Device and method for preparing gel microsphere and gel microsphere in which antitubercular agents can be injected
The technology of gel microspheres and preparation device is applied in the direction of making medicines into special physical or taking forms of devices, antibacterial drugs, pharmaceutical formulations, etc. Affecting the production speed and quality of normal gel microspheres, preventing droplets from contacting the gel solidified liquid, etc., to achieve the effect of shortening residence time, good atomization effect, and improving production speed and quality
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Embodiment 1
[0043] figure 1 Shown is a schematic structural diagram of a preferred embodiment of the gel microsphere preparation device of the present invention, the device includes: a porous nozzle 1, a collection cup 2, a collection pipe 3, a high-voltage electrostatic generator 9, a constant-flow pump 7, and a settling tank 4. Syringe pump 8 and infiltration electrode 5.
[0044] The upper part of the multi-hole spray head 1 has a liquid inlet, which is connected to the output end of the syringe pump 8, and the input end of the syringe pump 8 is connected to the drug-loaded sol storage device. The lower part of the porous nozzle has 12 nozzles 6 arranged in a ring. The nozzle 6 is a slender needle with a length of 6 cm to 20 cm. The inner diameter of the tip is 200 μm to 800 μm. The distance between the gel solidified liquid surface in the collection cup is 15mm to 60mm. There is a cavity in the porous nozzle 1, and a ring-shaped metal sheet is set in the cavity as the wetting electr...
Embodiment 2
[0063] Using the device and steps described in Example 1, changing the production formula and conditions, small particle size rifapentine gel microspheres can be obtained, and the specific process is as follows:
[0064] (1) Weigh 1.0g of rifapentine powder and 1.0g of stearic acid, dissolve in 8ml of ethyl acetate solvent at 50°C to obtain rifapentine stearic acid solution; weigh 1.8g of sodium alginate, dissolve In 90ml of distilled water, a 2.0wt% sodium alginate solution was obtained. The above rifapentine stearic acid solution was mixed with sodium alginate solution, and ultrasonically emulsified for 1 min to obtain rifapentine sol.
[0065] (2) Weigh 50 g of anhydrous calcium chloride, dissolve it in 2000 ml of distilled water, and prepare a 2.5 wt % calcium chloride solution to obtain a gel solidification solution.
[0066] (3) Put the rifapentine sol solution into the syringe pump. Set the voltage of the high-voltage electrostatic generator to 10000V, the inner diame...
Embodiment 3
[0072] Adopt the device described in embodiment 1 and similar steps, make rifabutin gel microsphere, concrete process is as follows:
[0073] (1) Weigh 2.5g of rifabutin powder and 2.5g of stearic acid, dissolve in 9.0ml ethyl acetate solvent at 50°C to obtain rifabutin stearic acid liquid; weigh 2.4g of sodium alginate, dissolve in 85ml of distilled water to obtain a 2.8wt% sodium alginate solution. The above rifabutin stearic acid solution and sodium alginate solution were heated to 60° C. and mixed to obtain rifabutin sol.
[0074] (2) Weigh 20 g of anhydrous calcium chloride, dissolve it in 2000 ml of distilled water, and prepare a 1 wt % calcium chloride solution to obtain a gel solidification solution.
[0075] (3) Fill the rifabutin sol into a syringe as a syringe pump. Set the voltage of the high-voltage electrostatic generator to 6000V, the inner diameter of the nozzle needle to 0.4mm, the distance between the tip of the nozzle needle and the surface of the gel soli...
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