专著:
[1] X. Wei, B. Gu, “Optical Imaging in Human Disease and Biological Research,” Springer, 2021.[Fulltext]
期刊论文:
[15]. W. Pang#, Z. Xiao#, X. Wei, B. Gu*, "Biocompatible polymer optical fiber with strong scattering spherical end for interstitial photodynamic therapy," Optics Letters, 48(15), 3849-3852, 2023. [Fulltext]
[14]. L. Lin#, Z. Bao#, P. Jiang, Z. Xu, B. Shi, G. Xu*, D. Wang*, X. Wei*, B. Gu*, "Superior biocompatible carbon dots for dynamic fluorescence imaging of nucleolus in living cells,” Biomaterials Science, 11(8), 2935-2949, 2023.[Fulltext]
[13]. 雷曼,逄雯,石擘,王晨,王丹,魏勋斌,顾波波*, "基于核仁靶向碳点的双光子光动力疗法研究," 中国激光, 49(15), 1507105, 2022. [Fulltext] (特邀研究论文,亮点文章)
[12]. L. Lin, W. Pang, X. Jiang, S. Ding, X. Wei*, B. Gu*, " Light amplified oxidative stress in tumor microenvironment by carbonized hemin nanoparticles for boosting photodynamic anticancer therapy,” Light: Science & Applications, 11, 47, 2022. [Fulltext], [News & Views]
[11]. X. Jiang#, R. Pu#, C. Wang, J. Xu, Y. Tang, S. Qi, Q. Zhan, X. Wei, B. Gu*, “Noninvasive and early diagnosis of acquired brain injury using fluorescence imaging in the NIR-II window,” Biomedical Optics Express, 12(11), 6984-6994, 2021. [FullText]
[10]. W. Pang#, S. Ding#, L. Lin, C. Wang, M. Lei, J. Xu, X. Wang, J. Qu, X. Wei,
B. Gu*, "Noninvasive and real-time monitoring of Au nanoparticles promoted cancer metastasis using in vivo flow cytometry,”Biomedical Optics Express 12 (4), 1846-1857, 2021. [
Fulltext]
[9]. S. Ding#, W. Wu#, T. Peng#, W. Pang, P. Jiang, Q. Zhan, S. Qi, X. Wei*,
B. Gu*, B. Liu*, “Near-infrared light excited photodynamic anticancer therapy based on UCNPs-AIEgens nanocomposite,” Nanoscale Advances, 3 (8), 2325-2333, 2021.[
Fulltext]
[8]. P. Jiang#, W. Pang#, S. Ding, D. Wang, X. Wei,
B. Gu*, “Rapid ex vivo assessment of cancer prognosis by nucleolus-targeted fluorescence imaging using nitrogen doped carbon dots,” Analytica Chimica Acta, 338309, 2021. [
Fulltext]
[7]. W. Pang#, P. Jiang#, S. Ding, Z. Bao, N. Wang, H. Wang, J. Qu, D. Wang*,
B. Gu*, X. Wei*, “Nucleolus-targeted photodynamic anticancer therapy using renal-clearable carbon dots," Advanced Healthcare Materials 9 (16), 2000607, 2020.[
Fulltext]
[6]. H. Lin#, X. Cheng#, M. -J. Yin*, Z. Bao, X. Wei,
B. Gu*, “Flexible porphyrin doped polymer optical fibers for rapid and remote nosing of trace DNT vapor," Analyst 145 (15), 5307-5313, 2020. [
Fulltext]
[5]. M. Liu#,
B. Gu#, W. Wu#, Y. Duan, H. Liu, X. Deng, M. Fan, X. Wang, X. Wei, K. -T. Yong, K. Wang*, G. Xu* and B. Liu*, “Binary organic nanoparticles with bright aggregation-induced emission for three-photon brain vascular imaging," Chemistry of Materials 32 (15), 6437-6443, 2020.[
Fulltext]
[4]. M. Liu#, Y. Liu#,
B. Gu,* X. Wei, G. Xu,* X. Wang,* M. T. Swihart,* K. -T. Yong,* “Recent advances in copper sulphide-based nanoheterostructures,” Chemical Society Reviews 48 (19), 4950-4965, 2019. (
封面论文).[
Fulltext]
[3]. F. Yin#,
B. Gu#, J. Li#, Y Liu, Z. Li, K. -T. Yong*, and B. Z. Tang*, “In vitro anticancer activity of AIEgens,” Biomaterials science 7 (9), 3855-3865, 2019. [
Fulltext]
[2]. M. -J. Yin,
B. Gu*, Q. An, Y. L. Guan, K. -T. Yong*, "Recent development of fiber-optic chemical sensors and biosensors: mechanisms, materials, micro/nano-fabrications, and applications." Coordination Chemistry Reviews 376, 348-392, 2018.[
Fulltext]
[1].
B. Gu, K. -T. Yong*, and B. Liu*, “Strategies to overcome the limitations of AIEgens in biomedical applications,” Small Methods 2 (9), 1700392, 2018.[
Fulltext]