Low-moisture-absorption colloidal bismuth pectin capsule and preparation technology thereof

A technology of colloidal bismuth pectin and low hygroscopicity, which is applied in the directions of capsule delivery, organic active ingredients, medical preparations of non-active ingredients, etc., can solve the problems of reducing hygroscopicity, difficult disintegration of capsule contents, complicated preparation process, etc. , to achieve the effect of speeding up the release rate, easy industrialized production, and simple preparation process

Inactive Publication Date: 2015-08-12
浙江得恩德制药股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Colloidal bismuth pectin is very easy to absorb moisture, and it is placed under high humidity (25°C 92.5%RH) for 5 days to absorb moisture and increase its weight by 13%, resulting in the sample sticking into agglomerates, poor fluidity, and colloidal stability does not meet the requirements
Due to the strong hygroscopicity of colloidal bismuth pectin, marketed drugs are often difficult to disperse evenly in water. After oral administration, they often cannot quickly achieve good swelling and dispersion in the stomach, and cannot completely cover the ulcer surface, thus greatly reducing the curative effect of this product.
[0004] CN100477999C discloses a kind of colloidal pectin bismuth dispersible tablet, and this invention uses a large amount of disintegrants in order to achieve the expected dispersion effect, thereby further enhancing the hygroscopicity of the preparation, causing further deterioration of the colloidal dispersion uniformity in the storage process, It is unfavorable for it to cover the surface of the gastric mucosa, thereby reducing the efficacy
However, the preparation process includes the preparation of liposome precursors, microwave reaction to form nano-liquid, spray-drying to form nanoparticles, and preparation of granules. The process is complicated and the production cost is high.
Organic solvents such as tetrahydrofuran are used in the preparation process, which is not conducive to labor protection
At the same time, the spray-dried solution is more viscous, and it is easy to block the spray gun during the spraying process, resulting in low production efficiency
CN103142548A discloses a colloidal bismuth pectin capsule. In the colloidal bismuth pectin capsule, micropowdered silica gel and pregelatinized starch are mixed with colloidal bismuth pectin according to a specific ratio, and both micropowdered silica gel and pregelatinized starch are stronger Hygroscopicity, during the storage process, the contents of the capsule often appear columnar and difficult to disintegrate, which is not conducive to the uniform adsorption of drugs on the surface of the gastric mucosa
The preparation process of this method is complicated, and the use of a large amount of auxiliary materials itself reduces the adhesion effect of colloidal pectin bismuth, and the porogen and disintegrant used are all substances with strong hygroscopicity, and the dispersion uniformity becomes significantly worse during storage.
[0005] In addition, there are still some methods to reduce the hygroscopicity of samples by using moisture-proof packaging in the existing marketed products
However, moisture-proof packaging can reduce moisture absorption to a certain extent, but it cannot fundamentally solve the problem
At the same time, moisture-proof packaging increases production costs, and the humidity of the environment must be strictly controlled during the production process
Through a careful search of relevant literature, it is found that the existing technologies have failed to adopt relatively simple and effective means to solve the problems of serious moisture absorption, poor dispersion uniformity, and difficulty in meeting the requirements of colloidal bismuth pectin preparations during storage.

Method used

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  • Low-moisture-absorption colloidal bismuth pectin capsule and preparation technology thereof
  • Low-moisture-absorption colloidal bismuth pectin capsule and preparation technology thereof
  • Low-moisture-absorption colloidal bismuth pectin capsule and preparation technology thereof

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Experimental program
Comparison scheme
Effect test

Embodiment 1

[0021]

[0022] Preparation Process:

[0023] (1) Dissolve acrylic resin IV in ethanol, add light calcium carbonate and stir evenly, process in a homogenizer, and set aside;

[0024] (2) Add colloidal bismuth pectin into the fluidized bed, spray the suspension coating in step (1) by the fluidized bed bottom spray coating method, the inlet air temperature is 35°C, the atomization pressure is 0.3-0.4MPa, Inlet pump speed 10-15rpm. After the coating is completed, put it in an oven at 50°C for aging treatment for 12 hours to obtain colloidal bismuth pectin-coated pellets;

[0025] (3) Sieve the pellets prepared in step (2) with 40-mesh and 80-mesh sieves respectively, and fill 3# capsule shells with 40-mesh-80-mesh pellets to obtain final product.

Embodiment 2

[0027]

[0028] Preparation Process:

[0029] (1) Dissolve acrylic resin IV in ethanol, add light calcium carbonate and stir evenly, process in a homogenizer, and set aside;

[0030] (2) Add colloidal bismuth pectin into the fluidized bed, spray the suspension coating in step (1) by the fluidized bed bottom spray coating method, the inlet air temperature is 35°C, the atomization pressure is 0.3-0.4MPa, Inlet pump speed 10-15rpm. After the coating is completed, put it in an oven at 50°C for aging treatment for 12 hours to obtain colloidal bismuth pectin-coated pellets;

[0031] (3) Sieve the pellets prepared in step (2) with 40-mesh and 80-mesh sieves respectively, and fill 2# capsule shells with 40-mesh-80-mesh pellets to obtain final product.

Embodiment 3

[0033]

[0034] Preparation Process:

[0035] (1) Dissolve acrylic resin IV in ethanol, add light calcium carbonate and stir evenly, process in a homogenizer, and set aside;

[0036] (2) Add colloidal bismuth pectin into the fluidized bed, spray the suspension coating in step (1) by the fluidized bed bottom spray coating method, the inlet air temperature is 35°C, the atomization pressure is 0.3-0.4MPa, Inlet pump speed 10-15rpm. After the coating is completed, put it in an oven at 50°C for aging treatment for 12 hours to obtain colloidal bismuth pectin-coated pellets;

[0037] (3) Sieve the pellets prepared in step (2) with 40-mesh and 80-mesh sieves respectively, and fill the 1# capsule shell with 40-mesh-80-mesh pellets.

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Abstract

The invention discloses a low-moisture-absorption colloidal bismuth pectin capsule and a preparation technology thereof. In a preparation of the low-moisture-absorption colloidal bismuth pectin capsule, acrylic resin IV is taken as a coating material and light calcium carbonate is taken as an anti-sticking agent to coat colloidal bismuth pectin to obtain a coated pellet, and the obtained coated pellet is used to fill a capsule shell. The low-moisture-absorption colloidal bismuth pectin capsule and the preparation technology have the advantages that the problems that the colloidal bismuth pectin preparation is prone to absorbing moisture and clustering and not easy to disperse uniformly are solved, therapeutic efficacy of the colloidal bismuth pectin preparation is improved, less auxiliary materials are used, the preparation technology is simple, and the low-moisture-absorption colloidal bismuth pectin capsule is easy to produce industrially in large scale.

Description

technical field [0001] The invention belongs to the technical field of pharmaceutical preparations, and in particular relates to a low-hygroscopic capsule containing colloidal bismuth pectin and a preparation process thereof. Background technique [0002] Colloidal bismuth pectin is a new type of colloidal bismuth preparation with strong colloidal properties. It can form a high-viscosity sol in acidic medium and form a firm protective film on the gastric mucosa, thereby enhancing the barrier function of the gastric mucosa. The sol formed by colloidal bismuth pectin in acidic medium is better than any other colloidal bismuth agent. It can be deposited on the cell wall of Helicobacter pylori, causing vacuoles to varying degrees in the bacteria, causing cell wall rupture and inhibiting bacterial enzymes. The activity of bacteria interferes with the metabolism of bacteria, making it more sensitive to the normal defense function of the human body. This product also directly stim...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61K9/48A61K31/732A61K47/32A61K47/04A61P1/04A61P31/04
Inventor 金春晖刘法千潘六富吕文辉
Owner 浙江得恩德制药股份有限公司
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