Preparation and properties of thermosensitive in situ gel for ophthalmic formulation containing pearl hydrolyzate
10.16438/j.0513-4870.2016-0502
- VernacularTitle:珍珠水解液眼用温敏原位凝胶的制备及性质研究
- Author:
Li-na SONG
1
;
He-ran LI
1
;
Hong-yu WANG
1
;
Zhen LI
1
;
Wen-chang ZHAO
1
;
Fang-zheng LU
1
;
San-ming LI
1
Author Information
1. Shool of Pharmacy, Shenyang Pharmaceutical University, Shenyang 110016, China
- Publication Type:ORIGINAL ARTICLES
- Keywords:
pearl hydrolyzate;
poloxamer;
thermosensitive in situ gel;
rheology;
transcorneal permeability;
retention time
- From:
Acta Pharmaceutica Sinica
2016;51(10):1622-
- CountryChina
- Language:Chinese
-
Abstract:
The study was designed to generate an ophthalmic thermosensitive in situ gel with improved mechanical and mucoadhesive properties that may prolong the retention time to enhance the bioavalability of pearl hydrolyzate. The gene was comprised of poloxamer 407, poloxamer188 and Carbopol 934, which were optimized by central composite design and response surface methodology. The rheological properties, transcorneal permeability, retention time and in vitro release behaviors of the optimal gel formulation were investigated. The gel was Newtonian liquid at 25℃ and performed as a semisolid gel with non-Newtonian liquid property with a gelation time of 13 s at 35℃. Compared with a conventional eye drops, the ophthalmic in situ gel exhibited a sevenfold increase in retention with a sustained release behavior, which was observed with suitable permeability coefficient at 5.58 cm·s-1. In conclusion, the new gel of pearl hydrolyzate prolonged the release duration of drug, which may decrease the frequency of administration of pearl hydrolyzate. kilometers with ecological similarity between 20% and 40%, mainly in Yunnan, Guangxi, Guangdong, Guizhou, Hainan, Sichuan, Fujian and Chongqing. The climate factors mainly affecting the distribution of Panax notoginseng (Burk.) F. H. Chen were precipitation of warmest quarter, SD of temperature seasonality, altitude, isothermality, coefficient of variation of precipitation seasonality, mean temperature of monthly, precipitation of driest month, reference bulk density of soil and soil texture.