Volov Alexander, Shkodenko Liubov, Koshel Elena, Drozdov Andrey S
Department of Chemistry, Moscow State University, 119234 Moscow, Russia.
SCAMT Institute, ITMO University, 191002 Saint Petersburg, Russia.
Nanomaterials (Basel). 2022 Jun 29;12(13):2230. doi: 10.3390/nano12132230.
Organically-coated nanomaterials are intensively studied and find numerous applications in a wide range of areas from optics to biomedicine. One of the recent trends in material science is the application of bio-mimetic polydopamine coatings that can be produced on a variety of substrates in a cost-efficient way under mild conditions. Such coatings not only modify the biocompatibility of the material but also add functional amino groups to the surface that can be further modified by classic conjugation techniques. Here we show an alternative strategy for substrates modification using dopamine conjugates instead of native dopamine. Compared to the classic scheme, the proposed strategy allows separation of the "organic" and "colloidal" stages, and simplified identification and purification steps. Modification with pre-modified dopamine made it possible to achieve high loading capacities with active components up to 10.5% wt. A series of organo-inorganic hybrids were synthesized and their bioactivity was analyzed.
有机包覆的纳米材料受到广泛研究,并在从光学到生物医学等广泛领域有众多应用。材料科学的最新趋势之一是应用仿生聚多巴胺涂层,这种涂层可以在温和条件下以经济高效的方式在各种基材上制备。此类涂层不仅能改变材料的生物相容性,还能在表面添加可通过经典偶联技术进一步修饰的功能性氨基。在此,我们展示了一种使用多巴胺共轭物而非天然多巴胺进行基材修饰的替代策略。与经典方案相比,所提出的策略允许分离“有机”和“胶体”阶段,并简化鉴定和纯化步骤。用预修饰的多巴胺进行修饰能够实现活性成分高达10.5%重量的高负载量。合成了一系列有机-无机杂化物并分析了它们的生物活性。