From Passive Monitoring to Active Control: Aggregation-induced Emission-driven Antimicrobial Nanotechnology for Long-duration Spaceflight

Feiyi Sun , Nuomin Li , Zheng Zhao , Zicong Zhang , Zuowan Zhou , Xiaoling Xu , Congwen Liu , Qihuan Xiong , Jianmin Tang , Chunhua Yang , Shiyong Yu , Ying Zhang , Ben Zhong Tang , Yulin Deng

Aggregate ›› 2025, Vol. 6 ›› Issue (8) : e70132

PDF
Aggregate ›› 2025, Vol. 6 ›› Issue (8) : e70132 DOI: 10.1002/agt2.70132
EDITORIAL

From Passive Monitoring to Active Control: Aggregation-induced Emission-driven Antimicrobial Nanotechnology for Long-duration Spaceflight

Author information +
History +
PDF

Keywords

aggregation-induced emission / antibacterial module / China space station / Tianzhou-9

Cite this article

Download citation ▾
Feiyi Sun, Nuomin Li, Zheng Zhao, Zicong Zhang, Zuowan Zhou, Xiaoling Xu, Congwen Liu, Qihuan Xiong, Jianmin Tang, Chunhua Yang, Shiyong Yu, Ying Zhang, Ben Zhong Tang, Yulin Deng. From Passive Monitoring to Active Control: Aggregation-induced Emission-driven Antimicrobial Nanotechnology for Long-duration Spaceflight. Aggregate, 2025, 6(8): e70132 DOI:10.1002/agt2.70132

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

B. Flax, A. Tortora, Y. Yeung, W. W. Schubert, and G. McDonnell, “Dry Heat Sterilization Modelling for Spacecraft Applications,” Journal of Applied Microbiology 133, (2022): 2893-2901.

[2]

V. Ravichandran, B. Krishnan, M. Tinwala, A. S. Kumar, and R. Jobby, “Microbial Resilience in Space: Biofilms, Risks and Strategies for Space Exploration,” Life Sciences in Space Research 14 (2025): 1-13.

[3]

M. Patel, P. Patel, N. S. Munshi, et al., “Microbial Contamination and Pharmaceutical Stability in Space Environment: Addressing Dual Challenge With Innovative Technologies and Sustainable Practices,” Frontiers in Space Technologies 6 (2025): 1553854.

[4]

P. Flores, S. A. McBride, J. M. Galazka, K. K. Varanasi, and L. Zea, “Biofilm Formation of Pseudomonas aeruginosa in Spaceflight Is Minimized on Lubricant Impregnated Surfaces,” NPJ Microgravity 9, (2023): 66.

[5]

L. Zea, R. J. McLean, T. A. Rook, et al., “Potential Biofilm Control Strategies for Extended Spaceflight Missions,” Biofilm 2 (2020): 100026.

[6]

a) J. Mei, N. L. Leung, R. T. Kwok, J. W. Lam, and B. Z. Tang, “Aggregation-induced Emission: Together We Shine, united We Soar!,” Chemical Reviews 115, (2015): 11718-11940. b) Q. Xia, Y. Zhang, Y. Li, et al., “A Historical Review of Aggregation-induced Emission From 2001 to 2020: A Bibliometric Analysis,” Aggregate 3, (2022): e152.

[7]

G. Feng and B. Liu, “Aggregation-induced Emission (AIE) Dots: Emerging Theranostic Nanolights,” Accounts of Chemical Research 51, (2018): 1404-1414.

RIGHTS & PERMISSIONS

2025 The Author(s). Aggregate published by SCUT, AIEI, and John Wiley & Sons Australia, Ltd.

AI Summary AI Mindmap
PDF

2

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/