Interdisciplinary Program in Bioengineering, Seoul National University, Seoul 151-742, South Korea.
Gordon Center for Medical Imaging, Department of Radiology, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114, USA.
Theranostics. 2019 May 31;9(15):4255-4264. doi: 10.7150/thno.35606. eCollection 2019.
The ability of brain tissue to regenerate is limited; therefore, brain diseases (i.e., trauma, stroke, tumors) often lead to irreversible motor and cognitive impairments. Therapeutic interventions using various types of injectable biomaterials have been investigated to promote endogenous neural differentiation. Despite promising results in pre-clinical studies, the translation of regenerative medicine to the clinic has many challenges due to the lack of reliable imaging systems to achieve accurate evaluation of the treatment efficacy. : In this study, we developed a dual-channel fluorescence imaging technique to simultaneously monitor tissue ingrowth and scaffold disintegration. Enzymatically crosslinked gelatin-hyaluronic acid hydrogel was labeled with 800 nm fluorophore, ZW800-3a, while the regenerated tissue was highlighted with 700 nm brain-specific contrast agent, Ox1. : Using the multichannel fluorescence imaging system, tissue growth and degradation of the NIR hydrogel were simultaneously imaged in the brain of mice. Images were further analyzed and reconstructed to show both visual and quantitative information of each stage of a therapeutic period. : Dual-channel imaging systems can provide highly accurate visual and quantitative information of the brain tissue ingrowth for the evaluation of the therapeutic effect of NIR hydrogel through a simple and fast operating procedure.
脑组织的再生能力有限;因此,脑部疾病(如创伤、中风、肿瘤)通常会导致不可逆转的运动和认知障碍。人们研究了使用各种类型的可注射生物材料进行治疗干预,以促进内源性神经分化。尽管临床前研究取得了有希望的结果,但由于缺乏可靠的成像系统来实现对治疗效果的准确评估,再生医学向临床的转化仍面临许多挑战。在这项研究中,我们开发了一种双通道荧光成像技术,可同时监测组织内长入和支架分解。用 800nm 荧光团 ZW800-3a 标记酶交联的明胶-透明质酸水凝胶,而再生组织则用 700nm 的脑特异性对比剂 Ox1 进行标记。使用多通道荧光成像系统,可同时对小鼠大脑中的近红外水凝胶的组织生长和降解进行成像。进一步对图像进行分析和重建,以显示治疗期各个阶段的直观和定量信息。双通道成像系统可以通过简单快速的操作程序,为近红外水凝胶的治疗效果评估提供脑组织内长入的高度准确的直观和定量信息。