I-Corps: DNA-based kinase activity detection platform
I-Corps: DNA-based kinase activity detection platform
批准号:
2110778
负责人:
Gyeong Mee Yoon
金额:
$5.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2021
资助国家:
美国
项目状态:
已结题
起止时间:
2021-04-01 至 2023-03-31
中文摘要
这个i-Corps项目的更广泛的影响是改善患者的结果,降低医疗成本,帮助制药科学家开发新的疗法,并支持正在进行的阐明激酶作用机制的努力。肌酶参与体内葡萄糖(糖)的新陈代谢。目前可用的激酶活性测定系统缺乏高灵敏度、成本效益以及在复杂介质中准确和准确地进行测量的能力。疾病的过度诊断和过度治疗是一个严重的问题,导致许多患者承受不必要的副作用,如活检感染和高昂的医疗费用。拟议的方法可能提供一种迫切需要的创新,它将克服现有激酶分析面临的多重障碍,并在下一代疗法的治疗和开发方面更好地装备临床医生和制药科学家。这个i-Corps项目将解决当前激酶活性分析的缺陷。该项目的目标是使用一种创新的基于DNA的蛋白质活性检测系统来开发高灵敏度和多重的激酶分析。基于DNA的活性检测方法比目前的检测方法具有多方面的优势,包括成本效益、多重能力、高灵敏度和特异性。由于DNA合成的低成本,这种检测方法将比目前的检测方法便宜10到100倍。该方法能够在临床相关的生物样品中检测低至100毫微摩尔(Fm)的蛋白质活性。最终,这一创新的基于DNA的激酶分析平台将通过一种新的解决方案来解决当前激酶分析系统面临的局限性,该解决方案在疾病诊断和/或监测各种癌症的激酶靶向药物响应性方面具有高度的特异性、敏感性和准确性。该奖项反映了NSF的法定使命,并已通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
The broader impact of this I-Corps project is to improve patient outcomes, lower healthcare costs, aid pharmaceutical scientists in the development of new therapies, and support ongoing efforts to elucidate kinase mechanisms of action. Kinase enzymes are involved in the metabolism of glucose(sugar) in the body. Currently available kinase activity assay systems lack high sensitivity, cost-effectiveness, and the ability to make measurements in a complex media precisely and accurately. Overdiagnosis and overtreatment of disease is a critical problem that causes many patients to endure unnecessary side effects, such as infections from biopsies and high healthcare costs. The proposed approach may offer a critically needed innovation that will overcome multiple barriers facing existing kinase assays and better equip clinicians and pharmaceutical scientists in the treatment and development of next generation therapies.This I-Corps project will address drawbacks of current kinase activity assays. The goal of this project is to develop highly sensitive and multiplexed kinase assays using an innovative DNA-based protein activity detection system. DNA-based activity assays display multiple advantages over current assays, including cost effectiveness, multiplexing ability, high sensitivity, and specificity. This assay will be 10- to 100-fold cheaper than current assays due to the low cost of DNA synthesis. The proposed approach enables the detection of protein activities as low as 100 femtomolar (fM) in proteins in clinically-relevant biological samples. Ultimately, this innovative DNA-based kinase assay platform will address the limitations facing current kinase assay systems with a new solution that offers high specificity, sensitivity, and accuracy in terms of disease diagnostics and/or monitoring the kinase targeted drug responsiveness of various cancers.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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