首页> 外文期刊>Journal of pharmaceutical sciences. >Transdermal Absorption Enhancement of N-Terminal Tat-GFP Fusion Protein (TG) Loaded in Novel Low-Toxic Elastic Anionic Niosomes
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Transdermal Absorption Enhancement of N-Terminal Tat-GFP Fusion Protein (TG) Loaded in Novel Low-Toxic Elastic Anionic Niosomes

机译:新型低毒弹性阴离子型脂质体中加载的N终端Tat-GFP融合蛋白(TG)的透皮吸收增强。

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Elastic anionic niosomes (Tween 61/cholesterol/dicetyl phosphate at 1:1:0.05 molar ratio of 20 mM) with various concentrations of ethanol and edge activators sodium cholate (NaC) and sodium deoxycholate (NaDC) showed larger vesicular size (171.94 +- 63.52 -683.17 +- 331.47 nm) and higher negative zeta potential (-6.45 +- 2.76 to - 17.40 +- 2.51 mV) than the nonelastic anionic niosomes. The elasticity (deformability index) and entrapment efficiency of all elastic vesicles except the NaDC vesicles were higher than the nonelastic vesicles. The morphology, under transmission electron microscope, of elastic and nonelastic niosomes loaded and not loaded with Tat-green fluorescent protein fusion protein (TG) were in large unilamellar structure. TG loaded in elastic (1 mol% NaC) anionic niosomes gave the highest cell viability both in HT-29 (92.32 +- 3.82%) and KB cells (96.62 +- 5.96%), the highest cumulative amounts (62.75 +- 2.68 ng/cm2) and fluxes (10.46 +- 3.45 fig/cm2h) in receiving chamber in rat skin transdermal study by Franz diffusion cells. This study has not only indicated the synergistic enhancement effects of the Tat peptide and the niosomal delivery system on the cellular uptake and transdermal absorption of TG but also 1 mol% NaC as an edge activator to obtain a novel low-toxic elastic anionic niosomes for topical use of therapeutic macromolecules such as proteins, as well.
机译:具有各种浓度的乙醇和边缘活化剂的弹性阴离子性脂质体(吐温61 /胆固醇/磷酸二鲸蜡酯的摩尔比为1:1:0.05的20 mM)和胆酸钠(NaC)和脱氧胆酸钠(NaDC)显示出较大的囊泡大小(171.94 +- 63.52 -683.17 +-331.47 nm)和比非弹性阴离子性脂质体更高的负zeta电位(-6.45 +-2.76至-17.40 +-2.51 mV)。除NaDC囊泡外,所有其他弹性囊泡的弹性(变形指数)和包封效率均高于非弹性囊泡。在透射电子显微镜下,装载和未装载Tat-绿色荧光蛋白融合蛋白(TG)的弹性和非弹性脂质体的形态呈大单层结构。负载在弹性(1 mol%NaC)阴离子脂质体中的TG在HT-29(92.32 +-3.82%)和KB细胞(96.62 +-5.96%)中均具有最高的细胞活力,累积量最高(62.75 +-2.68 ng / cm2)和通过Franz扩散池进行的大鼠皮肤透皮研究中的接收腔中的通量(10.46±-3.45 fig / cm2h)。这项研究不仅表明Tat肽和核糖体递送系统对TG的细胞吸收和透皮吸收有协同增强作用,而且还表明1 mol%NaC作为边缘活化剂可获得局部用的新型低毒弹性阴离子性脂质体。也可以使用治疗性大分子,例如蛋白质。

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