Nidhin Marimuthu, Vedhanayagam Mohan, Sangeetha Selvam, Kiran Manikantan Syamala, Nazeer Shaiju S, Jayasree Ramapurath S, Sreeram Kalarical Janardhanan, Nair Balachandran Unni
Central Leather Research Institute, Council of Scientific and Industrial Research, Adyar, Chennai 600 020 India.
Biophotonics and Imaging Lab, Sree Chitra Tirunal Institute for Medical Sciences and Technology, BMT Wing, Poojappura, Trivandrum 695012, INDIA.
Sci Rep. 2014 Aug 6;4:5968. doi: 10.1038/srep05968.
Native collagen is arranged in bundles of aligned fibrils to withstand in vivo mechanical loads. Reproducing such a process under in vitro conditions has not met with major success. Our approach has been to induce nanolinks, during the self-assembly process, leading to delayed rather than inhibited fibrillogenesis. For this, a designed synthesis of nanoparticles - using starch as a template and a reflux process, which would provide a highly anisotropic (star shaped) nanoparticle, with large surface area was adopted. Anisotropy associated decrease in Morin temperature and superparamagnetic behavior was observed. Polysaccharide on the nanoparticle surface provided aqueous stability and low cytotoxicity. Starch coated nanoparticles was utilized to build polysaccharide - collagen crosslinks, which supplemented natural crosslinks in collagen, without disturbing the conformation of collagen. The resulting fibrillar lamellae showed a striking resemblance to native lamellae, but had a melting and denaturation temperature higher than native collagen. The biocompatibility and superparamagnetism of the nanoparticles also come handy in the development of stable collagen constructs for various biomedical applications, including that of MRI contrast agents.
天然胶原蛋白排列成束状的对齐原纤维,以承受体内的机械负荷。在体外条件下重现这一过程尚未取得重大成功。我们的方法是在自组装过程中诱导纳米连接,从而导致原纤维形成延迟而非受到抑制。为此,采用了一种设计合成纳米颗粒的方法——以淀粉为模板并通过回流过程,这将提供具有大表面积的高度各向异性(星形)纳米颗粒。观察到各向异性与莫林温度降低和超顺磁性行为相关。纳米颗粒表面的多糖提供了水稳定性和低细胞毒性。淀粉包被的纳米颗粒被用于构建多糖 - 胶原蛋白交联,其补充了胶原蛋白中的天然交联,同时不干扰胶原蛋白的构象。所得的纤维状薄片与天然薄片有惊人的相似之处,但具有比天然胶原蛋白更高的熔化和变性温度。纳米颗粒的生物相容性和超顺磁性在开发用于各种生物医学应用(包括磁共振成像造影剂)的稳定胶原蛋白构建体方面也很有用。