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US20210402052A1 - Medical Implants And Methods Of Manufacture - Google Patents

Medical Implants And Methods Of Manufacture
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Publication number
US20210402052A1
US20210402052A1US17/361,582US202117361582AUS2021402052A1US 20210402052 A1US20210402052 A1US 20210402052A1US 202117361582 AUS202117361582 AUS 202117361582AUS 2021402052 A1US2021402052 A1US 2021402052A1
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United States
Prior art keywords
zeolite
polymer
surface region
medical implant
implant
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
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US17/361,582
Inventor
Derrick Johns
Joseph J. Crudden
Sriram Sankar
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Difusion Inc
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Difusion Inc
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Application filed by Difusion IncfiledCriticalDifusion Inc
Priority to US17/361,582priorityCriticalpatent/US20210402052A1/en
Assigned to DIFUSION, INC.reassignmentDIFUSION, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SANKAR, SRIRAM, JOHNS, DERRICK, CRUDDEN, JOSEPH J.
Publication of US20210402052A1publicationCriticalpatent/US20210402052A1/en
Priority to US18/373,603prioritypatent/US12178936B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

Anti-biofilm osseointegrating and/or tissue-integrating implantable biomaterial devices that optionally can elute therapeutic ions such as magnesium, silver, copper and/or zinc. In certain embodiments, the devices are engineered to produce structures suitable as implants having a relatively high surface population of zeolite. Methods of producing the devices are also disclosed.

Description

Claims (20)

What is claimed is:
1. A medical implant comprising a thermoplastic polymer defining a main body region and a surface region, said surface region being configured to be exposed to bodily fluid or tissue of a host when said medical implant is implanted in said host, said surface region comprising zeolite in an amount greater than 12% by weight.
2. The medical implant ofclaim 1, wherein said surface region contains a plurality of indentations containing said zeolite.
3. The medical implant ofclaim 1, wherein said surface region comprises zeolite in an amount greater than 15% by weight.
4. The medical implant ofclaim 1, wherein said surface region comprises zeolite in an amount greater than 20% by weight.
5. The medical implant ofclaim 1, wherein said surface region comprises zeolite in an amount greater than 25% by weight.
6. The medical implant ofclaim 1, wherein said surface region comprises zeolite in an amount greater than 30% by weight.
7. The medical implant ofclaim 1, wherein said surface region comprises zeolite in an amount greater than 50% by weight.
8. The medical implant ofclaim 1, wherein said main body region comprises zeolite in an amount of 12% by weight or less.
9. The medical implant ofclaim 1, wherein said implant is configured as a member selected from the group consisting of an ACL screw.
10. The medical implant ofclaim 1, wherein said implant is configured as a spinal implant, a knee implant, a hip stem, a skull flap, a dental implant or a trauma plate.
11. The medical implant ofclaim 1, wherein said thermoplastic polymer comprises PEEK.
12. The medical implant ofclaim 1, further comprising carbon fibers.
13. The medical implant ofclaim 1, wherein said zeolite comprises one or more antimicrobial and/or therapeutic metal ions.
14. The medical implant ofclaim 13, wherein said one or more metal ions is selected from the group consisting of silver, copper, zinc, magnesium and strontium.
15. A method of making a medical implant having a main body region and an exposed surface region and comprising a polymer, the method comprising:
a. heating the polymer to a molten state
b. contacting the polymer with a mixture of zeolite and indentation-forming agent with the application of force to form indentations in said exposed surface region and drive said mixture into the formed indentations of the exposed surface region;
c. cooling the polymer; an
d. washing the resulting composite.
16. The method ofclaim 15, wherein said polymer is PEEK.
17. A method of making a medical implant having a main body region and an exposed surface region and comprising a polymer, the method comprising:
a. heating the polymer to a molten state;
b. contacting the polymer with an indentation-forming member and zeolite to form indentations in said exposed surface region and drive the zeolite into the indentations in the exposed surface region; and
c. cooling the resulting composite structure.
18. The method ofclaim 17, wherein said polymer is PEEK.
19. The method ofclaim 17, wherein said indentation-forming member comprises sandpaper.
20. A method of making a medical implant having a main body region and an exposed surface region and comprising a polymer, the method comprising:
a. injecting the polymer into the cavity of a mold at elevated temperature sufficient to melt the resin, the mold comprising a surface having a plurality of projections and a coating of zeolite;
b. causing the melted polymer to contact said projections and driving the zeolite into the resin;
c. removing the resulting article from the mold and cooling it.
US17/361,5822020-06-302021-06-29Medical Implants And Methods Of ManufactureAbandonedUS20210402052A1 (en)

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US17/361,582US20210402052A1 (en)2020-06-302021-06-29Medical Implants And Methods Of Manufacture
US18/373,603US12178936B2 (en)2020-06-302023-09-27Medical implants and methods of manufacture

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US202063046191P2020-06-302020-06-30
US17/361,582US20210402052A1 (en)2020-06-302021-06-29Medical Implants And Methods Of Manufacture

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US12178936B2 (en)2020-06-302024-12-31Difusion, Inc.Medical implants and methods of manufacture

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