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首页> 外文期刊>International Journal of Pharmaceutics >Stomach-specific anti-H. pylori therapy; part III: effect of chitosan microspheres crosslinking on the gastric residence and local tetracycline concentrations in fasted gerbils.
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Stomach-specific anti-H. pylori therapy; part III: effect of chitosan microspheres crosslinking on the gastric residence and local tetracycline concentrations in fasted gerbils.

机译:胃特异性抗H。幽门螺杆菌疗法;第三部分:壳聚糖微球交联对禁食沙鼠的胃部驻留和局部四环素浓度的影响。

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The main objective of the present study was to examine the effect of chemical crosslinking of chitosan microspheres on the gastric residence and local tetracycline concentrations following oral administration in fasted gerbils. Radioiodinated [125I] glyoxal-crosslinked chitosan microsphere suspension in deionized distilled water was administered for the gastric residence studies. At different time points, the animals were sacrificed and the radioactivity in tissues and fluids was measured. Stomach tetracycline concentrations were determined using tritiated-[3H]-tetracycline-loaded crosslinked chitosan microspheres. The radioactivity, measured with a liquid scintillation analyzer, was used to determine the microgram of drug per gram of tissues or fluids. After 2 h in the fasted stomach, approximately 10% of the non-crosslinked chitosan microspheres remained. On the other hand, 17% of the crosslinked chitosan microspheres remained in the fasted stomach after the same time period. The microspheres were predominantly found in the colon after 6 h of administration. There was no detectable radioactivity in the plasma, urine, small intestine, liver, and kidneys. Tetracycline concentration profile in the stomach from the crosslinked microsphere formulation was higher than that of the aqueous solution and the non-crosslinked microsphere formulation. While the area-under-the-curve (AUC(0.5-->10 h)) for tetracycline solution and non-crosslinked chitosan microspheres was 447.3 and 358.2 microg h/g of tissue, respectively, the AUC(0.5-->10 h) for the crosslinked chitosan microspheres was 868.9 microg h/g of tissue. The drug was predominantly found in the colon and urine after 6 h of administration. Results of this study show that chitosan microspheres prepared by chemical crosslinking provide a longer residence time in the fasted gerbil stomach than either tetracycline solution or microspheres prepared by ionic precipitation.
机译:本研究的主要目的是研究禁食沙鼠口服后壳聚糖微球化学交联对胃部驻留和局部四环素浓度的影响。给予放射性去碘化的[125I]乙二醛交联的壳聚糖微球在去离子蒸馏水中的悬浮液,用于胃部驻留研究。在不同的时间点处死动物,并测量组织和体液中的放射性。使用tri化的[3H]-四环素负载的交联壳聚糖微球测定胃中的四环素浓度。用液体闪烁分析仪测量的放射性用于确定每克组织或液体的微克药物。在空腹的胃中2小时后,剩下约10%的未交联的壳聚糖微球。另一方面,在相同时间段后,禁食的胃中仍保留有17%的交联壳聚糖微球。给药6小时后,主要在结肠中发现了微球。在血浆,尿液,小肠,肝脏和肾脏中均未检测到放射性。交联的微球制剂在胃中的四环素浓度分布高于水溶液和非交联的微球制剂在胃中的分布。四环素溶液和未交联的壳聚糖微球的曲线下面积(AUC(0.5-> 10 h))分别为447.3和358.2 microg h / g组织,而AUC(0.5-> 10) h)对于交联的壳聚糖微球为868.9微克h / g组织。给药6小时后,该药物主要在结肠和尿液中发现。这项研究的结果表明,与四环素溶液或通过离子沉淀制备的微球相比,通过化学交联制备的壳聚糖微球在禁食沙鼠胃中的停留时间更长。

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