物理化学学报
物理化學學報
물이화학학보
ACTA PHYSICO-CHIMICA SINICA
2014年
2期
365-370
,共6页
朱丽英%晏晓琴%张红漫%林东强%姚善泾%江凌
硃麗英%晏曉琴%張紅漫%林東彊%姚善涇%江凌
주려영%안효금%장홍만%림동강%요선경%강릉
聚电解质复合物膜%壳聚糖%纤维素硫酸钠%溶胀%渗透性%药物控制释放
聚電解質複閤物膜%殼聚糖%纖維素硫痠鈉%溶脹%滲透性%藥物控製釋放
취전해질복합물막%각취당%섬유소류산납%용창%삼투성%약물공제석방
Polyelectrolyte complex film%Chitosan%Sodium cellulose sulfate%Swel ing%Permeability%Control ed drug release
药物渗透系数是考察复合物膜的药物释放性能的重要参数。本文以溶解性不同的两种药物扑热息痛和5-氨基水杨酸(5-ASA)为模型药物研究了其在壳聚糖-纤维素硫酸钠聚电解质复合物膜中的渗透性能。结果表明:壳聚糖-纤维素硫酸钠聚电解质复合物膜的渗透性能与其溶胀性能密切相关;复合物膜中壳聚糖和纤维素硫酸钠的配比、相对分子量和pH值对膜的渗透性能和溶胀性能影响显著,以扑热息痛作为模型药物研究了壳聚糖-纤维素硫酸钠聚电解质复合物膜在模拟胃肠液中对药物的渗透性能。通过调整该复合物膜的配方,可以使该膜分别实现胃、小肠和结肠定位释药的目的。
藥物滲透繫數是攷察複閤物膜的藥物釋放性能的重要參數。本文以溶解性不同的兩種藥物撲熱息痛和5-氨基水楊痠(5-ASA)為模型藥物研究瞭其在殼聚糖-纖維素硫痠鈉聚電解質複閤物膜中的滲透性能。結果錶明:殼聚糖-纖維素硫痠鈉聚電解質複閤物膜的滲透性能與其溶脹性能密切相關;複閤物膜中殼聚糖和纖維素硫痠鈉的配比、相對分子量和pH值對膜的滲透性能和溶脹性能影響顯著,以撲熱息痛作為模型藥物研究瞭殼聚糖-纖維素硫痠鈉聚電解質複閤物膜在模擬胃腸液中對藥物的滲透性能。通過調整該複閤物膜的配方,可以使該膜分彆實現胃、小腸和結腸定位釋藥的目的。
약물삼투계수시고찰복합물막적약물석방성능적중요삼수。본문이용해성불동적량충약물복열식통화5-안기수양산(5-ASA)위모형약물연구료기재각취당-섬유소류산납취전해질복합물막중적삼투성능。결과표명:각취당-섬유소류산납취전해질복합물막적삼투성능여기용창성능밀절상관;복합물막중각취당화섬유소류산납적배비、상대분자량화pH치대막적삼투성능화용창성능영향현저,이복열식통작위모형약물연구료각취당-섬유소류산납취전해질복합물막재모의위장액중대약물적삼투성능。통과조정해복합물막적배방,가이사해막분별실현위、소장화결장정위석약적목적。
The permeability coefficient is a fundamental parameter for devices exploiting the control ed drug-release behavior of films composed of chitosan and sodium cellulose sulfate (NaCS). Here, the transport of two model drugs with different solubilities, i.e., paracetamol and 5-aminosalicylic acid (5-ASA), was studied. The results showed that the permeability of the chitosan/NaCS film was closely related to the swel ing properties. In addition, both the permeability and swel ing properties of the chitosan/NaCS film were significantly influenced by the mass ratio of chitosan to NaCS, the molecular weights (Mw) of chitosan and NaCS, and the pH value. The permeability of paracetamol across the film was also investigated in simulated gastrointestinal solutions in in vitro tests. The results showed that the films have gastro-, intestine-, and colon-targeting drug-release properties when they are exposed to simulated gastrointestinal fluids in sequence.