Sodium hyaluronate hydrogel with fast curing function and preparing method thereof

A sodium hyaluronate and rapid curing technology, applied in the field of biomedical engineering, can solve the problems of low acylation rate of products, unfavorable for 3D printing, prolonged reaction time, etc., achieve high acylation rate and reduce the possibility of organic residues , the effect of short reaction time

Inactive Publication Date: 2019-08-09
杭州枫霖科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, during the esterification reaction, acidic substances will be produced to affect the pH of the reaction system
Therefore, not only the reaction efficiency is lower, but also the reaction time is greatly prolonged.
At the same time, due to the unoptimized reaction conditions, more methacrylic anhydride will be used in the above preparation method, so that the acylation rate of the product is low, which in turn makes the gelation rate slow and the mechanical strength is low, which is not conducive to 3D printing.

Method used

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  • Sodium hyaluronate hydrogel with fast curing function and preparing method thereof
  • Sodium hyaluronate hydrogel with fast curing function and preparing method thereof
  • Sodium hyaluronate hydrogel with fast curing function and preparing method thereof

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Embodiment 1

[0031] A sodium hyaluronate hydrogel with rapid curing function, in terms of mass percentage, the sodium hyaluronate hydrogel comprises 7% sodium hyaluronate, 4% methacrylic anhydride, and 0.5% photoinitiator , 3% alkaline buffer solution, and the balance is deionized water.

Embodiment 2

[0033] A sodium hyaluronate hydrogel with rapid curing function, in terms of mass percentage, the sodium hyaluronate hydrogel comprises 8% sodium hyaluronate, 5% methacrylic anhydride, and 0.9% photoinitiator , 5% alkaline buffer solution, and the balance is deionized water.

Embodiment 3

[0035] A preparation method of sodium hyaluronate hydrogel, the preparation method comprising the steps of:

[0036] S01. Accurately weigh 2 g of sodium hyaluronate, measure 200 ml of 1 mol / mL sodium bicarbonate-sodium carbonate buffer solution, add the weighed sodium hyaluronate, stir until dissolved, and obtain a sodium hyaluronate solution. The pH of the sodium bicarbonate-sodium carbonate buffer is 8-8.5. The temperature of the alkaline buffer solution is 4°C, and the stirring time is 40 min.

[0037] S02. Add 5ml of methacrylic anhydride to the sodium hyaluronate solution, and obtain a reaction solution after the reaction is completed. The reaction condition of the hydroxyl group on the molecular chain of sodium hyaluronate and methacrylic anhydride is to avoid light, the reaction temperature is 24° C., and the reaction time is 16 hours.

[0038] S03. Pour the reaction solution into 800ml of absolute ethanol, precipitate, and filter to obtain a precipitate. Wherein, th...

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Abstract

The invention discloses a sodium hyaluronate hydrogel with a fast curing function and a preparing method thereof, and particularly relates to the technical field of biomedical engineering. The sodiumhyaluronate hydrogel is prepared from, by mass, 5%-10% of sodium hyaluronate, 2.5%-5% of methacrylic anhydride, 0.1%-1% of a photoinitiator, 2%-5% of alkaline buffering liquid and the balance deionized water. According to the sodium hyaluronate hydrogel with the fast curing function and the preparing method thereof, the sodium hyaluronate hydrogel has the advantages of fast curing, the excellent biocompatibility and the ideal mechanical strength; the preparing method has the advantages of being high in reaction efficiency, short in reaction time and high in product acylation rate, gelatinizingrate and mechanical strength.

Description

technical field [0001] The invention relates to the technical field of biomedical engineering, in particular to a sodium hyaluronate hydrogel with rapid curing function and a preparation method thereof. Background technique [0002] In the late 1980s, scientists proposed the idea of ​​combining biocompatible scaffold materials with the patient's own cells to construct transplantable functional organs, thereby solving the severe organ shortage problem. This type of scaffold material is usually highly biocompatible and degradable. Through tissue engineering technology, it is mixed with cells in vitro to form a three-dimensional structure. After in vitro culture to make cells proliferate and differentiate, they are implanted in the body to repair or permanently Replace damaged tissues and organs. Because of the above properties, hydrogel has become a research hotspot in the fields of tissue engineering and biomedicine. [0003] Hydrogel is a water-absorbable polymer material ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08J3/075C08J3/28C08L5/08C08B37/08
CPCC08B37/0072C08J3/075C08J3/28C08J2305/08
Inventor 崔晓峰高桂芳
Owner 杭州枫霖科技有限公司
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