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使用改良的放射敏感型液芯微胶囊靶向递送化疗药物及其抗肿瘤效果评估。

Targeted delivery of chemotherapeutic agents using improved radiosensitive liquid core microcapsules and assessment of their antitumor effect.

作者信息

Harada Satoshi, Ehara Shigeru, Ishii Keizo, Yamazaki Hiromichi, Matsuyama Shigeo, Sato Takahiro, Oikawa Shyoichi, Kamiya Tomihiro, Arakawa Kazuo, Yokota Wataru, Sera Koichiro, Ito Jyun

机构信息

Department of Radiology, Iwate Medical University, Morioka, Japan.

出版信息

Int J Radiat Oncol Biol Phys. 2009 Oct 1;75(2):455-62. doi: 10.1016/j.ijrobp.2009.02.082.

Abstract

PURPOSE

Radiation-sensitive microcapsules composed of alginate and hyaluronic acid are being developed. We report the development of improved microcapsules that were prepared using calcium- and yttrium-induced polymerization. We previously reported on the combined antitumor effect of carboplatin-containing microcapsules and radiotherapy.

METHODS AND MATERIALS

We mixed a 0.1% (wt/vol) solution of hyaluronic acid with a 0.2% alginate solution. Carboplatin (l mg) and indocyanine green (12.5 microg) were added to this mixture, and the resultant material was used for capsule preparation. The capsules were prepared by spraying the material into a mixture containing a 4.34% CaCl(2) solution supplemented with 0-0.01% yttrium. These capsules were irradiated with single doses of 0.5, 1.0, 1.5, or 2 Gy (60)Co gamma-rays. Immediately after irradiation, the frequency of microcapsule decomposition was determined using a microparticle-induced X-ray emission camera. The amount of core content released was estimated by particle-induced X-ray emission and colorimetric analysis with 0.25% indocyanine green. The antitumor effect of the combined therapy was determined by monitoring its effects on the diameter of an inoculated Meth A fibrosarcoma.

RESULTS

Microcapsules that had been polymerized using a 4.34% CaCl(2) solution supplemented with 5.0 x 10(-3)% (10(-3)% meant or 10%(-3)) yttrium exhibited the maximal decomposition, and the optimal release of core content occurred after 2-Gy irradiation. The microcapsules exhibited a synergistic antitumor effect combined with 2-Gy irradiation and were associated with reduced adverse effects.

CONCLUSION

The results of our study have shown that our liquid core microcapsules can be used in radiotherapy for targeted delivery of chemotherapeutic agents.

摘要

目的

正在研发由海藻酸盐和透明质酸组成的辐射敏感微胶囊。我们报告了使用钙和钇诱导聚合制备的改良微胶囊的研发情况。我们之前报道了含卡铂微胶囊与放射治疗的联合抗肿瘤作用。

方法与材料

我们将0.1%(重量/体积)的透明质酸溶液与0.2%的海藻酸盐溶液混合。向该混合物中加入卡铂(1毫克)和吲哚菁绿(12.5微克),所得材料用于制备胶囊。通过将材料喷入含有补充了0 - 0.01%钇的4.34%氯化钙溶液的混合物中来制备胶囊。这些胶囊用0.5、1.0、1.5或2 Gy(钴 - 60)γ射线单剂量照射。照射后立即使用微粒诱导X射线发射相机确定微胶囊分解的频率。通过微粒诱导X射线发射和用0.25%吲哚菁绿进行比色分析来估计核心内容物的释放量。通过监测其对接种的Meth A纤维肉瘤直径的影响来确定联合治疗的抗肿瘤作用。

结果

使用补充了5.0×10⁻³%(10⁻³%即万分之一或10%⁻³)钇的4.34%氯化钙溶液聚合的微胶囊表现出最大分解,并且在2 Gy照射后核心内容物出现最佳释放。微胶囊在与2 Gy照射联合时表现出协同抗肿瘤作用,且不良反应减少。

结论

我们的研究结果表明,我们的液芯微胶囊可用于放射治疗中化疗药物的靶向递送。

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