Florczak Anna, Jastrzebska Katarzyna, Mackiewicz Andrzej, Dams-Kozlowska Hanna
Chair of Medical Biotechnology, Poznan University of Medical Sciences, Rokietnicka 8, Poznan 60-806, Poland.
J Mater Chem B. 2017 Apr 28;5(16):3000-3011. doi: 10.1039/c7tb00233e. Epub 2017 Apr 5.
Bioengineered spider silk is a material that combines superb mechanical properties, biocompatibility and biodegradability with simple production and purification procedures. Moreover, genetic engineering enables the functionalization of silk by adding the sequence encoding the desired attribute. Functionalized silk can self-assemble into spheres that may serve as a carrier for targeted cancer diagnostics/therapy. MaSp1- and MaSp2-based bioengineered silk proteins (MS1 and MS2, respectively) and their anti-cancer oriented hybrid variants were studied. A new approach was applied that blended the two functionalized silk types (MS1 and MS2) at different weight ratios. We selected spheres formed by the blending of functionalized MS1 and MS2 silks at a ratio of 8 : 2 that bound to the target cells at the same level as functionalized MS1 spheres but had greatly improved properties, including size, size distribution, colloidal stability and production efficiency. Compared with functionalized MS1 spheres, functionalized MS1:MS2 particles efficiently killed targeted cells when loaded with a drug inducing considerably lower non-specific toxicity. This study indicates that the blending of silk materials might be advantageous because it combines the most favorable characteristics of both silks and can lead to the formation of an optimal drug delivery vehicle.
生物工程蜘蛛丝是一种材料,它将卓越的机械性能、生物相容性和生物降解性与简单的生产和纯化程序相结合。此外,基因工程通过添加编码所需属性的序列实现了丝的功能化。功能化的丝可以自组装成球体,用作靶向癌症诊断/治疗的载体。对基于MaSp1和MaSp2的生物工程丝蛋白(分别为MS1和MS2)及其抗癌导向的杂交变体进行了研究。应用了一种新方法,将两种功能化丝类型(MS1和MS2)以不同重量比混合。我们选择了由功能化MS1和MS2丝以8 : 2的比例混合形成的球体,其与靶细胞的结合水平与功能化MS1球体相同,但在尺寸、尺寸分布、胶体稳定性和生产效率等方面具有显著改善的性能。与功能化MS1球体相比,功能化MS1:MS2颗粒在负载诱导较低非特异性毒性的药物时能有效杀死靶细胞。这项研究表明,丝材料的混合可能具有优势,因为它结合了两种丝的最有利特性,并能导致形成最佳的药物递送载体。