratable assisted cooling system for precision extrusion deposition in the fabrication of 3D scaffolds
US20160083690A1 (en)*2013-04-102016-03-24Agency For Science, Technology And ResearchMicrocarriers for stem cell culture and fabrication thereof
US9556418B2 (en)2010-08-132017-01-31Wake Forest University Health SciencesMethods for making a tissue engineered muscle repair (TEMR) construct in vitro for implantation in vivo
WO2018035511A1 (en)2016-08-192018-02-22Blaesi Aron HMethod and apparatus for the manufacture of fibrous dosage forms
EP3623136A1 (en)*2018-09-142020-03-18FRAUNHOFER-GESELLSCHAFT zur Förderung der angewandten Forschung e.V.Method for producing three-dimensional hydrogel structures and device for the layerwise building-up of such hydrogel structures
US10596236B2 (en)2016-03-102020-03-24Arthrex, Inc.Systems and methods for preparing a thrombin serum
EP3507073B1 (en)2016-08-312020-08-05Thermwood CorporationMethods and apparatus for processing and dispensing material during additive manufacturing
CN112384168A (en)*2018-05-072021-02-19曼托环球有限责任公司Design and manufacturing method of 2D and 3D biological scaffold extracellular structural unit and tissue structure
US10960026B2 (en)2016-03-102021-03-30Arthrex, Inc.Systems and methods for preparing protein enhanced serums
US11104072B2 (en)2016-08-312021-08-31Thermwood CorporationMethods and apparatus for processing and dispensing material during additive manufacturing
US20230270103A1 (en)*2020-07-172023-08-31The General Hospital CorporationHydrogel Beads for Controlled Uptake and Release of Cryoprotective Agents

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US8647098B2 (en)*2010-09-222014-02-11Stratasys, Inc.Liquefier assembly for use in extrusion-based additive manufacturing systems
WO2015095768A1 (en)*2013-12-192015-06-25Kent State UniversityBiocompatible smart responsive scaffold having interconnected pores
US12031026B2 (en)*2016-08-032024-07-09Wake Forest University Health SciencesComposition with polymer and ceramic and methods of use thereof
US20180057784A1 (en)2016-08-272018-03-013D Biotek, LlcBioreactor
US10597639B2 (en)*2016-10-202020-03-24Washington University3D-printed scaffold device for cell transplantation
EP3614924A4 (en)2017-04-252021-03-17Mendology, Inc.Touch measurement apparatus and method of use
DK3658199T3 (en)2017-07-282025-02-03Fluicell Ab METHODS AND SYSTEMS USING RECIRCULATING LIQUID STREAMS

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Cited By (33)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US9615910B2 (en)2009-01-232017-04-11Royal College Of Surgeons In IrelandLayered collagen and HA scaffold suitable for osteochondral repair
US8613943B2 (en)2009-01-232013-12-24Royal College Of Surgeons In IrelandProcess for producing a multi-layered scaffold suitable for osteochondral repair
US9072815B2 (en)2009-01-232015-07-07Royal College Of Surgeons In IrelandLayered collagen and HA scaffold suitable for osteochondral repair
US10052407B2 (en)2009-01-232018-08-21Royal College Of Surgeons In IrelandLayered collagen and ha scaffold suitable for osteochondral repair
US20110136162A1 (en)*2009-08-312011-06-09Drexel UniversityCompositions and Methods for Functionalized Patterning of Tissue Engineering Substrates Including Bioprinting Cell-Laden Constructs for Multicompartment Tissue Chambers
JP2013512950A (en)*2010-03-192013-04-18ポステック アカデミー−インダストリー ファンデーション Three-dimensional artificial support and manufacturing method thereof
US9018008B2 (en)2010-03-192015-04-28Postech Academy-Industry FoundationThree-dimensional scaffold and method of manufacturing the same
US11324857B2 (en)2010-08-132022-05-10Wake Forest University Health SciencesMethods for making a tissue engineered muscle repair (TEMR) construct in vitro for implantation in vivo
US9556418B2 (en)2010-08-132017-01-31Wake Forest University Health SciencesMethods for making a tissue engineered muscle repair (TEMR) construct in vitro for implantation in vivo
US8936742B2 (en)2010-09-282015-01-20Drexel UniversityIntegratable assisted cooling system for precision extrusion deposition in the fabrication of 3D scaffolds
US9603969B2 (en)*2011-08-302017-03-28Kyoto UniversityPorous scaffold material, and method for producing same
US20140221615A1 (en)*2011-08-302014-08-07Kyoto UniversityPorous scaffold material, and method for producing same
JP2016521124A (en)*2013-04-102016-07-21エージェンシー フォー サイエンス,テクノロジー アンド リサーチ Polycaprolactone microcarriers for stem cell culture and their production
US20160083690A1 (en)*2013-04-102016-03-24Agency For Science, Technology And ResearchMicrocarriers for stem cell culture and fabrication thereof
US11045526B2 (en)2016-03-102021-06-29Arthrex, Inc.Systems and methods for preparing a thrombin serum
US12059455B2 (en)2016-03-102024-08-13Arthrex, Inc.Systems and methods for preparing a thrombin serum
US11617784B2 (en)2016-03-102023-04-04Arthrex, Inc.Systems and methods for preparing a thrombin serum
US10596236B2 (en)2016-03-102020-03-24Arthrex, Inc.Systems and methods for preparing a thrombin serum
US10960026B2 (en)2016-03-102021-03-30Arthrex, Inc.Systems and methods for preparing protein enhanced serums
WO2018035511A1 (en)2016-08-192018-02-22Blaesi Aron HMethod and apparatus for the manufacture of fibrous dosage forms
EP3500248A4 (en)*2016-08-192019-12-04Blaesi, Aron H. METHOD AND APPARATUS FOR MANUFACTURING FIBROUS DOSAGE FORMS
US11383438B2 (en)2016-08-312022-07-12Thermwood CorporationMethods and apparatus for processing and dispensing material during additive manufacturing
US11104072B2 (en)2016-08-312021-08-31Thermwood CorporationMethods and apparatus for processing and dispensing material during additive manufacturing
EP3507073B1 (en)2016-08-312020-08-05Thermwood CorporationMethods and apparatus for processing and dispensing material during additive manufacturing
US11607845B2 (en)2016-08-312023-03-21Thermwood CorporationMethods and apparatus for processing and dispensing material during additive manufacturing
US11872752B2 (en)2016-08-312024-01-16Thermwood CorporationMethods and apparatus for processing and dispensing material during additive manufacturing
US12083743B2 (en)2016-08-312024-09-10Thermwood CorporationMethods and apparatus for processing and dispensing material during additive manufacturing
US12384108B2 (en)2016-08-312025-08-12Thermwood CorporationMethods and apparatus for processing and dispensing material during additive manufacturing
CN112384168A (en)*2018-05-072021-02-19曼托环球有限责任公司Design and manufacturing method of 2D and 3D biological scaffold extracellular structural unit and tissue structure
WO2020052981A1 (en)*2018-09-142020-03-19Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e. V.Method for producing three-dimensional hydrogel structures and device for the layerwise building-up of such hydrogel structures
EP3623136A1 (en)*2018-09-142020-03-18FRAUNHOFER-GESELLSCHAFT zur Förderung der angewandten Forschung e.V.Method for producing three-dimensional hydrogel structures and device for the layerwise building-up of such hydrogel structures
US12128626B2 (en)2018-09-142024-10-29Fraunhofer-Gesellschaft Zur Foerderung Der Angewandten Forschung E. V.Method for producing three-dimensional hydrogel structures and device for the layerwise building-up of such hydrogel structures
US20230270103A1 (en)*2020-07-172023-08-31The General Hospital CorporationHydrogel Beads for Controlled Uptake and Release of Cryoprotective Agents

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US8735117B2 (en)2014-05-27

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