Porous scaffold for guiding oral soft and hard tissue integrated repair and preparation method thereof

A technology of porous scaffolds and composite scaffolds, applied in tissue regeneration, prostheses, non-woven fabrics, etc., can solve the problems of bone regeneration effects, easy displacement of bone powder, etc., and achieve the effect of improving degradation performance and preventing displacement

Inactive Publication Date: 2021-08-10
SICHUAN UNIV
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  • Abstract
  • Description
  • Claims
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Problems solved by technology

[0004] The purpose of the present invention is: the present invention provides an integrated porous composite scaffold and its preparation method, which solves the relatively large alveolar bone

Method used

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  • Porous scaffold for guiding oral soft and hard tissue integrated repair and preparation method thereof
  • Porous scaffold for guiding oral soft and hard tissue integrated repair and preparation method thereof
  • Porous scaffold for guiding oral soft and hard tissue integrated repair and preparation method thereof

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Embodiment 1

[0056] A preferred embodiment of the present invention provides a method for preparing a gradient material for guiding periodontal soft and hard tissue regeneration. The raw materials include: pigskin gelatin from Shanghai Aladdin Reagent Co., Ltd., trifluoroethanol, and heparin sodium from Guangzhou Yisheng Co., Ltd. Polycaprolactone, the specific steps are as follows:

[0057] S1: Weigh 0.3g of polycaprolactone and gelatin respectively, add them together to 5ml of trifluoroethanol, stir in a water bath at 25°C until completely dissolved, and rotate at 300rpm;

[0058] S2. Add dropwise 0.015mL acetic acid solution in the mixed solution and fully stir to obtain a stable polymer blend solution without obvious phase separation, as the spinning solution;

[0059] S3: Use the electrospinning process to spin the spinning solution in step S2 to prepare the upper microporous fiber membrane. The needle used is a 22G flat needle, and the metal plate receives the microporous fiber membr...

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Abstract

The invention provides preparation and application of a porous scaffold for guiding oral soft and hard tissue integrated repair. The integrated stent is prepared by combining electrostatic spinning with 3D printing. The composition and aperture of the integrated stent are in gradient change, and the upper layer is a b-FGF-loaded heparin grafted polycaprolactone/gelatin microporous fiber membrane, plays a barrier role and is used for guiding soft tissue regeneration; and the lower layer is a polycaprolactone/gelatin/hydroxyapatite macroporous scaffold and is used for guiding hard tissue regeneration. The interface of the upper-layer fiber membrane and the interface of the lower-layer 3D stent are firmly combined, the 3D stent has a through porous structure, and the compressive strength of the 3D stent is 13.86 MPa and is similar to that of cancellous bones of a human body. Both the upper-layer fibrous membrane and the lower-layer scaffold have good cell compatibility, and the lower-layer scaffold can effectively promote osteogenic differentiation of the BMSCs. The porous scaffold capable of effectively guiding in-vivo soft and hard tissue integrated repair is prepared and can be applied to synchronous regeneration of periodontal tissue and alveolar bone defects.

Description

technical field [0001] The invention relates to the field of biomedical materials, in particular to a porous scaffold for guiding the integrated repair of soft and hard tissues in the oral cavity and a preparation method thereof. Background technique [0002] Periodontitis is the most common oral disease, and severe cases can lead to alveolar bone defects, periodontal attachment loss, tooth loss and other symptoms of periodontal bone defects. Guided tissue regeneration (GTR) is based on the different migration speeds of various tissue cells, using surgical means to place a biofilm with a barrier function between the soft tissue and the bone defect area to form an isolation space to prevent interference. Bone repairing and fast migrating epithelial cells and connective tissue cells enter the bone defect area, avoiding the competitive inhibition of these cells on the precursor osteoblasts with potential bone formation ability and slow migration speed, and realizing the reparab...

Claims

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Application Information

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IPC IPC(8): A61L27/56A61L27/40A61L27/54A61L27/20A61L27/12A61L27/22A61L27/18A61L27/50B33Y70/10B33Y80/00B33Y10/00D04H1/728
CPCA61L27/12A61L27/18A61L27/20A61L27/222A61L27/50A61L27/54A61L27/56A61L2300/112A61L2300/412A61L2300/414A61L2400/12A61L2430/02A61L2430/34B33Y10/00B33Y80/00B33Y70/10D04H1/728C08L5/10C08L67/04
Inventor 邹琴李玉宝刘杰林明玥王晨鑫
Owner SICHUAN UNIV
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