Preparation method of keratin material for biomedical engineering

A biomedical and keratin technology, which is applied in the field of keratin material preparation, can solve the problems of low molecular weight of regenerated protein, poor targeting of reagent groups, destruction of primary structure peptide bonds, etc.

Inactive Publication Date: 2012-04-18
蒙一纯 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

With the in-depth research on keratin biomaterials and the improvement of its performance requirements, the problems of the traditional production process of keratin have been exposed: firstly, the reagent group of strong acid, strong alkali, strong reduction and strong oxidation method has poor targeting , in addition to destroying the disulfide bond and hydrogen bond of the protein, the peptide bond of the primary structure of the protein is severely damaged, and the molecular weight of the regenerated protein is low, and the molecular weight of the regenerated keratin is proportional to its material strength
Second, the traditional technology uses a large amount of environmentally unfriendly reagents such as inorganic acids and reducing agents, the production process is complicated, and there are many problems in the environmental follow-up treatment

Method used

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Examples

Experimental program
Comparison scheme
Effect test

example 1

[0024] (1) The raw materials are human hair and human nails, which are washed with water, dried, degreased with ethanol, and dried.

[0025] (2) with 15% H 2 o 2 100ml contains 1g of calcium hypochlorite to bleach, wash and dry raw materials.

[0026] (3) Add 1-15% by weight of imidazolium chloride series ionic liquid, stir and dissolve for 2-10 hours at 100-150°C. The colloidal ionic liquid containing keratin can be obtained.

[0027] (4) Remove the ionic liquid by water dialysis. The aqueous keratin solution is harvested.

[0028] (5) The hydrogel keratin can be directly molded into a film shape, a granular shape, and various special-shaped structures and then dried.

[0029] (6) To detect residual imidazolium chloride, the solution is glacial acetic acid-acetone (1:9), the developing solution is ethyl acetate-acetone-water-concentrated ammonia (90:6:2:1), and the thin layer is exposed to ultraviolet light. Observed at 240nm. .

[0030] (7) By heating the aqueous ion...

example 2

[0032] (1) The raw materials are human hair and human nails, which are washed with water, dried, degreased with ethanol, and dried.

[0033] (2)H 2 o 2 +Calcium hypochlorite bleach, wash, dry.

[0034] (3) Add 1-15% by weight of imidazolium chloride series ionic liquid, stir and dissolve for 2-10 hours at 100-150°C. The colloidal keratin ionic liquid can be obtained.

[0035] (4) The colloidal keratin ionic liquid is put into acetonitrile or methanol, and the keratin is precipitated, dried into a powder, and directly compressed into a film shape, a granular shape, and various special-shaped structures.

[0036] (5) To detect the residual imidazolium chloride salt, the solution is glacial acetic acid-acetone (1:9), the developing solution is ethyl acetate-acetone-water-concentrated ammonia (90:6:2:1), and the thin layer is exposed to ultraviolet light. Observed at 240nm.

[0037] (6) By heating the aqueous ionic liquid to volatilize acetonitrile or methanol, the ionic liqu...

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Abstract

The invention relates to preparation of a keratin material used in the field of biomedical engineering. The keratin material is prepared by washing human hair and nails used as raw materials with water, drying, bleaching, washing with water, drying, adding 1-15% by weight of imidazolium chloride ionic liquid, and stirring and dissolving at 100-150 DEG C for 2-10 hours to obtain colloidal keratin ionic liquid; removing ionic liquid from the colloidal keratin ionic liquid with a water dialysis method to obtain a cross-linked keratin hydrogel solution; or spraying methanol or acetonitrile to the colloidal keratin ionic liquid to separate out keratin, drying and grinding into powder; pressing keratin into a film shape, a granular shape and various irregular structures and drying; and after the above processes, detecting residual amount of imidazolium chloride. The obtained keratin material is suitable for injury repairing materials, skin coating materials, medical beauty materials and tissue adhesion prevention materials which are used in biomedical engineering.

Description

Field of invention: [0001] The present invention is the preparation of keratin material used in the field of biomedical engineering. It is used in the manufacture of various implant materials, wound covering materials, tissue engineering frame materials, repairing nerve defects, repairing tendon, ligament defects, and soft tissue filling materials. Background technique: [0002] Human hair is the only human-derived protein that can be obtained in large quantities in vitro. Its physical properties have strong mechanical properties: namely, toughness, elasticity and stretch resistance. potential ability. Furthermore, since it is easy to obtain materials, there is no damage to the donor, and materials can be obtained repeatedly. As early as the 1960s, hair as a biological material attracted the attention of scholars (United States Patent 2993794 Process for preparing keratin protein). [0003] Structure and Composition of Human Hair Hair is derived from keratinized epitheliu...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61L15/32A61L27/22C07K1/14
Inventor 蒙一纯蒙虎
Owner 蒙一纯
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