Earth and Environmental Sciences, James Cook University, Townsville, QLD, Australia.
Department of Biomedical Research, Macquarie University, Sydney, NSW, 2109, Australia.
Cell Mol Life Sci. 2020 Sep;77(17):3293-3309. doi: 10.1007/s00018-020-03484-0. Epub 2020 Mar 4.
Metallomics is a rapidly evolving field of bio-metal research that integrates techniques and perspectives from other "-omics" sciences (e.g. genomics, proteomics) and from research vocations further afield. Perhaps the most esoteric of this latter category has been the recent coupling of biomedicine with element and isotope geochemistry, commonly referred to as isotope metallomics. Over the course of less than two decades, isotope metallomics has produced numerous benchmark studies highlighting the use of stable metal isotope distribution in developing disease diagnostics-e.g. cancer, neurodegeneration, osteoporosis-as well as their utility in deciphering the underlying mechanisms of such diseases. These pioneering works indicate an enormous wealth of potential and provide a call to action for researchers to combine and leverage expertise and resources to create a clear and meaningful path forward. Doing so with efficacy and impact will require not only building on existing research, but also broadening collaborative networks, bolstering and deepening cross-disciplinary channels, and establishing unified and realizable objectives. The aim of this review is to briefly summarize the field and its underpinnings, provide a directory of the state of the art, outline the most encouraging paths forward, including their limitations, outlook and speculative upcoming breakthroughs, and finally to offer a vision of how to cultivate isotope metallomics for an impactful future.
金属组学是一个快速发展的生物金属研究领域,它整合了来自其他“组学”科学(如基因组学、蛋白质组学)和更远领域的研究领域的技术和观点。也许后者中最神秘的是最近将生物医学与元素和同位素地球化学结合起来,通常称为同位素金属组学。在不到二十年的时间里,同位素金属组学已经产生了许多基准研究,强调了稳定金属同位素分布在开发疾病诊断中的应用,例如癌症、神经退行性疾病、骨质疏松症,以及它们在破译这些疾病的潜在机制方面的效用。这些开创性的工作表明了巨大的潜力,并呼吁研究人员结合和利用专业知识和资源,为未来创造一个清晰而有意义的道路。要想有效地产生影响,不仅需要建立在现有研究的基础上,还需要扩大合作网络,加强和深化跨学科渠道,并建立统一和可实现的目标。本文的目的是简要总结该领域及其基础,提供该领域的最新目录,概述最令人鼓舞的前进道路,包括其局限性、前景和推测即将到来的突破,并最终提供一个如何培养同位素金属组学以实现未来有影响力的愿景。