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RUI: Bioorganic Chemistry of Eumelanin

RUI: Bioorganic Chemistry of Eumelanin
RUI:真黑色素的生物有机化学
批准号:
1305919
负责人:
Jason Belitsky
金额:
$24.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-09-01 至 2018-08-31

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中文摘要
翻译
有了这个研究在本科院校(RUI)奖,在化学系的生命过程计划的化学是资助博士贾森Belitsky从奥伯林学院研究真黑素的形成和结构,在人体中的色素,作为一种光保护剂。 目前的研究表明,真黑素是由二羟基吲哚低聚物和纳米颗粒的自组装形成的。 定义明确的二羟基吲哚低聚物将通过迭代铃木耦合路线合成,这些低聚物,它们的氧化产物,和金属离子的自组装将使用技术,如NMR,UV-Vis光谱,和扫描电子显微镜(SEM)进行研究。 将寻求从定义明确的低聚物形成微米级和纳米级组装体的结构-活性关系,以提供对真黑素结构的分子水平理解。 从长远来看,了解真黑素的化学和生物物理特性是一个重要的目标,因为它的生物功能和病理学中的潜在作用还不完全确定。尽管公众对黑色素很感兴趣,但其复杂性和异质性为其研究提供了障碍。 黑色素当然是一种在人类生物学中具有重要作用的生物聚合物,在皮肤和头发的生物学中具有特别重要的意义,并且可能与皮肤癌等病理学有关。 对黑色素化学的更深入了解将有助于阐明它们在人类生物学和疾病中的作用,以及在工程,环境和生物应用中的黑色素基材料中的作用。然而,对黑色素的基本了解远远落后于其他生物聚合物,如蛋白质和DNA。 在这里,Beltisky小组将使用合成的模型化合物,以“自下而上”的方法来理解真黑素的形成和结构。与Belitsky小组的情况一样,本科研究人员将成为研究团队的骨干。 此外,PI计划将研究与他在奥伯林学院的教学相结合,每年有多达60名本科生接触研究级合成化学转化,作为他们的导师级有机化学实验室课程经验的一部分。
英文摘要
With this Research at Undergraduate Institutions (RUI) award, the Chemistry of Life Processes Program in the Chemistry Division is funding Dr. Jason Belitsky from Oberlin College to study the formation and structure of eumelanin, a pigment in humans that serves as a photoprotective agent. Current research suggests that eumelanin is formed from the self-assembly of dihydroxyindole oligomers and nanoparticles. Well-defined dihydroxyindole oligomers will be synthesized via iterative Suzuki coupling routes, and the self-assembly of these oligomers, their oxidation products, and metal ions will be studied using techniques such as NMR, UV-Vis spectroscopy, and scanning electron microscopy (SEM). Structure-activity relationships in the formation of micro- and nano- scale assemblies from well-defined oligomers will be sought to provide a molecular level understanding of eumelanin structure. In the long term, understanding the chemical and photophysical properties of eumelanin is an important goal given its incompletely defined biological functions and potential role in pathologies. Despite public interest in melanin, its complexity and heterogeneity have provided obtacles to its study. Melanin is certainly a biopolymer with an important role in human biology, with particular significance in the biology of the skin and hair and a likely connection to pathologies such as skin cancer. A greater understanding of the chemistry of melanins would help illuminate their roles in human biology and disease, as well as in melanin-based materials for engineering, environmental, and biological applications. However, a fundamental understanding of melanins lags far behind other biopolymers, such as proteins and DNA. Here, the Beltisky group will use synthetic model compounds in a "bottom-up" approach toward the understanding of the formation and structure of eumelanin. As has been the case in the Belitsky group, undergraduate researchers will form the backbone of the research team. Additionally, the PI plans to integrate the research with his teaching at Oberlin College, such that up to 60 undergraduates per year get exposure to research-level synthetic chemistry transformations as part of their sophomore-level organic chemistry laboratory course experience.
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CAREER: Complex Lead Oxides as Corrosion Films and Extended Inorganic Hybrids
  • 批准号:
    1151498
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $47.46万
  • 财政年份:
    2012
  • 负责人:
    Jason Belitsky
  • 依托单位:
海外基金