作者:Liao, Sha; Zhou, Xiaoxi; Liu, Chuanyu; Liu, Chang; Hao, Shijie; Luo, Hongyu; Hou, Huan; Liu, Qian; Zhang, Zhe; Xiao, Liyun; Xu, Yuan; Huang, Yaling; Zhou, Sining; Li, Xuerong; Wang, Yang; Xie, Lulin; Zhou, Zhichun; Dong, Shichen; Wang, Yiru; Xu, Xiaojing; Guo, Pengcheng; Lin, Xiumei; Lei, Jiajie; Wang, Qiaoling; Gong, Yuxin; Cheng, Jiaming; Yuan, Zixin; Yang, Yongqing; Huang, Zhi; Li, Shenglong; Zheng, Yuhui; Yang, Shichen; Huang, Xin; Liu, Weiqing; Li, Mei; Deng, Zhonghan; Yang, Xinyu; Yin, Jianhua; Luo, Yingjie; Lai, Yiwei; Yuan, Yue; Cheng, Mengnan; Wang, Bo; Ji, Jiansong; Esteban, Miguel A.; Li, Yuxiang; Gu, Ying; Ruan, Yijun; Chen, Liang; Wang, Xiangdong; Xie, Jun; Wang, Jian; Liu, Longqi; Chen, Ao; Xu, Xun
作者单位:Beijing Genomics Institute (BGI); Beijing Genomics Institute (BGI); Beijing Genomics Institute (BGI); Shanxi Medical University; Fujian Medical University; South China University of Technology; Chinese University of Hong Kong; Beijing Genomics Institute (BGI); Chinese Academy of Sciences; University of Chinese Academy of Sciences, CAS; South Central Minzu University; Nankai University; Huazhong Agricultural University; Beijing Genomics Institute (BGI); Beijing Genomics Institute (BGI); Wenzhou Medical University; Beijing Genomics Institute (BGI); Zhejiang University; Fudan University; Shanxi Medical University; Beijing Genomics Institute (BGI)
摘要:Single-cell sequencing technologies have advanced our understanding of cellular heterogeneity and biological complexity. However, existing methods face limitations in throughput, capture uniformity, cell size flexibility, and technical extensibility. We present Stereo-cell, a spatial enhanced-resolution single-cell sequencing platform based on high-density DNA nanoball (DNB)-patterned arrays, which enables scalable and unbiased cell capture at a wide input range and supports high-fidelity tran...