Mathews Juanita, Erickson Patrick, Kuchling Franz, Jawanda Navneet, Pio-Lopez Léo, Pai Vaibhav P, Levin Michael
Allen Discovery Center at Tufts University, Medford, Massachusetts, USA.
Bioelectricity. 2025 Mar 18;7(1):94-104. doi: 10.1089/bioe.2024.0049. eCollection 2025 Mar.
The Office of Cancer Complementary and Alternative Medicine, part of the Division of Cancer Treatment and Diagnosis under the National Cancer Institute (NCI), supports research in diverse areas of cancer therapeutics such as microbial therapies, herbal remedies, and mind-body practices. Recently they have become especially interested in the emerging role of bioelectricity in cancer biology and organized a virtual meeting with some of the top scientists in the field. In this report, we overview this first-of-its-kind Naional Institute of Health (NIH)-sponsored meeting, which featured talks from 14 researchers exploring the role of bioelectricity in cancer biology. The talks covered a wide range of topics, including excellent background information on how cell collectives change their bioelectrical coupling and set points during cancer formation, new tools for reading and writing bioelectrical signatures in cells and whole organisms, how ion channels that are involved in setting those signatures affect canonical pathways in development and tumor growth, and the methods for modeling bioelectrical interactions and information transfer in cell collectives. Especially exciting were the translational technologies that were highlighted, including new diagnostics, metastasis inhibition therapies, and more efficient detection of surgical margins. The meeting concluded with funding opportunities available from the NCI Division of Cancer Biology, Innovative Molecular Analysis Technologies Program, and the Small Business Innovation Research Development Center.
癌症补充与替代医学办公室是美国国立癌症研究所(NCI)癌症治疗与诊断司的一部分,它支持在癌症治疗的各个领域开展研究,如微生物疗法、草药疗法和身心疗法。最近,他们对生物电在癌症生物学中的新兴作用特别感兴趣,并组织了一次与该领域一些顶尖科学家的虚拟会议。在本报告中,我们概述了这次由美国国立卫生研究院(NIH)首次赞助的会议,会上有14位研究人员发表了演讲,探讨了生物电在癌症生物学中的作用。演讲涵盖了广泛的主题,包括关于细胞群体在癌症形成过程中如何改变其生物电耦合和设定点的出色背景信息、用于读取和写入细胞及整个生物体中生物电信号的新工具、参与设定这些信号的离子通道如何影响发育和肿瘤生长中的经典途径,以及在细胞群体中模拟生物电相互作用和信息传递的方法。特别令人兴奋的是所强调的转化技术,包括新的诊断方法、转移抑制疗法以及更高效的手术切缘检测。会议最后介绍了国立癌症研究所癌症生物学司、创新分子分析技术计划和小企业创新研究发展中心提供的资助机会。