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Molecularly Imprinted Silk Fibroin Nanoparticles

机译:分子印迹丝素蛋白纳米粒子

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Nanosized biomimetics prepared by the strategy of molecular imprinting, that is, the stamping of recognition sites by means of a template-assisted synthesis, are demonstrating potential as plastic antibodies in medicine, proving effective for cell imaging and targeted therapies. Most molecularly imprinted nanoparticles (MIP-NPs) are currently made of soft matter, such as polyacrylamide and derivatives. Yet, MIP-NPs biocompatibility is crucial for their effective translation into clinical uses. Here, we propose the original idea to synthesize fully biocompatible molecularly imprinted nanoparticles starting from the natural polymer silk fibroin (MIP SF-NPs), which is nontoxic and highly biocompatible. The conditions to produce MIP SF-NPs of different sizes (d _(mean) ~ 50 nm; d _(mean) ~ 100 nm) were set using the response surface method. The stamping of a single, high affinity (K _(D) = 57 × 10~(–9) M), and selective recognition site per silk fibroin nanoparticle was demonstrated, together with the confirmation of nontoxicity. Additionally, MIP SF-NPs were used to decorate silk microfibers and silk nanofibers, providing a general means to add entailed biofunctionalities to materials.
机译:通过分子印迹策略制备的纳米仿生,即通过模板辅助合成对识别位点进行标记,在医学上显示出作为塑料抗体的潜力,证明对细胞成像和靶向治疗有效。大多数分子印迹纳米颗粒(MIP NP)目前由软物质制成,如聚丙烯酰胺和衍生物。然而,MIP-NPs的生物相容性对于其有效转化为临床用途至关重要。在这里,我们提出了从天然聚合物丝素蛋白(MIP-SF-NPs)出发合成完全生物相容性的分子印迹纳米颗粒的原始想法,该纳米颗粒无毒且高度生物相容。制备不同尺寸MIP-SF纳米粒子的条件(d(平均)~50nm 用响应面法设置d_0(平均值)~100nm)。证明了每个丝素蛋白纳米颗粒具有单一的高亲和力(K_D)=57×10~(-9)M)和选择性识别位点,并确认了无毒性。此外,MIP-SF纳米颗粒还被用于装饰丝微纤维和丝纳米纤维,为材料添加必要的生物功能提供了一种通用方法。

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