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仿生纳米晶磷灰石:癌症诊断与治疗的新视角。

Biomimetic nanocrystalline apatites: Emerging perspectives in cancer diagnosis and treatment.

机构信息

CIRIMAT Carnot Institute, UMR CNRS/INPT/UPS, University of Toulouse, France.

出版信息

Int J Pharm. 2012 Feb 14;423(1):26-36. doi: 10.1016/j.ijpharm.2011.07.005. Epub 2011 Jul 12.

Abstract

Nanocrystalline calcium phosphate apatites constitute the mineral part of hard tissues, and the synthesis of biomimetic analogs is now well-mastered at the lab-scale. Recent advances in the fine physico-chemical characterization of these phases enable one to envision original applications in the medical field along with a better understanding of the underlying chemistry and related pharmacological features. In this contribution, we specifically focused on applications of biomimetic apatites in the field of cancer diagnosis or treatment. We first report on the production and first biological evaluations (cytotoxicity, pro-inflammatory potential, internalization by ZR-75-1 breast cancer cells) of individualized luminescent nanoparticles based on Eu-doped apatites, eventually associated with folic acid, for medical imaging purposes. We then detail, in a first approach, the preparation of tridimensional constructs associating nanocrystalline apatite aqueous gels and drug-loaded pectin microspheres. Sustained releases of a fluorescein analog (erythrosin) used as model molecule were obtained over 7 days, in comparison with the ceramic or microsphere reference compounds. Such systems could constitute original bone-filling materials for in situ delivery of anticancer drugs.

摘要

纳米晶磷酸钙磷灰石构成了硬组织的矿物部分,现在已经可以在实验室规模上很好地合成仿生类似物。这些相的精细物理化学特性的最新进展使人们能够设想在医学领域的原始应用,同时更好地理解潜在的化学和相关的药理特性。在本研究中,我们特别关注仿生磷灰石在癌症诊断或治疗领域的应用。我们首先报告了基于掺杂铕的磷灰石的个体化发光纳米粒子的生产和初步生物学评价(细胞毒性、促炎潜能、ZR-75-1 乳腺癌细胞的内化),最终与叶酸偶联,用于医学成像。然后,我们详细介绍了将纳米晶磷灰石水凝胶与载药果胶微球结合的三维构建体的首次制备。与陶瓷或微球参考化合物相比,在 7 天的时间内,获得了作为模型分子的荧光素类似物(赤藓红)的持续释放。这种系统可以作为原位输送抗癌药物的新型骨填充材料。

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