Cornea metaphase preserving fluid without serum component

A technology of cornea and preservation solution, which is applied in the field of medium-term cornea preservation solution without serum components and its preparation, which can solve the problems of high price, inability to popularize and apply, and preservation crisis

Active Publication Date: 2016-11-23
拜欧迪赛尔成都生物科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] my country's corneal active preservation solution still relies on imports, such as the most commonly used Optisol preservation solution, although it has a significant function in maintaining the activity of corneal endothelial cells, but it is expensive, and because there is no

Method used

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  • Cornea metaphase preserving fluid without serum component
  • Cornea metaphase preserving fluid without serum component
  • Cornea metaphase preserving fluid without serum component

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0022] Preparation of corneal preservation solution:

[0023] 1. 500ml of compound electrolyte intraocular irrigation solution is used as the mother solution;

[0024] 2. Take 25g of chondroitin sulfate, add 275ml of deionized water, heat, dissolve and autoclave to make chondroitin sulfate solution; add 2.93g of sodium chloride, 0.6g of magnesium sulfate, 2.72g of potassium dihydrogen phosphate, add 100ml of water for injection to dissolve and autoclave , to make a sodium magnesium potassium salt solution; add 5 g of sodium hyaluronate, add 100 ml of water for injection to dissolve and sterilize by autoclaving, and make a sodium hyaluronate solution;

[0025] 3. Take a sterile container and add 500ml of compound electrolyte intraocular irrigation solution, 275ml of autoclaved chondroitin sulfate, 100ml of sodium magnesium potassium salt solution, and 100ml of sodium hyaluronate solution; add 3g of reduced glutathione and dexamethasone injection 1.5mg, levofloxacin injection 0...

Embodiment 2

[0031] Detection of the effect of corneal preservation solution:

[0032] 1. Get fresh pig eyeballs (obtained within 2 hours after slaughter), aseptically treat them, and cut out the whole cornea with 1-2mm sclera limbus, and place them in 20ml of the corneal preservation solution prepared in Example 1 and 20ml of Optisol as a contrast Corneal active preservation solution;

[0033] 2. Store at 4°C for 3 days, 7 days and 14 days for testing the preservation effect.

[0034] 3. After 3 days of storage, the corneal slices were taken out and stained with trypan blue. It was found that the number of corneal endothelial cells, the hexagonal shape and the transparency of the cornea preserved in the corneal active preservation solution were not different from those in the contrast Optisol corneal active preservation solution;

[0035] 4. After 1 week of storage, the corneal slices were taken out and stained with trypan blue. It was found that the number of corneal endothelial cells, ...

Embodiment 3

[0038] Corneal medium-term preservation solution to preserve cat cornea for penetrating keratoplasty:

[0039] 1. Take fresh (obtained within 2 hours after slaughter) cat corneal grafts in the corneal preservation solution prepared in Example 1, store them in a refrigerator at 4°C for 2 weeks, and wait for transplantation;

[0040] 2. Six healthy domestic cats were anesthetized. A 7.0mm-diameter trephine was routinely used to drill and cut the central cornea. After the cornea was cut off, the feline corneal grafts that had been stored for 2 weeks were placed on the cutting pillow, and a 7.25mm-diameter trephine was used to cut the central cornea. Drill the implant from the endothelial surface, cover it on the cat corneal implant hole, suture intermittently with 10 / 0 nylon suture, and form the anterior chamber watertight;

[0041] 3. Observe the transparency of corneal grafts with slit lamp on 1 day, 3 days, 5 days, 7 days and 14 days after operation, and detect the endothelial...

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Abstract

The invention relates to cornea metaphase preserving fluid without a serum component. The cornea metaphase preserving fluid is prepared from an compound electrocular irrigating solution, sodium chloride, magnesium sulfate, monopotassium phosphate, chondroitin sulfate, sodium hyaluronate, a HEPES buffer solution, hydrochloric acid dexamethasone, reduced glutathione and levofloxacin. The cornea metaphase preserving fluid is reddish and transparent liquid with a specific electrolyte ionic concentration, a pH value, crystalloid osmotic pressure and colloid osmotic pressure. Needed raw materials are easy to get, the cornea metaphase preserving fluid does not contain the serum component, the risks of infecting special viruses is avoided, osmotic pressure of intracellular fluid and osmotic pressure of extracellular fluid are balanced through various ions, and the preservation effect is remarkable.

Description

technical field [0001] The invention belongs to the technical field of chemical compositions, in particular to a medium-term corneal preservation solution without serum components, a preparation method and application thereof. Background technique [0002] Most of the preservation methods of cornea are active preservation in clinical application. The common preservation of corneal activity (one of the important techniques of eye bank) can be divided into three types: short-term, medium-term and long-term according to the preservation time of corneal endothelial cell activity. The short-term storage method is to store the corneal tissue in a wet room at 4°C after aseptic treatment, and the storage time is within 24 hours. Medium-term preservation is generally preserved with a preservation solution. The most commonly used corneal activity preservation solution in the world, such as Optisol, can preserve the activity of corneal endothelial cells for up to 14 days. Long-term p...

Claims

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Application Information

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IPC IPC(8): A01N1/02
CPCA01N1/0226
Inventor 史真史伟云
Owner 拜欧迪赛尔成都生物科技有限公司
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