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US20150230918A1 - Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair - Google Patents

Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair
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Publication number
US20150230918A1
US20150230918A1US14/239,049US201214239049AUS2015230918A1US 20150230918 A1US20150230918 A1US 20150230918A1US 201214239049 AUS201214239049 AUS 201214239049AUS 2015230918 A1US2015230918 A1US 2015230918A1
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US
United States
Prior art keywords
fibers
implant
fiber
fibrous body
type
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US14/239,049
Inventor
Michael Detamore
Lindsey Ott
Robert Weatherly
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
University of Kansas
Childrens Mercy Hospital
Nanofiber Solutions LLC
Original Assignee
University of Kansas
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by University of KansasfiledCriticalUniversity of Kansas
Priority to US14/239,049priorityCriticalpatent/US20150230918A1/en
Assigned to CHILDREN'S MERCY HOSPITALreassignmentCHILDREN'S MERCY HOSPITALASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: WEATHERLY, ROBER A.
Assigned to THE UNIVERSITY OF KANSASreassignmentTHE UNIVERSITY OF KANSASASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: DETAMORE, MICHAEL, OTT, Lindsey
Publication of US20150230918A1publicationCriticalpatent/US20150230918A1/en
Assigned to NANOFIBER SOLUTIONS, LLCreassignmentNANOFIBER SOLUTIONS, LLCCHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: NANOFIBER SOLUTIONS, INC.
Assigned to NATIONAL SCIENCE FOUNDATIONreassignmentNATIONAL SCIENCE FOUNDATIONCONFIRMATORY LICENSE (SEE DOCUMENT FOR DETAILS).Assignors: UNIVERSITY OF KANSAS, LAWRENCE
Assigned to THE CHILDREN'S MERCY HOSPITALreassignmentTHE CHILDREN'S MERCY HOSPITALCORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNOR AND THE ASSIGEE NAME PREVIOUSLY RECORDED AT REEL: 032222 FRAME: 0802. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT.Assignors: WEATHERLY, ROBERT A.
Assigned to THE UNIVERSITY OF KANSASreassignmentTHE UNIVERSITY OF KANSASASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: DETAMORE, MICHAEL, OTT, Lindsey
Assigned to THE CHILDREN'S MERCY HOSPITALreassignmentTHE CHILDREN'S MERCY HOSPITALASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: WEATHERLY, ROBERT A.
Abandonedlegal-statusCriticalCurrent

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Abstract

An implant can include a plurality of polymeric fibers associated together into a fibrous body. The fibrous body is capable of being shaped to fit a tracheal defect and capable of being secured in place by suture or by bioadhesive. The fibrous body can have aligned fibers (e.g., circumferentially aligned) or unaligned fibers. The fibrous body can be electrospun. The fibrous body can have a first characteristic in a first gradient distribution across at least a portion of the fibrous body. The fibrous body can include one or more structural reinforcing members, such as ribbon structural reinforcing members, which can be embedded in the plurality of fibers. The fibrous body can include one or more structural reinforcing members bonded to the fibers with liquid polymer as an adhesive, the liquid polymer having a substantially similar composition of the fibers.

Description

Claims (31)

US14/239,0492011-08-162012-08-15Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repairAbandonedUS20150230918A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US14/239,049US20150230918A1 (en)2011-08-162012-08-15Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
US201161523894P2011-08-162011-08-16
PCT/US2012/050974WO2013025819A2 (en)2011-08-162012-08-15Fibrous tracheal patch
US14/239,049US20150230918A1 (en)2011-08-162012-08-15Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
PCT/US2012/050974A-371-Of-InternationalWO2013025819A2 (en)2011-08-162012-08-15Fibrous tracheal patch

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US16/570,510ContinuationUS20200015962A1 (en)2011-08-162019-09-13Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair

Publications (1)

Publication NumberPublication Date
US20150230918A1true US20150230918A1 (en)2015-08-20

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Family Applications (3)

Application NumberTitlePriority DateFiling Date
US14/239,049AbandonedUS20150230918A1 (en)2011-08-162012-08-15Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair
US16/570,510AbandonedUS20200015962A1 (en)2011-08-162019-09-13Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair
US17/517,027ActiveUS11432922B2 (en)2011-08-162021-11-02Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair

Family Applications After (2)

Application NumberTitlePriority DateFiling Date
US16/570,510AbandonedUS20200015962A1 (en)2011-08-162019-09-13Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair
US17/517,027ActiveUS11432922B2 (en)2011-08-162021-11-02Biomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair

Country Status (2)

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US (3)US20150230918A1 (en)
WO (1)WO2013025819A2 (en)

Cited By (12)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20160143724A1 (en)*2014-11-202016-05-26Boston Scientific Scimed, Inc.Tracheal implant
WO2017035500A1 (en)*2015-08-262017-03-02Childen's National Medical CenterPatient-specific tissue engineered vascular graft utilizing electrospinning
CN109833521A (en)*2017-11-292019-06-04郑州大学A kind of method and device preparing artificial blood vessel
US10487421B2 (en)*2015-06-172019-11-26Medprin Regenerative Medical Technologies Co., Ltd.Reinforced electrospun fibrous membrane and preparation method thereof
US10617787B2 (en)2017-05-162020-04-14Embody Inc.Biopolymer compositions, scaffolds and devices
US10653817B2 (en)2017-10-242020-05-19Embody Inc.Method for producing an implantable ligament and tendon repair device
US10729548B2 (en)2016-05-022020-08-04Howmedica Osteonics Corp.Bioactive soft tissue implant and methods of manufacture and use thereof
US11020509B2 (en)2019-02-012021-06-01Embody, Inc.Microfluidic extrusion
US11154638B2 (en)2015-08-122021-10-26Howmedica Osteonics Corp.Methods for forming scaffolds
US11331191B2 (en)2015-08-122022-05-17Howmedica Osteonics Corp.Bioactive soft tissue implant and methods of manufacture and use thereof
US11432922B2 (en)2011-08-162022-09-06The University Of KansasBiomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair
US12290612B2 (en)2020-08-102025-05-06Lifenet HealthAligned fiber and method of use thereof

Families Citing this family (14)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
KR101703095B1 (en)2010-06-172017-02-06워싱톤 유니버시티Biomedical patches with aligned fibers
US9884027B2 (en)2012-01-122018-02-06Nanofiber Solutions, Inc.Nanofiber scaffolds for biological structures
ES2847893T3 (en)2012-09-212021-08-04Univ Washington Biomedical patches with fibers arranged in space
US20140272225A1 (en)2013-03-152014-09-18Nanofiber Solutions, LlcBiocompatible fiber textiles for implantation
CN103585673B (en)*2013-10-162014-12-10西安交通大学Additive manufacturing method for nano fiber bracket with gradient interface
JP2018534956A (en)2015-09-102018-11-29イコナノ ベンチャー パートナーズ, エルエルシー Polymer electrospun embolization device and method of use
US10632228B2 (en)2016-05-122020-04-28Acera Surgical, Inc.Tissue substitute materials and methods for tissue repair
CN107510862B (en)*2016-06-152020-05-19中国科学院苏州纳米技术与纳米仿生研究所 Ordered fibrous scaffold carrying bioactive molecules with gradient concentration, preparation method and application
WO2018144858A1 (en)2017-02-022018-08-09Nanofiber Solutions, Inc.Methods of improving bone-soft tissue healing using electrospun fibers
BR112021011361A2 (en)2018-12-112021-08-31Nanofiber Solutions, Llc METHOD TO TREAT A CHRONIC WOUND, METHOD TO AFFECT THE INITIAL PH OF A PORTION OF A BODY AND METHOD TO REDUCE THE INITIAL PH OF A CHRONIC WOUND
US12232943B2 (en)2021-04-282025-02-25Medos International SàrlSystems and methods for using structured tissue augmentation constructs in soft tissue fixation repair
WO2023007443A2 (en)2021-07-292023-02-02Acera Surgical, Inc.Particle-form hybrid-scale fiber matrix
CA3227438A1 (en)2021-07-292023-02-02Acera Surgical, Inc.Combined macro and micro-porous hybrid-scale fiber matrix
US12167853B2 (en)2021-09-072024-12-17Acera Surgical, Inc.Non-woven graft materials for nerve repair and regeneration

Citations (13)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20020012034A1 (en)*1993-09-032002-01-31Hideo SaikawaInk jet head and ink jet recording apparatus having same
US20020020417A1 (en)*1995-06-072002-02-21Nikolchev Julian N.Contraceptive transcervical fallopian tube occlusion devices and methods
US20040037813A1 (en)*1999-02-252004-02-26Simpson David G.Electroprocessed collagen and tissue engineering
US20050137675A1 (en)*2000-12-192005-06-23Alexander DubsonVascular prosthesis and method for production thereof
US20080208325A1 (en)*2007-02-272008-08-28Boston Scientific Scimed, Inc.Medical articles for long term implantation
US20080208323A1 (en)*2007-01-302008-08-28El-Kurdi Mohammed SBioerodible wraps and uses therefor
US20090018643A1 (en)*2007-06-112009-01-15Nanovasc, Inc.Stents
US7722671B1 (en)*1998-01-272010-05-25St. Jude Medical, Inc.Medical devices with associated growth factors
US20100234955A1 (en)*2007-02-142010-09-16Santerre J PaulFibrous scaffold for use in soft tissue engineering
US20120059399A1 (en)*2009-03-102012-03-08The John Hopkins UniversityBiological tissue connection and repair devices and methods of using same
US20120171256A1 (en)*2009-07-142012-07-05The University Of Massachusetts Foundation, Inc.Electrospun silk material systems for wound healing
US8382824B2 (en)*2008-10-032013-02-26Boston Scientific Scimed, Inc.Medical implant having NANO-crystal grains with barrier layers of metal nitrides or fluorides
US20150230953A1 (en)*2005-05-242015-08-20Inspiremd, LtdStent with sheath and metal wire and methods

Family Cites Families (49)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US5201745A (en)*1988-03-151993-04-13ImedexVisceral surgery patch
NO981277D0 (en)1998-03-201998-03-20Erik Fosse Method and apparatus for suture-free anastomosis
US20020090725A1 (en)*2000-11-172002-07-11Simpson David G.Electroprocessed collagen
US6306424B1 (en)*1999-06-302001-10-23Ethicon, Inc.Foam composite for the repair or regeneration of tissue
JP2001212246A (en)*2000-02-072001-08-07Shimadzu CorpBiodegradable stent
US6599323B2 (en)*2000-12-212003-07-29Ethicon, Inc.Reinforced tissue implants and methods of manufacture and use
US6685956B2 (en)*2001-05-162004-02-03The Research Foundation At State University Of New YorkBiodegradable and/or bioabsorbable fibrous articles and methods for using the articles for medical applications
US6790455B2 (en)*2001-09-142004-09-14The Research Foundation At State University Of New YorkCell delivery system comprising a fibrous matrix and cells
US20030100944A1 (en)*2001-11-282003-05-29Olga LaksinVascular graft having a chemicaly bonded electrospun fibrous layer and method for making same
US7575759B2 (en)*2002-01-022009-08-18The Regents Of The University Of MichiganTissue engineering scaffolds
DE60331264D1 (en)*2003-12-302010-03-25Kim Hag Yong
US7592277B2 (en)*2005-05-172009-09-22Research Triangle InstituteNanofiber mats and production methods thereof
EP1611906A1 (en)*2004-06-302006-01-04YLI-URPO, AnttiA multilayer material
CN101039798B (en)2004-10-062012-03-07纽约州立大学研究基金会High flux and low fouling filtration media
WO2006044904A2 (en)*2004-10-152006-04-27Vanderbilt UniversityNano- and micro-scale engineering of polymeric scaffolds for vascular tissue engineering
US20060094320A1 (en)*2004-11-022006-05-04Kimberly-Clark Worldwide, Inc.Gradient nanofiber materials and methods for making same
US8043480B2 (en)*2004-11-102011-10-25The Regents Of The University Of MichiganMethods for forming biodegradable nanocomponents with controlled shapes and sizes via electrified jetting
US20060204539A1 (en)*2005-03-112006-09-14Anthony AtalaElectrospun cell matrices
EP1868660B1 (en)*2005-04-042016-08-03Technion Research & Development Foundation LimitedMedical scaffold, methods of fabrication and using thereof
US8048446B2 (en)*2005-05-102011-11-01Drexel UniversityElectrospun blends of natural and synthetic polymer fibers as tissue engineering scaffolds
US7531355B2 (en)*2005-07-292009-05-12The Regents Of The University Of CaliforniaMethods and compositions for smooth muscle reconstruction
KR100785378B1 (en)*2005-09-052007-12-14주식회사 바이오레인 Multi-layered adhesion inhibitor
EP1940423B1 (en)*2005-09-092014-04-16Duke UniversityTissue engineering methods and compositions
US20080220054A1 (en)*2006-10-132008-09-11Shastri V PrasadModulation of drug release rate from electrospun fibers
US20080112998A1 (en)*2006-11-142008-05-15Hongjun WangInnovative bottom-up cell assembly approach to three-dimensional tissue formation using nano-or micro-fibers
WO2008069759A1 (en)*2006-12-052008-06-12Nanyang Technological UniversityManufacturing three-dimensional scaffolds using electrospinning at low temperatures
WO2008118943A1 (en)*2007-03-262008-10-02The University Of ConnecticutElectrospun apatite/polymer nano-composite scaffolds
US20090030504A1 (en)*2007-07-272009-01-29Boston Scientific Scimed, Inc.Medical devices comprising porous inorganic fibers for the release of therapeutic agents
US20090248131A1 (en)2008-03-312009-10-01Medtronic Vascular, Inc.Covered Stent and Method of Making Same
US20130268062A1 (en)*2012-04-052013-10-10Zeus Industrial Products, Inc.Composite prosthetic devices
IN2012DN00526A (en)*2009-08-072015-08-28Zeus Ind Products Inc
KR101703095B1 (en)2010-06-172017-02-06워싱톤 유니버시티Biomedical patches with aligned fibers
US20150230918A1 (en)2011-08-162015-08-20The University Of KansasBiomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair
US9884027B2 (en)*2012-01-122018-02-06Nanofiber Solutions, Inc.Nanofiber scaffolds for biological structures
EP2804638A4 (en)*2012-01-162015-09-02Marshall University Res CorpNanofiber scaffolds and methods for repairing damaged cardiac tissue
EP2809433B1 (en)*2012-01-272017-11-01Zeus Industrial Products, Inc.Electrospun porous media
WO2013124869A2 (en)*2012-02-212013-08-29Amrita Vishwa Vidyapeetham UniversityThe art, method,manner process and system of fibrous bio-degradable polymeric wafers for the local delivery of therapeutic agents in combinations
WO2013134383A1 (en)*2012-03-062013-09-12The Uab Research FoundationThree-dimesional, prevascularized, engineered tissue constructs, methods of making and methods of using the tissue constructs
US10449026B2 (en)*2012-06-262019-10-22Biostage, Inc.Methods and compositions for promoting the structural integrity of scaffolds for tissue engineering
WO2014005090A1 (en)*2012-06-292014-01-03Marshall University Research CorporationNanofiber scaffolds and methods for repairing skin damage
US11541154B2 (en)*2012-09-192023-01-03Merit Medical Systems, Inc.Electrospun material covered medical appliances and methods of manufacture
US10080687B2 (en)2012-09-212018-09-25Washington UniversityBiomedical patches with spatially arranged fibers
ES2847893T3 (en)2012-09-212021-08-04Univ Washington Biomedical patches with fibers arranged in space
EP3049121B1 (en)*2013-09-252021-12-29Nanofiber Solutions, LLCFiber scaffolds for use creating implantable structures
US9895354B2 (en)*2014-04-042018-02-20University Of Kentucky Research FoundationBilayered calcium sulfate/calcium phosphate space-making composites with multiple drug delivery capabilities
EP3785677B1 (en)*2015-02-262024-08-07Merit Medical Systems, Inc.Layered medical appliances
JP7219428B2 (en)*2015-04-292023-02-08エヌエフエス アイピー ホールディングス、エルエルシー Multicomponent electrospun fiber scaffold
WO2016205186A1 (en)*2015-06-152016-12-22Rotation Medical, Inc.Tendon repair implant and method of implantation
US10632228B2 (en)*2016-05-122020-04-28Acera Surgical, Inc.Tissue substitute materials and methods for tissue repair

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20020012034A1 (en)*1993-09-032002-01-31Hideo SaikawaInk jet head and ink jet recording apparatus having same
US20020020417A1 (en)*1995-06-072002-02-21Nikolchev Julian N.Contraceptive transcervical fallopian tube occlusion devices and methods
US7722671B1 (en)*1998-01-272010-05-25St. Jude Medical, Inc.Medical devices with associated growth factors
US20040037813A1 (en)*1999-02-252004-02-26Simpson David G.Electroprocessed collagen and tissue engineering
US20050137675A1 (en)*2000-12-192005-06-23Alexander DubsonVascular prosthesis and method for production thereof
US20150230953A1 (en)*2005-05-242015-08-20Inspiremd, LtdStent with sheath and metal wire and methods
US20080208323A1 (en)*2007-01-302008-08-28El-Kurdi Mohammed SBioerodible wraps and uses therefor
US20100234955A1 (en)*2007-02-142010-09-16Santerre J PaulFibrous scaffold for use in soft tissue engineering
US20080208325A1 (en)*2007-02-272008-08-28Boston Scientific Scimed, Inc.Medical articles for long term implantation
US20090018643A1 (en)*2007-06-112009-01-15Nanovasc, Inc.Stents
US8382824B2 (en)*2008-10-032013-02-26Boston Scientific Scimed, Inc.Medical implant having NANO-crystal grains with barrier layers of metal nitrides or fluorides
US20120059399A1 (en)*2009-03-102012-03-08The John Hopkins UniversityBiological tissue connection and repair devices and methods of using same
US20120171256A1 (en)*2009-07-142012-07-05The University Of Massachusetts Foundation, Inc.Electrospun silk material systems for wound healing

Cited By (25)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US11432922B2 (en)2011-08-162022-09-06The University Of KansasBiomaterial based on aligned fibers, arranged in a gradient interface, with mechanical reinforcement for tracheal regeneration and repair
US9737393B2 (en)*2014-11-202017-08-22Boston Scientific Scimed, Inc.Tracheal implant
US20160143724A1 (en)*2014-11-202016-05-26Boston Scientific Scimed, Inc.Tracheal implant
US10487421B2 (en)*2015-06-172019-11-26Medprin Regenerative Medical Technologies Co., Ltd.Reinforced electrospun fibrous membrane and preparation method thereof
US12232963B2 (en)2015-08-122025-02-25Howmedica Osteonics Corp.Bioactive soft tissue implant and methods of manufacture and use thereof
US12171664B2 (en)2015-08-122024-12-24Howmedica Osteonics Corp.Bioactive soft tissue implant and methods of manufacture and use thereof
US11154638B2 (en)2015-08-122021-10-26Howmedica Osteonics Corp.Methods for forming scaffolds
US11331191B2 (en)2015-08-122022-05-17Howmedica Osteonics Corp.Bioactive soft tissue implant and methods of manufacture and use thereof
US10895020B2 (en)2015-08-262021-01-19Children's National Medical CenterMethod for generating an electro spun fiber medical implant
WO2017035500A1 (en)*2015-08-262017-03-02Childen's National Medical CenterPatient-specific tissue engineered vascular graft utilizing electrospinning
US10729548B2 (en)2016-05-022020-08-04Howmedica Osteonics Corp.Bioactive soft tissue implant and methods of manufacture and use thereof
US10617787B2 (en)2017-05-162020-04-14Embody Inc.Biopolymer compositions, scaffolds and devices
US11331410B2 (en)2017-05-162022-05-17Embody, Inc.Biopolymer compositions, scaffolds and devices
US10835639B1 (en)2017-05-162020-11-17Embody Inc.Biopolymer compositions, scaffolds and devices
US11116870B2 (en)2017-05-162021-09-14Embody Inc.Biopolymer compositions, scaffolds and devices
US10653817B2 (en)2017-10-242020-05-19Embody Inc.Method for producing an implantable ligament and tendon repair device
US20220176017A1 (en)*2017-10-242022-06-09Embody Inc.Biopolymer scaffold implants and methods for their production
US11213610B2 (en)*2017-10-242022-01-04Embody Inc.Biopolymer scaffold implants and methods for their production
US12201748B2 (en)*2017-10-242025-01-21Embody, Inc.Biopolymer scaffold implants and methods for their production
CN109833521A (en)*2017-11-292019-06-04郑州大学A kind of method and device preparing artificial blood vessel
US11338056B2 (en)2019-02-012022-05-24Embody, Inc.Microfluidic extrusion
US11338057B2 (en)2019-02-012022-05-24Embody, LLCMicrofluidic extrusion
US11020509B2 (en)2019-02-012021-06-01Embody, Inc.Microfluidic extrusion
US12233185B2 (en)2019-02-012025-02-25Embody, Inc.Microfluidic extrusion
US12290612B2 (en)2020-08-102025-05-06Lifenet HealthAligned fiber and method of use thereof

Also Published As

Publication numberPublication date
WO2013025819A2 (en)2013-02-21
US11432922B2 (en)2022-09-06
WO2013025819A3 (en)2013-07-11
US20220054255A1 (en)2022-02-24
US20200015962A1 (en)2020-01-16

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