Wang Jinghui, Russel Colleen, Walczak Mikolaj, Gao Dawei, Qiao Guanda, Fan Xiaoxuan, Chu Chengyan, Janowski Miroslaw, Walczak Piotr, Liang Yajie
Department of Diagnostic Radiology and Nuclear Medicine, University of Maryland School of Medicine, Baltimore, MD, United States.
Department of Microbiology and Immunology, University of Maryland School of Medicine, Baltimore, MD, United States.
bioRxiv. 2025 May 27:2025.05.24.655973. doi: 10.1101/2025.05.24.655973.
Intracerebral cell transplantation holds great promise for treating stroke and other neurological disorders, but progress is hindered by challenges in precise cell delivery and limited methods for monitoring post-engraftment dynamics. To address these limitations, we introduce OPTRACE (OPtical imaging-guided Transplantation and tRAcking of CElls), a two-step framework that integrates precision delivery with longitudinal in vivo tracking to advance cell therapy. During transplantation, OPTRACE enables real-time visualization using cost-effective translucent glass micropipettes, guided by predictive modeling to optimize delivery parameters. A novel pulse-elevation injection technique further enhances the precision of superficial cortical engraftment. Following transplantation, multicolor labeling combined with two-photon fluorescence microscopy permits longitudinal single-cell tracking, revealing host microglial responses, and altered neuronal calcium signaling at the graft interface. By unifying high-resolution delivery and tracking strategies, OPTRACE provides a powerful platform for elucidating engraftment biology and accelerating the development of effective cell-based interventions for neurological diseases.
脑内细胞移植在治疗中风和其他神经疾病方面具有巨大潜力,但精确的细胞递送挑战以及移植后动态监测方法有限阻碍了其进展。为解决这些局限性,我们引入了OPTRACE(光学成像引导的细胞移植与追踪),这是一个两步框架,将精确递送与纵向体内追踪相结合,以推进细胞治疗。在移植过程中,OPTRACE利用具有成本效益的半透明玻璃微量移液器实现实时可视化,并通过预测模型指导以优化递送参数。一种新颖的脉冲提升注射技术进一步提高了浅表皮质植入的精度。移植后,多色标记结合双光子荧光显微镜允许进行纵向单细胞追踪,揭示宿主小胶质细胞反应以及移植界面处神经元钙信号的改变。通过统一高分辨率递送和追踪策略,OPTRACE为阐明植入生物学以及加速针对神经疾病的有效细胞干预措施的开发提供了一个强大的平台。