18747769. COLLAGEN FIBERS AND ARTICLES FORMED THEREFROM simplified abstract (EDWARDS LIFESCIENCES CORPORATION)
COLLAGEN FIBERS AND ARTICLES FORMED THEREFROM
Organization Name
EDWARDS LIFESCIENCES CORPORATION
Inventor(s)
Tara J. Tod of Riverside CA (US)
COLLAGEN FIBERS AND ARTICLES FORMED THEREFROM - A simplified explanation of the abstract
This abstract first appeared for US patent application 18747769 titled 'COLLAGEN FIBERS AND ARTICLES FORMED THEREFROM
The patent application describes methods of manufacturing collagen fibers by decellularizing collagenous tissue, homogenizing it, separating collagen fibers, exposing them to an acidic solution, and forming various structures with the fibers.
- Decellularizing collagenous tissue
- Homogenizing the tissue
- Separating collagen fibers
- Exposing fibers to an acidic solution
- Forming structures like sutures, woven or knitted structures, or bioprosthetic devices
Potential Applications: - Medical sutures - Tissue engineering - Bioprosthetic devices
Problems Solved: - Providing a method for manufacturing collagen fibers efficiently - Creating collagen-based structures for medical applications
Benefits: - Enhanced biocompatibility - Customizable structures for specific applications - Potential for regenerative medicine advancements
Commercial Applications: Title: "Innovative Collagen Fiber Manufacturing for Medical Applications" This technology can be used in the medical device industry for producing sutures, implants, and other collagen-based products. It has the potential to revolutionize tissue engineering and regenerative medicine markets.
Prior Art: Researchers can explore existing patents related to collagen fiber manufacturing, tissue engineering, and bioprosthetic devices to understand the current state of the art in this field.
Frequently Updated Research: Stay updated on advancements in collagen fiber manufacturing techniques, tissue engineering applications, and bioprosthetic device development to leverage the latest innovations in the field.
Questions about Collagen Fiber Manufacturing: 1. How does the decellularization process impact the properties of collagen fibers? Decellularization removes cellular components from the tissue, leaving behind the extracellular matrix, which can enhance the biocompatibility of collagen fibers.
2. What are the potential challenges in scaling up the production of collagen fibers for commercial applications? Scaling up production may require optimization of processes, quality control measures, and regulatory compliance to meet market demands.
Original Abstract Submitted
Methods of manufacturing collagen fibers comprising any one, a combination or all of the following: at least partially decellularizing a collagenous tissue; homogenizing the collagenous tissue; separating at least a portion of collagen fibers from the collagenous tissue; exposing the collagen fibers to an acidic solution before or after the separating; and forming at least one of a suture, a woven structure, a knitted structure, or a bioprosthetic device with the collagen fibers.
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