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A gel-forming poly-l-guluronic acid produced from no guluronate-rich marine algae using new hydrolysis method: test for endovascular embolization

机译:使用新的水解方法,从不含富古龙酸酯的海藻中生产出一种形成凝胶的聚-1-古洛糖醛酸:血管内栓塞试验

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摘要

To prepare a gel-forming poly-L-guluronic acid (Poly-G) from no guluronate-rich Laminaria japonica, a new hydrolysis method was employed with a lower HCl concentration (0.025-0.15 M) and a shorter treatment time (5 min). The Poly-Gs were set to measure purity, presence of poly-L-guluronic block, molecular weight distribution, polymer yield, viscosity, and compressive gel strength. Finally, the Poly-G was tested to embolize the renal vascular system by using a rabbit model and angiography. Optimized Poly-G could be selected with respect to wt% concentration, polymer yield, gel-forming stability, viscosity, and gel strength as an endovascular embolizing agent. Overall, 0.4-0.6% of 0.03 M-Poly-G obtained from acid treatment with 0.03 M of HCl had molecular weights greater than 80 kDa, and the best gelling capacity with an injectable viscosity (30-120 cP). It was successfully delivered into the vascular bed of a rabbit kidney and was shown angiographically to embolize the renal vascular system.
机译:为了从不富含古洛糖酸酯的海带中制备形成凝胶的聚L-古洛糖醛酸(Poly-G),采用了一种新的水解方法,该方法具有较低的HCl浓度(0.025-0.15 M)和较短的处理时间(5分钟) )。设置Poly-G以测量纯度,聚L-古洛糖醛嵌段的存在,分子量分布,聚合物产率,粘度和压缩凝胶强度。最后,通过使用兔模型和血管造影术测试了Poly-G栓塞肾血管系统。可以根据重量百分比浓度,聚合物产率,形成凝胶的稳定性,粘度和作为血管内栓塞剂的凝胶强度来选择最佳的Poly-G。总体而言,由0.03 M的HCl酸处理获得的0.03 M-Poly-G的0.4-0.6%具有大于80 kDa的分子量,并且具有可注射粘度(30-120 cP)的最佳胶凝能力。它已成功递送到兔肾的血管床中,并在血管造影中显示出可栓塞肾血管系统。

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  • 来源
    《Journal of materials science》 |2009年第9期|1917-1926|共10页
  • 作者单位

    Department of Chemistry, Yeungnam University, Gyeongsan, South Korea;

    Department of Biomedical Engineering, Catholic University of Taegu, School of Medicine, Taegu City, South Korea;

    Department of Biomedical Engineering, Catholic University of Taegu, School of Medicine, Taegu City, South Korea Department of Radiology, Catholic University of Taegu, School of Medicine, 3056-6 Taemyung 4 Dong, Nam-Ku, Taegu City 706-018, South Korea;

    Department of Biomedical Engineering, Catholic University of Taegu, School of Medicine, Taegu City, South Korea Department of Radiology, Catholic University of Taegu, School of Medicine, 3056-6 Taemyung 4 Dong, Nam-Ku, Taegu City 706-018, South Korea;

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