首页> 外文期刊>Echocardiography. >The effect of different circadian blood pressure rhythms on left ventricular systolic dyssynchrony in patients with newly diagnosed essential hypertension.
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The effect of different circadian blood pressure rhythms on left ventricular systolic dyssynchrony in patients with newly diagnosed essential hypertension.

机译:新诊断的原发性高血压患者不同的昼夜节律节律对左心室收缩不同步的影响。

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The aim of this work was to develop new chitosan nanospheres for the delivery of 5-fluorouracil (5-FU). Drug loaded nanospheres were prepared using a technique derived from a combination of coacervation and emulsion droplet coalescence methods. The size and morphology of nanospheres were characterized by laser light scattering and transmission electron microscopy. The 5-FU interaction with chitosan nanospheres was investigated by DSC analysis and FT-IR spectroscopy. The in vitro release was studied by dialysis bag technique. Cytotoxicity of 5-FU loaded chitosan nanospheres was evaluated in vitro on HT29 and PC-3 cell lines. The effects of 5-FU loaded chitosan nanospheres on adhesion of tumor cells to human umbilical vein endothelial cells (HUVEC) were also investigated. 5-FU loaded chitosan nanospheres appeared with a spherical shape, with a mean diameter of about 200 nm and a negative zeta potential of about - 6.0 mV. The successful interaction between drug and chitosan nanosphere matrix was demonstrated by both DSC and FT-IR analyses. The quantitative determination of 5-FU was assayed by UV-Vis analysis. The encapsulation efficiency of 5-FU content was about 70%. A kinetic study of in vitro release demonstrated that the percentages of 5-FU delivered from nanospheres was approx. 10% after 3 hours. The in vitro studies showed that 5-FU loaded nanospheres were effective in reducing tumor cell proliferation in a time- and concentration-dependent manner. 5-FU nanospheres were also able to inhibit both HT29 and PC-3 adhesion to HUVEC after 48 hours of treatment.
机译:这项工作的目的是开发新的壳聚糖纳米球用于5-氟尿嘧啶(5-FU)的交付。载有药物的纳米球是使用凝聚和乳化液滴合并方法相结合的技术制备的。纳米球的大小和形态通过激光散射和透射电子显微镜表征。通过DSC分析和FT-IR光谱研究了5-FU与壳聚糖纳米球的相互作用。通过透析袋技术研究了体外释放。在HT29和PC-3细胞系上评估了5-FU负载的壳聚糖纳米球的细胞毒性。还研究了5-FU负载的壳聚糖纳米球对肿瘤细胞与人脐静脉内皮细胞(HUVEC)粘附的影响。负载5-FU的壳聚糖纳米球呈球形,平均直径约为200 nm,负ζ电位约为-6.0 mV。 DSC和FT-IR分析均证明了药物与壳聚糖纳米球基质之间的成功相互作用。通过UV-Vis分析测定5-FU的定量测定。 5-FU含量的包封效率为约70%。体外释放的动力学研究表明,从纳米球中释放出的5-FU的百分率约为1。 3小时后10%。体外研究表明,载有5-FU的纳米球以时间和浓度依赖性方式有效减少肿瘤细胞的增殖。治疗48小时后,5-FU纳米球还能够抑制HT29和PC-3与HUVEC的粘附。

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