Departamento de Química, Centro de Ciências da Natureza, CCN, Universidade Federal do Piauí, UFPI, Teresina, PI, 64049-550, Brazil; Núcleo de Pesquisa em Biodiversidade e Biotecnologia, BIOTEC, Campus Parnaíba, CMRV, Universidade Federal do Piauí, UFPI, Parnaíba, PI, 64202-020, Brazil.
Núcleo de Pesquisa em Biodiversidade e Biotecnologia, BIOTEC, Campus Parnaíba, CMRV, Universidade Federal do Piauí, UFPI, Parnaíba, PI, 64202-020, Brazil; Campus Parnaíba, Instituto Federal de Educação Ciência e Tecnologia do Piauí, IFPI, Parnaíba, PI, 64210-260, Brazil.
Mater Sci Eng C Mater Biol Appl. 2012 Aug 1;32(6):1588-93. doi: 10.1016/j.msec.2012.04.048. Epub 2012 Apr 29.
The search for bioactive molecules to be employed as recognition elements in biosensors has stimulated researchers to pore over the rich Brazilian biodiversity. In this sense, we introduce the use of natural cashew gum (Anacardium occidentale L.) as an active biomaterial to be used in the form of layer-by-layer films, in conjunction with phthalocyanines, which were tested as electrochemical sensors for dopamine detection. We investigated the effects of chemical composition of cashew gum from two different regions of Brazil (Piauí and Ceará states) on the physico-chemical characteristics of these nanostructures. The morphology of the nanostructures containing cashew gum was studied by atomic force microscopy which indicates that smooth films punctuated by globular features were formed that showed low roughness values. The results indicate that, independent of the origin, cashew gum stands out as an excellent film forming material with potential application in nanobiomedical devices as electrochemical sensors.
寻找具有生物活性的分子作为生物传感器中的识别元件,这激发了研究人员深入研究巴西丰富的生物多样性。在这种情况下,我们引入了天然腰果胶(Anacardium occidentale L.)作为活性生物材料的使用,以层层膜的形式与酞菁一起使用,这些酞菁被测试为多巴胺检测的电化学传感器。我们研究了来自巴西两个不同地区(皮奥伊州和塞阿拉州)的腰果胶的化学成分对这些纳米结构的物理化学特性的影响。通过原子力显微镜研究了含有腰果胶的纳米结构的形态,结果表明形成了光滑的薄膜,其中点缀着球状特征,其粗糙度值较低。结果表明,无论来源如何,腰果胶都是一种出色的成膜材料,具有作为电化学传感器等纳米生物医学设备的潜在应用。