龙晓英, 罗佳波, 严志红, 容慧思, 黄伟民. 局部用辣椒碱传递体的制备及体内外评价J. 药学学报, 2006, 41(5): 461-466.
引用本文: 龙晓英, 罗佳波, 严志红, 容慧思, 黄伟民. 局部用辣椒碱传递体的制备及体内外评价J. 药学学报, 2006, 41(5): 461-466.
LONG Xiao-ying LUO Jia-bo, YAN Zhi-hong, RONG Hui-si, HUANG Wei-min, . Preparation and in vitro & in vivo evaluations of topically applied capsaicin transfersomesJ. Acta Pharmaceutica Sinica, 2006, 41(5): 461-466.
Citation: LONG Xiao-ying LUO Jia-bo, YAN Zhi-hong, RONG Hui-si, HUANG Wei-min, . Preparation and in vitro & in vivo evaluations of topically applied capsaicin transfersomesJ. Acta Pharmaceutica Sinica, 2006, 41(5): 461-466.

局部用辣椒碱传递体的制备及体内外评价

Preparation and in vitro & in vivo evaluations of topically applied capsaicin transfersomes

  • 摘要: 目的制备辣椒碱传递体,并评价其体内外皮肤渗透性。方法采用高剪切分散乳化均质机制备辣椒碱传递体,并对其大小与结构、包封率、释放度、体外皮肤渗透性和在大鼠组织的分布进行评价。结果辣椒碱传递体结构为小单室泡囊,平均粒径150.6 nm。包封率随脂质浓度增加而增加,当脂质浓度为8%时,包封率为96.7%。体外累积释放量随接受液中乙醇浓度的提高而增加,不同基质大鼠腹部皮肤体外辣椒碱累积透皮量为:传递体>霜剂和混悬液。不同种类皮肤辣椒碱累积透皮量为:小鼠>大鼠>人,人体皮肤辣椒碱累积透皮量为:表皮膜>真皮层和完整皮肤。辣椒碱注射液对大鼠腹腔多次注射体内分布为:骨头>血液>皮肤>肌肉,辣椒碱传递体大鼠腿部局部多次给药,体内分布为:骨头>皮肤>血液>肌肉。结论辣椒碱传递体包封率达到药典的规定(>80%),辣椒碱传递体可以增加辣椒碱的皮肤透过性,皮肤种类及皮肤的不同层次影响辣椒碱传递体的皮肤透过性。多次注射及局部给药,辣椒碱在骨头及肌肉的分布类似,但在血液及皮肤的分布有所不同。

     

    Abstract: AimTo prepare capsaicin transfersomes and evaluate them in vitro and in vivo. Methods Capsaicin transfersomes were prepared by high shear dispersing machine and evaluated by entrapment efficiency, release rate, in vitro skin permeation and distribution in different tissues in vivo. Results Capsaicin transfersomes were composed of single unilamellar vesicles with an average diameter of 150.6 nm. Capsaicin entrapment efficiency increased distinctly with increasing of concentration of lecithin and entrapment efficiency is 96.7% while concentration of lecithin to 8%. Cumulative release amount of capsaicin is in direct proportion to the ethanol concentration in the receptor medium. In vitro capsaicin cumulative penetration amount showed higher levels in transfersomes than cream and suspension in rat abdominal skin. Abdominal skin cumulative penetration amount in vitro of capsaicin transfersomes in mouse was significantly higher than that from rat and men. In the same way, abdominal skin epidermal membrane cumulative penetration amount in vitro of capsaicin transfersomes was significantly higher than that from derma and full skin in human abdominal skin. The capsaicin tissue distribution of capsaicin injection by multiple celiac injections in rats is different: bone > plasma > skin > muscle. There is a similar result by multiple thigh topical application of capsaicin transfersomes: bone > skin > plasma > muscle. ConclusionEntrapment efficiency of capsaicin transfersomes reached the criterion of China Pharmacopoeia (>80%) and capsaicin skin penetration can be increased by capsaicin transfersomes. It should be noted that the diverse characters and levels of skin may probably affect the permeating capability of capsaicin. Capsaicin tissue distribution in bone and muscle is similar and is different in plasma and skin by multiple injections and topical skin apply.

     

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