Method for preparing pig corneal endothelium implant piece by adopting femtosecond laser technology for assistance

A femtosecond laser, porcine cornea technology, applied in eye implants, medical science, prosthesis, etc., can solve problems such as shortage of donors, achieve mild edema, facilitate planting culture and observation under microscope, reduce immunogens sexual effect

Active Publication Date: 2019-02-22
黄国富 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Endothelial keratoplasty is the replacement of diseased endothelium with healthy donor tissue. It has been widely recognized as the only effective option for the treatment of corneal endothelial dystrophy. At present, whether it is penetrating keratoplasty, or DSEK, DMEK and other surgical methods The improvement of corneal donors is required to provide corneal donors, which cannot fundamentally solve the problem of donor shortage. In recent years, endothelial cell transplantation has become a research hotspot, and significant progress has been made in the in vitro culture of autologous cells or allogeneic cells.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0022] S1. Take the transparent porcine cornea and wash and soak it repeatedly with PBS containing double antibodies. Select pig eyes with complete corneal epithelium and no scratches, and store them in an ice box. Routinely use a slit lamp to observe the anterior segment. Corvis corneal biomechanical analyzer Section 0CT measures central corneal pachymetry and corneal topography to check corneal curvature.

[0023] S2. Enter the interactive interface of the femtosecond laser machine to set the processing parameters. After the laser is accurately focused on the set corneal surface, it will be flattened and laser blasted. Corneal slices with a thickness of 100-200um in the corneal endothelial layer of the Descemet's membrane were taken out and quickly transferred to the laboratory under sterile conditions;

[0024] S3. Place the prepared corneal slice in sterile water containing double antibodies to swell at 4°C for 12 hours, freeze at -80°C for 1 hour, thaw in a water bath at ...

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PUM

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Abstract

The invention discloses a method for preparing a pig corneal endothelium implant piece by adopting a femtosecond laser technology for assistance. The method comprises the following steps that S1, a pig cornea is pretreated; S2, after the pig cornea enters an interactive interface of a femtosecond laser machine, surgical parameters of femtosecond lasers are set according to a pig cornea thickness value measured before surgery, the lasers are precisely gathered on a set corneal surface and flattened, and laser blasting and gasified cutting are conducted to complete manufacturing of a corneal posterior lamellum implant piece which is a corneal endothelium piece with a posterior elastic layer, wherein the thickness is 100 microns, and the diameter is 8.5 mm; S3, decellularization operation isconducted through physical methods such as swelling, repeated freezing and thawing, shaking and air drying; S4, the pig corneal endothelium implant piece is prepared. The method adopts an instantaneous laser blasting technology so that precise corneal cutting can be completed, the immunogenicity of a pig corneal matrix piece is reduced, and the ultra-thin pig corneal endothelium implant piece withthe posterior elastic layer can also be prepared at the same time, so that transplantation difficulties caused by nonuniform thickness are greatly reduced.

Description

technical field [0001] The invention relates to the field of preparation of corneal endothelial grafts, in particular to a method for preparing pig corneal endothelial grafts assisted by femtosecond laser technology. Background technique [0002] In recent years, tissue engineered (TE) cornea has made significant progress, and it has attracted much attention because it can greatly alleviate the problem of organ failure and shortage of transplanted donor organs. Since human corneal endothelial cells cannot be repaired after injury, how to It is particularly important to establish a corneal endothelial cell tissue in vitro that can perform biological functions similar to corneal endothelial cells to treat patients with endothelial blindness. Endothelial keratoplasty is the replacement of diseased endothelium with healthy donor tissue. It has been widely recognized as the only effective option for the treatment of corneal endothelial dystrophy. At present, whether it is penetra...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61F2/14
CPCA61F2/142A61F2240/002
Inventor 黄国富肖国蓓崔雯雯
Owner 黄国富
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