课题基金 / 基金详情

MODULATION OF NATURAL DEFENSE IN ORAL DISEASE DRI

MODULATION OF NATURAL DEFENSE IN ORAL DISEASE DRI
口腔疾病 DRI 中自然防御的调节
批准号:
2644768
负责人:
MICHAEL J LEVINE
金额:
$21.0万
依托单位国家:
美国
项目类别:
财政年份:
1987
资助国家:
美国
项目状态:
已结题
起止时间:
1987-09-01 至 1999-11-30

项目摘要

项目成果

MICHAEL J LEVINE的其他基金

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中文摘要
翻译
纽约州立大学布法罗分校RCOB的主要目标是 扩大支撑国家能力的科学基础 预防和控制口腔疾病和紊乱,改善口腔健康。 我们的科学专门知识和设施在 通过RCOB和大学相结合的上一次授权期 资源。这使RCOB的科学家能够解决 综合运用蛋白质化学、分子生物学、 生物物理学、免疫学、微生物学和细胞生物学。次要目标 RCOB的目的是保持一个卓越的中心,以吸引 高素质的科研人员致力于牙科研究,继续我们的长期- 在职业生涯的各个层面上坚持研究培训的传统 发展,并作为一个焦点,鼓励生产性研究-- 与其他机构的相关合作。该中心使用 一组牙医科学家、微生物学家、 生物化学家、生物物理学家、分子生物学家和细胞生物学家 牙医学院和医学院和 布法罗大学的生物医学科学专业。此外,科学家们 来自罗斯威尔公园癌症研究所和明尼苏达大学的 加入该中心是为了加强研究工作。 方案1、方案2和方案3建议加强唾液的保护质量 通过设计和开发唾液替代品来对抗菌斑 唾液流量正常的受试者和受试者中的介导性疾病 口干症。一种涉及蛋白质化学的多学科方法, 分子生物学、生物物理学和生物工程将设计和合成 与细菌有关的具有增强功能的唾液物质 间隙/粘着机构和润滑。 项目4、项目5和项目8的设计是为了表征致病因素 牙龈卟啉单胞菌可能是疾病的决定因素及研究 免疫化学、生化和分子生物学机制的研究进展 这些因素被表达并随后被调制。研究将会 关注菌毛在黏附和外膜蛋白中的作用 细菌共聚集与铁的调节。
英文摘要
The primary goal of the RCOB at State University of New York at Buffalo is to expand the scientific base that underlies the nation's capability to prevent and control oral diseases and disorders and to improve oral health. Our scientific expertise and facilities were greatly expanded during the previous granting period through a combination of RCOB and University resources. This enables RCOB scientists to address scientific problems in an integrated fashion using protein chemistry, molecular biology, biophysics, immunology, microbiology and cell biology. The secondary goal of the RCOB is to maintain a center of excellence that will attract investigators of high quality to dental research, continue our long- standing tradition of research training at all levels of career development, and serve as a focal point to encourage productive research- related collaborations with other institutions. The Center uses the combined efforts of a team of dentist-scientists, microbiologists, biochemists, biophysicists, molecular biologists and cell biologists from both the School of Dental Medicine and the School of Medicine and Biomedical Sciences at the University at Buffalo. Additionally, scientists from Roswell Park Cancer Institute and the University of Minnesota have joined the Center to augment research efforts. Projects 1, 2 and 3 propose to enhance the protective qualities of saliva by the design and development of salivary substitutes to combat plaque mediated disease in subjects with normal salivary flow as well as those with xerostomia. A multidisciplinary approach involving protein chemistry, molecular biology, biophysics and bioengineering will design and synthesize salivary substances with enhanced functions relating to bacterial clearance/adherence mechanisms and lubrication. Projects 4, 5 and 8 are designed to characterize virulence factors of Porphyromonas gingivalis that might be determinants of disease and to study the immunochemical, biochemical and molecular biological mechanisms by which these factors are expressed and subsequently modulated. Studies will focus on the role of fimbriae in adhesion and outer membrane proteins in bacterial coaggregation and iron regulation.
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