Ebpay生命医药出版社

    Ebpay生命

    100763

    论文已发表

    提 交 论 文


    注册即可获取Ebpay生命的最新动态

    注 册



    IF 收录期刊



    • 3.3 Breast Cancer (Dove Med Press)
    • 3.4 Clin Epidemiol
    • 2.5 Cancer Manag Res
    • 2.9 Infect Drug Resist
    • 3.5 Clin Interv Aging
    • 4.7 Drug Des Dev Ther
    • 2.7 Int J Chronic Obstr
    • 6.6 Int J Nanomed
    • 2.5 Int J Women's Health
    • 2.5 Neuropsych Dis Treat
    • 2.7 OncoTargets Ther
    • 2.0 Patient Prefer Adher
    • 2.3 Ther Clin Risk Manag
    • 2.5 J Pain Res
    • 2.8 Diabet Metab Synd Ob
    • 2.8 Psychol Res Behav Ma
    • 3.0 Nat Sci Sleep
    • 1.8 Pharmgenomics Pers Med
    • 2.7 Risk Manag Healthc Policy
    • 4.2 J Inflamm Res
    • 2.1 Int J Gen Med
    • 4.2 J Hepatocell Carcinoma
    • 3.7 J Asthma Allergy
    • 1.9 Clin Cosmet Investig Dermatol
    • 2.7 J Multidiscip Healthc



    更多详情 >>





    已发表论文

    顺利获得对圆窗应用 PLGA 纳米粒提高对单一或复合药物内耳递送的局部生物药效率

     

    Authors Cai H, Wen X, Wen L, Tirelli N, Zhang X, Zhang Y, Su H, Yang F, Chen G

    Published Date December 2014 Volume 2014:9(1) Pages 5591—5601

    DOI http://dx.doi.org/10.2147/IJN.S72555

    Received 11 August 2014, Accepted 11 October 2014, Published 1 December 2014

    Abstract: In this paper, the potential of poly(D,L-lactide-co -glycolide acid) (PLGA) nanoparticles (NPs) for carrying single or compound drugs traversing the round window membrane (RWM) was examined after the round window (RW) administration of different NPs to guinea pigs. First, coumarin-6 was incorporated into PLGA NPs as a fluorescent probe to investigate its ability to cross the RWM. Then, PLGA NPs with salvianolic acid B (Sal B), tanshinone IIA (TS IIA), and total panax notoginsenoside (PNS) including notoginsenoside R1 (R1), ginsenoside Rg1 (Rg1), and ginsenoside Rb1 (Rb1) were developed to evaluate whether NPs loaded with compound drugs would pass through the RWM and improve the local bioavailability of these agents. PLGA NPs loaded with single or compound drugs were prepared by the emulsification solvent evaporation method, and their particle size distribution, particle morphology, and encapsulation efficiency were characterized. In vitro release study showed sustained-release profiles of Sal B, TS IIA, and PNS from the NPs. The pharmacokinetic results showed that NPs applied to the RWM significantly improved drug distribution within the inner ear. The AUC0–t  of coumarin-6 in the perilymph (PL) following RW administration of NPs was 4.7-fold higher than that of coumarin-6 solution, and the Cmax was 10.9-fold higher. Furthermore, the AUC0–t  of R1, Rg1, and Rb1 were 4.0-, 3.1-, and 7.1-fold greater, respectively, after the application of NPs compared to the compound solution, and the Cmax were, respectively, 14.4-, 10.0-, and 16.7-fold higher. These findings suggest that PLGA NPs with unique properties at the nanoscale dimensions have a powerful ability to transport single or compound drugs into the PL through the RWM and remarkably enhance the local bioavailability of the encapsulated drugs in the inner ear. The use of PLGA NPs as nanoscale delivery vehicles to carry drugs across the RWM may be a promising strategy for the treatment of inner ear diseases.
    Keywords: inner ear administration, nanoparticles, perilymph, local bioavailability, poly(D,L-lactide-co -glycolide acid)





    Download Article[PDF]