欧美成年 I 日本久久免费视频 I 红杏视频在线免费观看 I 欧美裸体海滩 I 亚洲免费精品视频 I 丝袜高跟av I 爱爱一级 I 黄色成人免费看 I 伊人久久网站 I 天天舔天天 I 人人色视频 I 奇米影视一区二区 I av网站免费在线观看 I 日韩精品xxx I 久久亚洲成人av I 啪啪激情网站 I 性丹麦孕妇孕交hd18 I 丁香花电影高清在线阅读免费 I 欧美一级网 I 亚洲天堂伊人网 I 一级大片儿 I 九色在线免费 I 解开人妻的裙子猛烈进入 I 日韩免费手机视频 I 黄网站欧美 I 亚洲精品综合五月久久小说 I 国产精品露脸av在线 I 午夜视频网页版 I 美女激情视频自拍 I 免费看av一区 I 奶茶视频黄色 I 丝袜精品 欧美 亚洲 自拍 I 羞羞影院午夜男女爽爽免费 I 欧美成人一区二区三区免费 I 国产又粗又长又爽又黄的视频 I 好吊妞人成视频在线观看27du I 中国黄色大片一级片 I 欧美精品国产aⅴ一区二区在线 I 欧美黑人与白人精品a片

Ulanqab Kema New Material Co., LtdProvide new materials for customers
Hotline:155-4740-0001
熱門關鍵詞:
您的位置: Homepage >News >Company news

全國服務熱線

15547400001

Definition and application of micronization

作者: 點擊:2207 發布時間:2020-11-20

Reducing the particle size and properties of the active ingredients or excipients is important in every stage of solid preparation manufacturing (micronization and transformation). The particle size affects the mixing, granulation, tableting, and coating of solid dosage forms. 45-48. Increase the dissolution rate 46,49. Generally speaking, in vivo, the dissolution rate changes with the solubility and particle size. It seems that the simple way to improve the dissolution rate is to change the particle size. According to the Noyes Whitney equation, when the particle size decreases, the total effective surface area increases, and the dissolution rate increases. In addition, the decrease in particle size leads to a decrease in the thickness of the diffusion layer around the particles, which increases the concentration gradient. The decrease in particle size leads to a decrease in the thickness of the diffusion layer around the particles, which increases the concentration gradient and dissolution.

We know that milling is a common and traditional pharmaceutical method to reduce particle size to increase dissolution with poor water solubility. Micronization is a process of transforming coarse powder into ultra-fine powder with an average particle size range of 2-5μm. It is usually carried out by jet pulverization and top-down methods.


Poorly soluble micronization can lead to poor surface hydrophobicity. Nighute and Bhise studied the effect of micronization on the dissolution rate of rifabutin. This method improved the dissolution rate of the drug. Costa and colleagues improved the dissolution rate of efavirenz by micronization method. Human immunodeficiency virus type 1 non-nucleoside reverse transcriptase inhibitors belong to the BCS classification II with poor water solubility.


Many of the II types of poor solubility, micronization is not enough to increase the surface area and thus increase the dissolution rate. In most cases, it is necessary to solve the problem of low dissolution rate and bioavailability. By changing the particle size from micrometer to micrometer, the specific surface area of the particles is greatly increased, leading to higher dissolution. For example, when the particle size is changed from 5 μm to 120 nm, the surface area of aprepitant crystals increases by 41.5 times. With proper particle formulation, the dissolution rate and bioavailability will be improved, and with these formulations, the dosage range will be reduced.