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Flow type synthesis device and synthesis method of nanogel

A nano-gel and synthesis device technology, which is applied in the field of biomedical material synthesis, can solve the problems of limited synthesis devices and complex preparation process of nano-drug carriers, and achieve the effects of mild synthesis conditions, small polydispersity, and drug leakage

Pending Publication Date: 2022-01-28
TIANJIN UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0007] In order to overcome the problems of complex preparation process and limited synthesis device in the prior art, the present invention provides a nanogel flow type synthesis device and its synthesis method, which can increase the specific surface area of ​​heat exchange between reactants and the outside world, Reducing the influence of temperature on reactants and polymerization reactions is beneficial to the uniform mixing of liquids; the synthesis method is simple to operate and the synthesis conditions are mild, and has broad application prospects in the biomedical field

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  • Flow type synthesis device and synthesis method of nanogel
  • Flow type synthesis device and synthesis method of nanogel
  • Flow type synthesis device and synthesis method of nanogel

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Embodiment 1

[0040] Refer to attached figure 1 In the structure shown in the figure, 1 is a gas sampler; 2 is a liquid sampler; 3 is a liquid inlet pipeline; 4 is a liquid mixing pipeline; 5 is a product synthesis pipeline; 6 is a product dialysis tank; ; 8 is a dialysis pipeline; 9 is a product collection pipeline; 10 is a product collector.

[0041] The flow type synthesis device of the nanogel of the present embodiment comprises a syringe pump sampling system, a pipeline synthesis system, a product post-processing system, and a product collection system connected in sequence, and the syringe pump sampling system includes a liquid sampling system, a gas sampling system, and a gas sampling system. system, liquid mixing pipeline, the liquid sampling system is connected to one end of the pipeline synthesis system through the liquid mixing pipeline, and the gas sampling system is directly connected to the pipeline synthesis system.

[0042] The liquid sampling system of this embodiment incl...

Embodiment 2

[0054] Mix 0.2ml bovine serum albumin (BSA) (10mg / ml) and 1.8ml thiolated polylysine (8.4mg / ml, Mn: 2kDa) as the first premixed solution, then add 2ml8arm-PEG-MAL (1.2mg / ml, Mn: 4kDa) as the second premixed solution. The two premixed solutions were then loaded into two liquid samplers and air into a gas sampler. like figure 1 As shown, two different syringe pumps are used to control the liquid injection flow rate to 0.05ml / min, the air injection flow rate to 0.2ml / min, the length of the liquid inlet pipe and the air inlet pipe are both 20cm, and the liquid mixing pipe The length is 10cm. After the gas-liquid is mixed, the liquid is synthesized in the form of micro-droplets in the product synthesis pipeline with a length of 1m and a diameter of 1mm. Make the diameters of the pipes match and connect, figure 1 All the pipes are integrally formed. Then enter the 0.5m long dialysis pipeline to dialyze the pH7.4 phosphate buffer, and finally collect the obtained nanogel product...

Embodiment 3

[0061] Mix 3ml of granzyme B (1mg / ml) and 2.2ml of thiolated polylysine (25mg / ml, Mn3kDa) as the first premixed solution, and then add 5.2ml of 8arm-PEG-MAL (2.2mg / ml, Mn6kDa) as the second premixed solution. The two premixed solutions were then loaded into two liquid samplers and air into a gas sampler. Use two different syringe pumps, respectively control the liquid injection flow rate to 0.1ml / min, the air injection flow rate to 0.1ml / min, the length of the liquid inlet pipe and the air inlet pipe are both 25cm, and the length of the liquid mixing pipe is 12cm. After gas-liquid mixing, the liquid is synthesized in the form of micro-droplets in the product synthesis pipeline with a length of 2m. The diameters of the liquid inlet pipeline, air inlet pipeline, liquid mixing pipe and product synthesis pipeline are all 3mm. Dialyzed against pH 7.4 phosphate buffer in a long dialysis line and finally collected in a collection system.

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Abstract

The invention belongs to the technical field of biomedical material synthesis, and particularly relates to a flow type synthesis device of nanogel. The device comprises an injection pump sample introduction system, a pipeline synthesis system, a product post-treatment system and a product collection system which are connected in sequence, the injection pump sample introduction system comprises a liquid sample introduction system, a gas sample introduction system and a liquid mixing pipeline, the liquid sample introduction system is connected with one end of a pipeline synthesis system through the liquid mixing pipeline, and the gas sample introduction system is directly connected with the pipeline synthesis system. The invention further provides a method for synthesizing the nanogel by using the flow type synthesis device. The invention has the beneficial effects that the specific surface area of heat exchange between reactants and the outside can be increased, the influence of temperature on the reactants and polymerization reaction is reduced, and uniform mixing of liquid is facilitated; the synthesis method is simple to operate and mild in synthesis condition, and has a wide application prospect in the biomedical field.

Description

technical field [0001] The invention belongs to the technical field of synthesis of biomedical materials, and in particular relates to a nanogel flow synthesis device and a synthesis method thereof. Background technique [0002] Protein therapy has attracted widespread attention due to its high specificity and low toxicity. However, direct delivery of proteins has problems such as low delivery efficiency and immune response. Drug carriers are an effective way to solve these problems. However, most of the current drug carriers use batch synthesis devices, which have problems such as complicated preparation process and high price, which limit their clinical application and development. Therefore, the development of a drug carrier with simple preparation, good biocompatibility and low cost is still an urgent problem to be solved. [0003] Polyethylene glycol (PEG) is a hydrophilic polymer commonly used in nano-drug carriers at present, and has the advantages of good hydrophil...

Claims

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Application Information

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IPC IPC(8): A61K9/06A61K47/34A61K47/10A61K39/395B01J13/00
CPCA61K9/06A61K47/34A61K47/10A61K39/3955B01J13/0065
Inventor 侯信陈宁李思迪李学平赵瑾原续波
Owner TIANJIN UNIV
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