Patents Assigned to Allosource
  • Patent number: 12251494
    Abstract: The disclosure provides bone graft materials, methods for their use and manufacture. Exemplary bone graft materials comprise combining a radiopaque component with a cancellous bone component to produce a bone graft material, wherein the cancellous bone component comprises native osteoreparative cells. Methods for treating a subject with the bone graft material are also provided.
    Type: Grant
    Filed: August 15, 2022
    Date of Patent: March 18, 2025
    Assignee: AlloSource
    Inventors: Reginald Stilwell, Ramasamy Sakthivel, William Maslanik
  • Publication number: 20250057657
    Abstract: Compositions comprising a cartilage sheet comprising a plurality of interconnected cartilage tiles and a biocompatible carrier are provided. Methods of manufacturing cartilage compositions comprising a cartilage sheet comprising a plurality of interconnected cartilage tiles are also provided.
    Type: Application
    Filed: August 26, 2024
    Publication date: February 20, 2025
    Applicant: AlloSource
    Inventors: Carolyn Barrett Rorick, Yaling Shi
  • Patent number: 12127943
    Abstract: Compositions comprising a cartilage sheet comprising a plurality of interconnected cartilage tiles and a biocompatible carrier are provided. Methods of manufacturing cartilage compositions comprising a cartilage sheet comprising a plurality of interconnected cartilage tiles are also provided.
    Type: Grant
    Filed: July 29, 2021
    Date of Patent: October 29, 2024
    Assignee: AlloSource
    Inventors: Carolyn Barrett Rorick, Yaling Shi
  • Patent number: 12059508
    Abstract: Systems and methods for the automated demineralization of bone and decellularization of soft tissue include a mixing assembly communicatively coupled with a control and reporting system. The mixing assembly includes a housing that supports a cannister sub-assembly forming a mixing chamber having a reagent inlet, a reagent outlet, and an internal fluid agitator. A motor is operably coupled with the agitator and configured to spin the agitator in first and second directions relative to the cannister, thereby agitating fluid contained within the mixing chamber. At least one pump is configured to progressively inject measured quantities of a plurality of reagents into the mixing chamber. The associated control and reporting system includes a user terminal that displays a graphical user interface enabling a user to initiate an automated demineralization or decellularization procedure in which the mixing assembly demineralizes tissue placed within the mixing chamber. Other embodiments are also disclosed.
    Type: Grant
    Filed: May 20, 2019
    Date of Patent: August 13, 2024
    Assignee: Allosource
    Inventors: Aidan Griffin, Timothy Bennett, Joslynn Shamis, Luke Shubin, Yurid Gourgel, Lauren Blume, Kenneth Blood, Adrian Samaniego, Bruce Mock, Cathleen Lucine Badillo, Matthew Peterson, Reginald Stilwell
  • Publication number: 20240263141
    Abstract: Provided are enriched tissue extracts and methods of making and using such extracts. The enriched tissue extracts contain biologically active components. Some extracts produced by the methods contain extracellular vesicles. The methods can involve administering a physical stress on a biological sample comprising live cells or otherwise stimulating the live cells of the biological sample. Also contemplated are methods in which the biological sample does not contain live cells. The biological sample is incubated in an extraction solution for a period of time sufficient for extraction of biologically active components from the biological sample. Methods of using the extracts, or extracellular vesicles isolated therefrom, therapeutically and for in vitro purposes are also provided.
    Type: Application
    Filed: June 8, 2022
    Publication date: August 8, 2024
    Applicant: ALLOSOURCE
    Inventors: William Maslanik, Reginald Stilwell, Jeffrey Brown, Michael Floren
  • Patent number: 11806442
    Abstract: Periosteum harvesting and processing systems and methods enable rapid, efficient, and repeatable harvesting of periosteum tissue from human long bones and processing of the tissue into individual fibers for use in strengthening surgical allograft products. One harvesting and processing method involves providing a human long bone, securing the long bone between two rotating live centers, scraping, using one of a plurality of harvesting tools selected from a harvesting and processing kit, periosteum tissue from the long bone, executing a first wash cycle comprising a hydrogen peroxide wash, executing a second wash cycle comprising an isopropyl alcohol wash, executing a third wash cycle comprising a phosphate buffered saline wash, compressing the periosteum tissue to remove excess fluid, cryofracturing the tissue until a desired fiber size is achieved, and separating the periosteum tissue into individual periosteum fibers having the desired fiber size. Other embodiments are also disclosed.
    Type: Grant
    Filed: September 16, 2019
    Date of Patent: November 7, 2023
    Assignee: Allosource
    Inventors: Megan Maccagnan, Cameron Mattson, Cole Watkins, Adrian C. Samaniego, William Maslanik
  • Publication number: 20230152194
    Abstract: An extraction system for testing microbial contamination includes a biocompatible outer vessel that has a side wall and a biocompatible suspension system that is positionable within an interior of the biocompatible outer vessel. The biocompatible suspension system includes a horizontal member on which a sample may be supported and a securement mechanism that is engagable with the side wall of the biocompatible outer vessel to maintain the suspension system at a desired position within the biocompatible outer vessel.
    Type: Application
    Filed: January 9, 2023
    Publication date: May 18, 2023
    Applicant: AlloSource
    Inventors: Arthur Joslyn, Kenneth Blood, Jan Zajdowicz, Lauren Kapushion, Amy Kippen, Samantha White, Donald White
  • Patent number: 11607315
    Abstract: A pre-sutured allograft construct and method of manufacture for repairing, replacing, reconstructing, or augmenting a hip or shoulder labrum may include a folded tissue portion extending from a first end to a second end and forming top, middle, and bottom folds. A stitched pattern secures the folded tissue portion into a graft roll having an overall length extending from a first adjustable region, through a central region, and through a second adjustable region. A continuous series of whip stitches extends from the first adjustable region, through the central region, and through the second adjustable region. A series of triple circumferential stitches overlays the whip stitches in the first and the second adjustable regions, while a series of circumferential stitches alternates with the whip stitches in the central region. The construct is pre-manufactured as an allograft product, but is adjustable during the surgical procedure within the body. Other embodiments are also disclosed.
    Type: Grant
    Filed: April 4, 2022
    Date of Patent: March 21, 2023
    Assignee: Allosource
    Inventors: Brian White, Christopher Irons, Ruth Bledsoe, Marina Bull, Kenneth Blood
  • Publication number: 20230074239
    Abstract: The disclosure provides bone graft materials, methods for their use and manufacture. Exemplary bone graft materials comprise combining a radiopaque component with a cancellous bone component to produce a bone graft material, wherein the cancellous bone component comprises native osteoreparative cells. Methods for treating a subject with the bone graft material are also provided.
    Type: Application
    Filed: August 15, 2022
    Publication date: March 9, 2023
    Applicant: AlloSource
    Inventors: Reginald STILWELL, Ramasamy SAKTHIVEL, William MASLANIK
  • Patent number: 11579054
    Abstract: An extraction system for testing microbial contamination includes a biocompatible outer vessel that has a side wall and a biocompatible suspension system that is positionable within an interior of the biocompatible outer vessel. The biocompatible suspension system includes a horizontal member on which a sample may be supported and a securement mechanism that is engagable with the side wall of the biocompatible outer vessel to maintain the suspension system at a desired position within the biocompatible outer vessel.
    Type: Grant
    Filed: April 11, 2019
    Date of Patent: February 14, 2023
    Assignee: ALLOSOURCE
    Inventors: Arthur Joslyn, Kenneth Blood, Jan Zajdowicz, Lauren Kapushion, Amy Kippen, Samantha White, Donald White
  • Patent number: 11484916
    Abstract: There is disclosed a system and methods for debriding soft tissue from bone using a high-pressure water debridement system. One embodiment includes a cylindrical sleeve bounded by endcaps and having a drainage port positioned for effluent drainage. A central shaft is configured to receive a bone segment and is disposed along a longitudinal center of the sleeve and rotatively coupled between the endcaps. At least one high-pressure water nozzle is disposed on each side of the sleeve, each of which is positioned to impact the bone segment with a high-pressure water stream. A rotational actuator is configured to rotate the central shaft and the bone segment relative to the sleeve and the water nozzles such that when the high-pressure water nozzles are operational, the high-pressure water streams debride the bone segment. Other embodiments are also disclosed.
    Type: Grant
    Filed: April 2, 2020
    Date of Patent: November 1, 2022
    Assignee: Allosource
    Inventors: Denis M. Meade, Shane Graham, Kyle von Kaenel
  • Patent number: 11452796
    Abstract: The disclosure provides bone graft materials, methods for their use and manufacture. Exemplary bone graft materials comprise combining a radiopaque component with a cancellous bone component to produce a bone graft material, wherein the cancellous bone component comprises native osteoreparative cells. Methods for treating a subject with the bone graft material are also provided.
    Type: Grant
    Filed: June 29, 2018
    Date of Patent: September 27, 2022
    Assignee: AlloSource
    Inventors: Reginald Stilwell, Ramasamy Sakthivel, William Maslanik
  • Patent number: 11229725
    Abstract: The present invention provides compositions for treating soft tissue injuries comprising a collagen matrix and mesenchymal stem cells adhered to the collagen matrix. Methods of making and using compositions comprising a collagen matrix and mesenchymal stem cells adhered to the collagen matrix are also provided.
    Type: Grant
    Filed: January 15, 2020
    Date of Patent: January 25, 2022
    Assignee: ALLOSOURCE
    Inventors: Reginald L. Stilwell, Brent Atkinson, Yaling Shi, Brian Dittman
  • Publication number: 20210353422
    Abstract: Compositions comprising a cartilage sheet comprising a plurality of interconnected cartilage tiles and a biocompatible carrier are provided. Methods of manufacturing cartilage compositions comprising a cartilage sheet comprising a plurality of interconnected cartilage tiles are also provided.
    Type: Application
    Filed: July 29, 2021
    Publication date: November 18, 2021
    Applicant: AlloSource
    Inventors: Carolyn Barrett Rorick, Yaling Shi
  • Patent number: 11123193
    Abstract: Compositions comprising a cartilage sheet comprising a plurality of interconnected cartilage tiles and a biocompatible carrier are provided. Methods of manufacturing cartilage compositions comprising a cartilage sheet comprising a plurality of interconnected cartilage tiles are also provided.
    Type: Grant
    Filed: July 1, 2019
    Date of Patent: September 21, 2021
    Assignee: ALLOSOURCE
    Inventors: Carolyn Barrett Rorick, Yaling Shi
  • Publication number: 20210146007
    Abstract: The disclosure provides bone graft materials, methods for their use and manufacture. Exemplary bone graft materials comprise combining a radiopaque component with a cancellous bone component to produce a bone graft material, wherein the cancellous bone component comprises native osteoreparative cells. Methods for treating a subject with the bone graft material are also provided.
    Type: Application
    Filed: June 29, 2018
    Publication date: May 20, 2021
    Applicant: AlloSource
    Inventors: Ramasamy SAKTHIVEL, Reginald STILWELL, William MASLANIK
  • Patent number: 10806599
    Abstract: There is disclosed a system and methods for safely, precisely, and efficiently cutting cadaveric bone segments into a number of dimensionally standardized pieces. One embodiment provides a jig system for use with a band saw. The jig system may include a v-shaped trough riding upon a plate and at least one rail designed to glide within a corresponding groove formed in the band saw table and stretching parallel to the blade. The trough may include a channel having a series of incremental stops extending between its proximal and distal ends. A bone-advancement wedge may be advanced proximally along the channel between the incremental stops to advance at least one bone segment within the trough toward the proximal end of the trough such that, by sliding the rail(s) within the table groove(s), a desired incremental portion of the bone segment is introduced to the blade. Other embodiments are also disclosed.
    Type: Grant
    Filed: November 29, 2017
    Date of Patent: October 20, 2020
    Assignee: Allosource
    Inventors: Denis M. Meade, Shane Graham, Kyle von Kaenel
  • Patent number: 10772986
    Abstract: Embodiments of the present technology may permit for native, intact, natural, human-derived, or allograft-derived fibers to be used as threads for suturing. Embodiments may include a thread for suturing. The thread may include a first portion, which includes a fascia fiber. The first portion may have a first end that includes the fascia fiber. The thread may also include a second portion including a non-human-derived fiber. The second portion may have a first end that includes the non-human-derived fiber. The first end of the second portion may be attached to the first end of the first portion. Embodiments may include a method of forming a thread. The method may include attaching a first end of a fascia fiber to a first end of a first non-human-derived fiber. The method may also include attaching a second end of the fascia fiber to a first end of a second non-human-derived fiber.
    Type: Grant
    Filed: January 22, 2018
    Date of Patent: September 15, 2020
    Assignee: AlloSource
    Inventors: Adrian C. Samaniego, Teresa C. Romansky, Matthew J. Southard
  • Patent number: 10730122
    Abstract: There are disclosed systems and methods for safely and effectively removing the articular cartilage and cortical bone layers from an articular surface of a human cadaveric femoral head. One embodiment includes an osseous-sanding accessory system installed upon a conventional band saw having a motor and a cabinet that houses a pulley coupled with a primary drive shaft rotated by the motor. The accessory system may include a threaded drive shaft coupled with the primary drive shaft, a grinding disk having an abrasive surface and affixed about a distal end of the threaded drive shaft, and a removable accessory table mounted to the band saw below the grinding disk. When the motor rotates the primary drive shaft, and thus the threaded drive shaft, the grinding disk rotates relative to the accessory table and abrades osseous tissues introduced to the abrasive surface of the grinding disk. Other embodiments are also disclosed.
    Type: Grant
    Filed: December 12, 2017
    Date of Patent: August 4, 2020
    Assignee: ALLOSOURCE
    Inventors: Denis M. Meade, Shane Graham
  • Publication number: 20200179571
    Abstract: The present invention provides compositions for treating soft tissue injuries comprising a collagen matrix and mesenchymal stem cells adhered to the collagen matrix. Methods of making and using compositions comprising a collagen matrix and mesenchymal stem cells adhered to the collagen matrix are also provided.
    Type: Application
    Filed: January 15, 2020
    Publication date: June 11, 2020
    Applicant: AlloSource
    Inventors: Reginald L. Stilwell, Brent Atkinson, Yaling Shi, Brian Dittman