Lin Lingmin, He Zewei, Zhang Tianfang, Zuo Yanming, Chen Xiangfeng, Abdelrahman Zeinab, Chen Feihong, Wei Zhongcao, Si Ke, Gong Wei, Wang Xuhua, He Sailing, Chen Zuobing
Department of Neurobiology and Department of Orthopedics, Zhejiang University School of Medicine, 2nd Affiliated Hospital, Hangzhou, Zhejiang Province 310009, China.
NHC and CAMS Key Laboratory of Medical Neurobiology, MOE Frontier Science Center for Brain Research and Brain-Machine Integration, School of Brain Science and Brain Medicine, Zhejiang University, Hangzhou, Zhejiang Province, 310003, China.
J Mater Chem B. 2022 Feb 9;10(6):887-898. doi: 10.1039/d1tb02040d.
Mitochondria, key organelles which keep in tune with energy demands for eukaryotic cells, are firmly associated with neurological conditions and post-traumatic rehabilitation. fluorescence imaging of mitochondria, especially with deep tissue penetration, would open a window to investigate the actual context of the brain. However, the depth of traditional two-photon mitochondrial fluorescence imaging is still limited due to the poor biological compatibility or low two-photon absorption cross-sections. A biocompatible mitochondria-targeted two-photon fluorescent dye (FO2) with an excellent two-photon absorption cross-section (the maximum of 1184 GM at 790 nm) and low cellular toxicity was designed and synthesized to overcome this problem. With this dye, we reached an imaging depth of 640 μm during mitochondrial imaging of cortical cells in live animals. FO2 could be an excellent mitochondrial probe for live animal neural imaging to investigate the function and dysfunction of mitochondria in the brain.
线粒体是与真核细胞能量需求相协调的关键细胞器,与神经疾病和创伤后康复密切相关。对线粒体进行荧光成像,尤其是具有深层组织穿透能力的成像,将为研究大脑的实际情况打开一扇窗口。然而,由于生物相容性差或双光子吸收截面低,传统的双光子线粒体荧光成像深度仍然有限。为了解决这个问题,设计并合成了一种具有良好生物相容性、双光子吸收截面优异(在790nm处最大值为1184GM)且细胞毒性低的线粒体靶向双光子荧光染料(FO2)。使用这种染料,我们在活体动物皮质细胞的线粒体成像过程中达到了640μm的成像深度。FO2可能是用于活体动物神经成像的优秀线粒体探针,可用于研究大脑中线粒体的功能和功能障碍。