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Redox pioneer: Professor Joe M. McCord

机译:氧化还原先锋:乔·M·麦考德教授

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Dr. Joe McCord (Ph.D. 1970) is recognized here as a Redox Pioneer because he has published at least three articles on antioxidant/redox biology as first/last author that have been cited over 1000 times and has published at least 37 articles each cited over 100 times. Dr. McCord is known for the monumental discovery of the antioxidant superoxide dismutase (SOD) while a graduate student under fellow redox pioneer Irwin Fridovich and demonstrating its necessity to aerobic life. Beyond this, McCord's career is distinguished for bridging the gap from basic science to clinical relevance by showing the application of SOD and superoxide to human physiology, and characterizing the physiological functions of superoxide in inflammation, immunological chemotaxis, and ischemia-reperfusion injury, among other disease conditions. Work by McCord serves as the foundation upon which our understanding of how superoxide functions in a variety of physiological systems is built and demonstrates how superoxide is essential to aerobic life, yet, if left unchecked by SOD, toxic to a multitude of systems. These discoveries have substantial significance in a wide range of studies with applications in cardiovascular disease, cancer, neurology, and medicine, as well as general health and longevity. Dr. McCord's contributions to free radical biology have been recognized through many prestigious achievement awards, honorary titles, and conferences around the world; each serving as a testament to his status as a redox pioneer. Antioxid. Redox Signal. 20, 183-188.
机译:Joe McCord博士(1970年,博士)在这里被公认为是Redox的先驱者,因为他以第一作者/最后作者的身份发表了至少三篇抗氧化剂/氧化还原生物学文章,被作者引用了1000多次,并发表了至少37篇文章。每个被引用超过100次。麦考德博士以抗氧化超氧化物歧化酶(SOD)的巨大发现而闻名,而氧化还原先驱欧文•弗里多维奇(Irwin Fridovich)则是一名研究生,并证明了其对有氧生活的必要性。除此之外,McCord的职业生涯是杰出的,他通过展示SOD和超氧化物在人体生理学中的应用,并表征了超氧化物在炎症,免疫趋化和缺血再灌注损伤中的生理功能,弥合了从基础科学到临床相关性的鸿沟。疾病状况。 McCord的工作奠定了我们对超氧化物如何在各种生理系统中起作用的基础,并证明了超氧化物对有氧生活至关重要,但如果不受SOD的限制,则对许多系统都有毒。这些发现在心血管研究,癌症,神经病学和医学以及一般健康和长寿的广泛研究中具有重要意义。麦考德博士对自由基生物学的贡献已被世界各地许多著名的成就奖,荣誉称号和会议所认可;每个人都证明了他作为氧化还原先锋的地位。抗氧化。氧化还原信号。 20,183-188。

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