中国海洋大学,青大大学附属医院美容科,中国海洋大学,中国海洋大学,中国海洋大学,中国海洋大学,中国海洋大学,中国海洋大学,青岛继发集团技术中心,青岛继发集团技术中心,青岛继发集团技术中心,中国海洋大学
国家科技部国际合作重点项目(2013DFG32880, 2010DFB50140), 国家自然科学基金(31300786)和教育部博士点基金(20120132110012)资助项目
College of Marine Life Science,Ocean University of China,Yushan Road,Qingdao,Shandong Province,Department of Plastic Surgery,The Affiliated Hospital of Medical College Qingdao University,Qingdao,Shandong,College of Marine Life Science,Ocean University of China,Yushan Road,Qingdao,Shandong Province,College of Marine Life Science,Ocean University of China,Yushan Road,Qingdao,Shandong Province,College of Marine Life Science,Ocean University of China,Yushan Road,Qingdao,Shandong Province,College of Marine Life Science,Ocean University of China,Yushan Road,Qingdao,Shandong Province,College of Marine Life Science,Ocean University of China,Yushan Road,Qingdao,Shandong Province,College of Marine Life Science,Ocean University of China,Yushan Road,Qingdao,Shandong Province,Jifa Group Company Limited,Qingdao,Technology Center,Shandong Province,Jifa Group Company Limited,Qingdao,Technology Center,Shandong Province,Jifa Group Company Limited,Qingdao,Technology Center,Shandong Province,College of Marine Life Science,Ocean University of China,Yushan Road,Qingdao,Shandong Province
This work was supported by grants from International S&T Cooperation Program of China (2013DFG32880, 2010DFB50140), The National Natural Science Foundation of China (31300786) and Doctoral Fund of Ministry of Education of China (20120132110012)
本文在研究制备了包载10, 11-亚甲二氧基喜树碱(MD-CPT)的透明质酸纳米乳(HANs)经皮给药系统的基础上,进一步研究了载MD-CPT透明质酸纳米乳的细胞吞噬,并进行了体内药代动力学分析.通过优化制备条件,得到了皮肤渗透性良好的缓释剂型.从CLSM观察到药物被细胞摄入并传递入细胞核,同时,载药纳米乳的细胞吞噬效率呈时间依赖性,不同细胞株HSF、HUVES、MCF-7、KF的细胞吞噬率略有不同.用Rhodanmine B标记HANs,通过荧光显微镜观察到载药纳米乳透过角质层到达真皮层的拟动态过程.利用HPLC检测MD-CPT血药浓度,测得经皮给药半衰期T1/2是静脉注射的3.6倍,肌肉注射的1.6倍,体内药物滞留时间显著增加;血药浓度峰谷值差异小,曲线平缓,说明经皮给药能保证血药浓度呈现可控的持续性.最终通过活体成像系统和组织切片荧光显微镜,直观地反映出经皮给药后药物在大鼠体内的分布情况和各组织器官药物含量,确定载药纳米乳主要采取胞间渗透的扩散方式,在局部给药的区域滞留时间较长,有利于对浅表性的病灶区持续给药,延长药效,而剩余的MD-CPT和解离的HANs都进入了血液循环,最终通过新陈代谢被排出体外.为无创型HANs经皮给药系统应用于浅表性肿瘤治疗提供了理论基础.
Our previous study prepared loading 10,11-methylenedioxy camptothecin (MD-CPT) hyaluronic acid nanocarriers (HANs) as a transdermal delivery system. The further study targets to value the cellular uptake and pharmacokinetic analysis of MD-CPT-loaded HA nanoemulsion as transdermal delivery carriers. A sustained-release dosage formulation was obtained with good skin permeability by optimizing the preparation conditions. The cellular-uptake of keloid fibroblast for nanoemulsion was observed with CLSM, drug eventually into the nucleus. Phagocytosis was time dependence, and different cell lines include HSF, HUVES, MCF-7 and KF were slightly different. Rhodanmine B labeled HANs performed desirable skin permeable capacity across stratum corneum, and the drug was transferred to the dermis by fluorescence microscopy. The optimized HANs formulation was verified with the highest effective drug permeability. The plasma concentration of MD-CPT was analyzed by HPLC, showed an almost 3.6 and 1.6 times increase T1/2 respectively compared with intravenous and intramuscular injection; moreover, the curve of transdermal delivery was smooth continuous. In vivo imaging system intuitively reflected the distribution of transdermal drug in mice and the drug content of various organs/tissues. The rest of MD-CPT and HANs entered into the blood circulation, eventually excreted through metabolism without body burden. The longer drug residence at topical area with treatment could provide a continuous and controllable, extended efficacy, which was beneficial to superficial lesions therapy.
高媛媛,王志国,姜长青,孔明,程晓杰,王娟,包子娴,孙国辉,黄聿华,林成兵,依宏君,陈西广.经皮给药载体载MD-CPT透明质酸纳米乳的细胞吞噬与体内药代动力学研究[J].生物化学与生物物理进展,2014,41(12):1265-1276
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