Department of Oral & Maxillofacial Surgery, University of Groningen, University Medical Center Groningen, Groningen, The Netherlands.
Departments of Surgery, Nuclear Medicine and Molecular Imaging, Medical Imaging Center Groningen, University of Groningen, University Medical Center Groningen, Groningen, The Netherlands.
Nat Commun. 2020 Jun 26;11(1):3257. doi: 10.1038/s41467-020-16814-4.
Cancer cell metabolism leads to a uniquely acidic microenvironment in solid tumors, but exploiting the labile extracellular pH differences between cancer and normal tissues for clinical use has been challenging. Here we describe the clinical translation of ONM-100, a nanoparticle-based fluorescent imaging agent. This is comprised of an ultra-pH sensitive amphiphilic polymer, conjugated with indocyanine green, which rapidly and irreversibly dissociates to fluoresce in the acidic extracellular tumor microenvironment due to the mechanism of nanoscale macromolecular cooperativity. Primary outcomes were safety, pharmacokinetics and imaging feasilibity of ONM-100. Secondary outcomes were to determine a range of safe doses of ONM-100 for intra-operative imaging using commonly used fluorescence camera systems. In this study (Netherlands National Trial Register #7085), we report that ONM-100 was well tolerated, and four solid tumor types could be visualized both in- and ex vivo in thirty subjects. ONM-100 enables detection of tumor-positive resection margins in 9/9 subjects and four additional otherwise missed occult lesions. Consequently, this pH-activatable optical imaging agent may be clinically beneficial in differentiating previously unexploitable narrow physiologic differences.
癌细胞代谢导致实体瘤中形成独特的酸性微环境,但利用癌症与正常组织之间不稳定的细胞外 pH 差异进行临床应用一直具有挑战性。在这里,我们描述了基于纳米颗粒的荧光成像剂 ONM-100 的临床转化。它由超 pH 敏感的两亲聚合物组成,与吲哚菁绿偶联,由于纳米级大分子协同作用的机制,在酸性细胞外肿瘤微环境中快速且不可逆地解离以发出荧光。主要结果是评估 ONM-100 的安全性、药代动力学和成像可行性。次要结果是确定使用常用荧光摄像系统进行术中成像的 ONM-100 的一系列安全剂量。在这项研究(荷兰国家试验注册号 #7085)中,我们报告 ONM-100 具有良好的耐受性,在 30 名受试者中,四种实体瘤类型可在体内和体外进行可视化。ONM-100 可在 9/9 名受试者中检测到肿瘤阳性的切缘,并额外发现了四个原本漏诊的隐匿性病变。因此,这种 pH 激活光学成像剂可能在区分以前无法利用的狭窄生理差异方面具有临床益处。