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Dr Ruirui Qiao
Dr

Ruirui Qiao

Email: 
Phone: 
+61 7 344 31295

Overview

Background

Dr Ruirui Qiao is a Group leader and NHMRC Emerging Leadership Fellow at Australian Institute for Bioengineering and Nanotechnology (AIBN), University of Queensland. Dr Qiao received her BSc (2005) and MSc (2007) in Peking University major in pharmaceutical Science and was a tenured associate professor (2016–2017) and assistant professor (2009–2015) at the Institute of Chemistry, Chinese Academy of Sciences (CAS), where she received her PhD (Physical Chemistry) in 2014. In 2017, she joined ARC Centre of Bio-Nano Science (CBNS), Monash University as a project co-leader. Currently, she leads a nanobiotechnology research group at AIBN, focusing on the development of functional nanohybrids toward biomedical and clinical translations.

Dr Qiao has made significant contributions to both research fields with work in synthetic methodology development, surface functionalisation, enhancing the physical properties of inorganic nanoparticles, as well as bioapplications in molecular imaging and drug delivery. She has publushed >100 peer reviewed articles in international top refereed journals such as Science, Nature Communications, ACS Nano, Chemistry of Materials, Advanced Materials, Polymer Chemistry, and so on., with citation >7000 times (H-index = 42). Her current research focuses on the development of advanced polymer/inorganice hybrid materials, employing cutting-edge technologies such as inorganic nanoparticle synthesis, polymer synthesis, PET-RAFT, and 3D/4D printing. Her group aims to harness these advanced materials for various biomedical applications, including disease diagnosis, drug/gene delivery, tissue engineering, antibacterial solutions, and soft robotics.She received NHMRC Investigator Grant (2020) and UQ Foundation Research Excellence Award (2021).

She is currently serving in Editorial Board and Associate Editor of Science Advances (AAAS), Journal of Nanobiotechnology and Cancer Nanotechnology (BMC, Part of Spring Nature), and Guest Editors of Biosensors and Frontier in Pharmacology.

Dr Qiao is looking for highly motivated Ph.D. students, and highly competitive full scholarship can be provided. The University of Queensland ranks in the top 50 as measured by the Performance Ranking of Scientific Papers for World Universities. The University also ranks 45 in the QS World University Rankings, 52 in the US News Best Global Universities Rankings, 60 in the Times Higher Education World University Rankings and 55 in the Academic Ranking of World Universities.

Availability

Dr Ruirui Qiao is:
Available for supervision
Media expert

Qualifications

  • Bachelor of Pharmaceutical Sciences, Peking University
  • Masters (Research) of Medicinal Chemistry, Peking University
  • Doctoral Diploma of Natural Science, University of the Chinese Academy of Science

Research impacts

Dr Qiao displays excellence in communication and community engagement by actively promoting an understanding of science through impactful outreach activities. For example, as the co-Chair of AIBN EMCA committee, she played a key role in organising the AIBN Career Development Week, which serves as a platform for inspiring the next generation of scientists and promoting STEM education. Additionally, she participated in the AIBN GEDC Women in Science Panel, where she shared her career path to promote diversity in STEM fields.

Furthermore, her participation in media interviews and public talks has helped raise awareness about complex scientific topics, making them more accessible to the general public. For example, her research projects on 4D printing soft robots and seawater-degradable plastics have been featured in numerous media outlets, including COSMOS Magazine, Australian Manufacturing Magazine, and the Sydney Morning Herald.

The impact of Dr Qiao's communication efforts is underscored by the wide audience reach of her media releases, with 190,000 people reached across radio, 580,000 across print, and 15.6 million online. Overall, her communication engagements have made a meaningful impact on promoting an understanding of science in the community, particularly in encouraging participation in STEM and enhancing scientific literacy.

Works

Search Professor Ruirui Qiao’s works on UQ eSpace

113 works between 2008 and 2024

1 - 20 of 113 works

2024

Journal Article

Multifunctional fluoropolymer‐engineered magnetic nanoparticles to facilitate blood‐brain barrier penetration and effective gene silencing in medulloblastoma

Forgham, Helen, Zhu, Jiayuan, Huang, Xumin, Zhang, Cheng, Biggs, Heather, Liu, Liwei, Wang, Yi Cheng, Fletcher, Nicholas, Humphries, James, Cowin, Gary, Mardon, Karine, Kavallaris, Maria, Thurecht, Kristofer, Davis, Thomas P. and Qiao, Ruirui (2024). Multifunctional fluoropolymer‐engineered magnetic nanoparticles to facilitate blood‐brain barrier penetration and effective gene silencing in medulloblastoma. Advanced Science, 11 (25) 2401340. doi: 10.1002/advs.202401340

Multifunctional fluoropolymer‐engineered magnetic nanoparticles to facilitate blood‐brain barrier penetration and effective gene silencing in medulloblastoma

2024

Journal Article

Advancing Tissue Culture with Light-Driven 3D-Printed Microfluidic Devices

Li, Xiangke, Wang, Meng, Davis, Thomas P., Zhang, Liwen and Qiao, Ruirui (2024). Advancing Tissue Culture with Light-Driven 3D-Printed Microfluidic Devices. Biosensors, 14 (6) 301, 301. doi: 10.3390/bios14060301

Advancing Tissue Culture with Light-Driven 3D-Printed Microfluidic Devices

2024

Journal Article

Light‐Assisted 3D‐Printed Hydrogels for Antibacterial Applications

Zhang, Liwen, Nasar, Naufal Kabir Ahamed, Huang, Xumin, Hu, Chenyang, Pang, Xuan, Chen, Xuesi, Qiao, Ruirui and Davis, Thomas Paul (2024). Light‐Assisted 3D‐Printed Hydrogels for Antibacterial Applications. Small Science, 4 (8) 2400097. doi: 10.1002/smsc.202400097

Light‐Assisted 3D‐Printed Hydrogels for Antibacterial Applications

2024

Journal Article

Heterocyclic molecules tethered branched polymers with innate immune stimulating activity

Zhao, Jiayu, Liu, Liping, Wang, Yibo, Huang, Zichao, Zhang, Yu, Qiao, Ruirui, Davis, Thomas P., Tang, Zhaohui, Song, Wantong and Chen, Xuesi (2024). Heterocyclic molecules tethered branched polymers with innate immune stimulating activity. CCS Chemistry, 6 (5), 1278-1288. doi: 10.31635/ccschem.023.202303214

Heterocyclic molecules tethered branched polymers with innate immune stimulating activity

2024

Journal Article

Editorial: Recent progress in drug delivery technologies for advanced pharmaceutics

Guo, Bing, Peng, Tingting, Hu, Qinglian and Qiao, Ruirui (2024). Editorial: Recent progress in drug delivery technologies for advanced pharmaceutics. Frontiers in Chemistry, 12 1413056. doi: 10.3389/fchem.2024.1413056

Editorial: Recent progress in drug delivery technologies for advanced pharmaceutics

2024

Journal Article

Fluorine-modified polymers reduce the adsorption of immune-reactive proteins to PEGylated gold nanoparticles

Forgham, Helen, Zhu, Jiayuan, Zhang, Taoran, Huang, Xumin, Li, Xiangke, Shen, Ao, Biggs, Heather, Talbo, Gert, Xu, Chun, Davis, Thomas P. and Qiao, Ruirui (2024). Fluorine-modified polymers reduce the adsorption of immune-reactive proteins to PEGylated gold nanoparticles. Nanomedicine, 19 (11), 995-1012. doi: 10.2217/nnm-2023-0357

Fluorine-modified polymers reduce the adsorption of immune-reactive proteins to PEGylated gold nanoparticles

2024

Journal Article

Nanoengineering liquid metal core–shell nanostructures

Lu, Hongda, Tang, Shi‐Yang, Zhu, Jiayuan, Huang, Xumin, Forgham, Helen, Li, Xiangke, Shen, Ao, Yun, Guolin, Hu, Jinming, Zhang, Shiwu, Davis, Thomas P., Li, Weihua and Qiao, Ruirui (2024). Nanoengineering liquid metal core–shell nanostructures. Advanced Functional Materials, 34 (6) 2311300. doi: 10.1002/adfm.202311300

Nanoengineering liquid metal core–shell nanostructures

2024

Journal Article

Author Correction: 3D-printed liquid metal polymer composites as NIR-responsive 4D printing soft robot

Zhang, Liwen, Huang, Xumin, Cole, Tim, Lu, Hongda, Hang, Jiangyu, Li, Weihua, Tang, Shi-Yang, Boyer, Cyrille, Davis, Thomas P. and Qiao, Ruirui (2024). Author Correction: 3D-printed liquid metal polymer composites as NIR-responsive 4D printing soft robot. Nature Communications, 15 (1) 943, 1-1. doi: 10.1038/s41467-024-45465-y

Author Correction: 3D-printed liquid metal polymer composites as NIR-responsive 4D printing soft robot

2024

Journal Article

Tailored fluorosurfactants through controlled/living radical polymerization for highly stable microfluidic droplet generation

Li, Xiangke, Tang, Shi‐Yang, Zhang, Yang, Zhu, Jiayuan, Forgham, Helen, Zhao, Chun‐Xia, Zhang, Cheng, Davis, Thomas P. and Qiao, Ruirui (2024). Tailored fluorosurfactants through controlled/living radical polymerization for highly stable microfluidic droplet generation. Angewandte Chemie, 136 (3) e202315552, 1-9. doi: 10.1002/ange.202315552

Tailored fluorosurfactants through controlled/living radical polymerization for highly stable microfluidic droplet generation

2023

Journal Article

Tailored fluorosurfactants through controlled/living radical polymerization for highly stable microfluidic droplet generation

Li, Xiangke, Tang, Shi-Yang, Zhang, Yang, Zhu, Jiayuan, Forgham, Helen, Zhao, Chun-Xia, Zhang, Cheng, Davis, Thomas P. and Qiao, Ruirui (2023). Tailored fluorosurfactants through controlled/living radical polymerization for highly stable microfluidic droplet generation. Angewandte Chemie International Edition, 63 (3) e202315552, e202315552. doi: 10.1002/anie.202315552

Tailored fluorosurfactants through controlled/living radical polymerization for highly stable microfluidic droplet generation

2023

Journal Article

3D-printed liquid metal polymer composites as NIR-responsive 4D printing soft robot

Zhang, Liwen, Huang, Xumin, Cole, Tim, Lu, Hongda, Hang, Jiangyu, Li, Weihua, Tang, Shi-Yang, Boyer, Cyrille, Davis, Thomas P. and Qiao, Ruirui (2023). 3D-printed liquid metal polymer composites as NIR-responsive 4D printing soft robot. Nature Communications, 14 (1) 7815, 1-12. doi: 10.1038/s41467-023-43667-4

3D-printed liquid metal polymer composites as NIR-responsive 4D printing soft robot

2023

Journal Article

Polymer-based synthetic oncolytic virus-like nanoparticles for cancer immunotherapy

Gao, Yuxi, Zhao, Hanqin, Zhao, Jiayu, Ma, Sheng, Si, Xinghui, Liu, Liping, Qiao, Ruirui, Song, Wantong and Chen, Xuesi (2023). Polymer-based synthetic oncolytic virus-like nanoparticles for cancer immunotherapy. Science China Chemistry, 66 (12), 3576-3586. doi: 10.1007/s11426-023-1841-8

Polymer-based synthetic oncolytic virus-like nanoparticles for cancer immunotherapy

2023

Journal Article

Antifouling surface coatings for the next generation of nanomedicine: toward in vivo immune evasion

Forgham, Helen, Liu, Liwei, Davis, Thomas P and Qiao, Ruirui (2023). Antifouling surface coatings for the next generation of nanomedicine: toward in vivo immune evasion. Nanomedicine, 18 (27), 1997-2000. doi: 10.2217/nnm-2023-0316

Antifouling surface coatings for the next generation of nanomedicine: toward in vivo immune evasion

2023

Journal Article

Vector enabled CRISPR gene editing – A revolutionary strategy for targeting the diversity of brain pathologies

Forgham, Helen, Liu, Liwei, Zhu, Jiayuan, Javed, Ibrahim, Cai, Weibo, Qiao, Ruirui and Davis, Thomas P. (2023). Vector enabled CRISPR gene editing – A revolutionary strategy for targeting the diversity of brain pathologies. Coordination Chemistry Reviews, 487 215172. doi: 10.1016/j.ccr.2023.215172

Vector enabled CRISPR gene editing – A revolutionary strategy for targeting the diversity of brain pathologies

2023

Journal Article

Magnetic iron oxide nanoparticles for brain imaging and drug delivery

Qiao, Ruirui, Fu, Changkui, Forgham, Helen, Javed, Ibrahim, Huang, Xumin, Zhu, Jiayuan, Whittaker, Andrew K. and Davis, Thomas P. (2023). Magnetic iron oxide nanoparticles for brain imaging and drug delivery. Advanced Drug Delivery Reviews, 197 114822, 1-31. doi: 10.1016/j.addr.2023.114822

Magnetic iron oxide nanoparticles for brain imaging and drug delivery

2023

Journal Article

Mannan-decorated STING-activating vaccine carrier for spatial coordinative stimulating antigen-specific immune responses

Liu, Liping, Zhao, Jiayu, Huang, Zichao, Xu, Yudi, Chen, Hongyu, Qiao, Ruirui, Song, Wantong, Tang, Zhaohui, Davis, Thomas P. and Chen, Xuesi (2023). Mannan-decorated STING-activating vaccine carrier for spatial coordinative stimulating antigen-specific immune responses. Fundamental Research. doi: 10.1016/j.fmre.2023.03.018

Mannan-decorated STING-activating vaccine carrier for spatial coordinative stimulating antigen-specific immune responses

2023

Journal Article

Dual-ratiometric magnetic resonance tunable nanoprobe with acidic-microenvironment-responsive property to enhance the visualization of early tumor pathological changes

Cao, Rong, Tang, Ning, Zhu, Yi, Chen, An, Li, Yumeng, Ge, Renbin, Li, Yuan, Huang, Zhongyi, Guo, Jiajing, Deng, Jiali, Lu, Hongwei, Lu, Ziwei, Forgham, Helen, Davis, Thomas P., Qiao, Ruirui and Wang, Zhongling (2023). Dual-ratiometric magnetic resonance tunable nanoprobe with acidic-microenvironment-responsive property to enhance the visualization of early tumor pathological changes. Nano Research, 16 (7), 10034-10046. doi: 10.1007/s12274-023-5679-x

Dual-ratiometric magnetic resonance tunable nanoprobe with acidic-microenvironment-responsive property to enhance the visualization of early tumor pathological changes

2023

Journal Article

A reconfigurable and automatic platform for the on-demand production of stretchable conductive composites

Lu, Hongda, Zhang, Qingtian, Huang, Xumin, Cole, Tim, Yun, Guolin, Zhang, Yuxin, Qiao, Ruirui, Li, Weihua and Tang, Shiyang (2023). A reconfigurable and automatic platform for the on-demand production of stretchable conductive composites. Smart Materials and Structures, 32 (4) 045018, 1-10. doi: 10.1088/1361-665x/acc221

A reconfigurable and automatic platform for the on-demand production of stretchable conductive composites

2023

Journal Article

Editorial: Smart materials for tumor-targeted drug/gene delivery

Ding, Guobin, Zhang, Yinlong and Qiao, Ruirui (2023). Editorial: Smart materials for tumor-targeted drug/gene delivery. Frontiers in Materials, 10 1251599. doi: 10.3389/fmats.2023.1251599

Editorial: Smart materials for tumor-targeted drug/gene delivery

2022

Journal Article

Connecting liquid metals with sound

Qiao, Ruirui and Tang, Shi-Yang (2022). Connecting liquid metals with sound. Science (New York, N.Y.), 378 (6620), 594-595. doi: 10.1126/science.ade1813

Connecting liquid metals with sound

Funding

Current funding

  • 2024 - 2027
    Bio-inspired Nanoparticles for Mechano-Regulation of Stem Cell Fate
    ARC Discovery Projects
    Open grant
  • 2023 - 2025
    Seawater-Degradable Plastic Materials
    Queensland-Chinese Academy of Sciences (Q-CAS) Collaborative Science Fund (DES)
    Open grant
  • 2023 - 2027
    Advancing the treatment of brain cancer in children (UNSW led NHMRC Synergy Grant)
    University of New South Wales
    Open grant
  • 2021 - 2026
    Biocompatible Gadolinium-free contrast agents for molecular targeted MR imaging
    NHMRC Investigator Grants
    Open grant

Past funding

  • 2023 - 2024
    Nano-engineered bacteriobot for the treatment of biofilms infection on dental implants
    Australian Dental Research Fund Inc
    Open grant
  • 2022
    Stimuli-Responsive Nanohybrids as Remotely Controlled Carriers
    UQ Foundation Research Excellence Awards
    Open grant
  • 2021 - 2022
    Dr Ruirui Qiao - AQ WRAP
    Advance Queensland Women's Research Assistance Program
    Open grant
  • 2021 - 2022
    UQ AWARE - Dr Ruirui Qiao
    UQ Amplify Women's Academic Research Equity
    Open grant
  • 2019 - 2021
    Development of Superior Sentinel Lymph Node Mapping Procedures using Magnetic Tracers (NHMRC Development Grant administered by University of South Australia)
    University of South Australia
    Open grant
  • 2019 - 2020
    Development of Superior Sentinel Lymph Node Mapping Procedures using Magnetic Tracers (Unversity of South Australia led NHMRC Development Grant)
    University of South Australia
    Open grant

Supervision

Availability

Dr Ruirui Qiao is:
Available for supervision

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Available projects

Supervision history

Current supervision

  • Doctor Philosophy

    Liquid metal/polymer composites with controlled shape shifting properties for biomedical applications

    Principal Advisor

    Other advisors: Professor Thomas Davis

  • Doctor Philosophy

    Intelligent nanomedicine for early diagnosis and treatment of alzheimer's disease

    Principal Advisor

    Other advisors: Professor Thomas Davis

  • Doctor Philosophy

    Smart Nanomedicines as Effective Drug Delivery Systems for the Controlled Administration of Theranostic Agents in Colorectal and Pancreatic Cancers

    Principal Advisor

    Other advisors: Professor Thomas Davis

  • Doctor Philosophy

    Biocompatible Gadolinium-free contrast agents for molecular targeted MR imaging

    Principal Advisor

    Other advisors: Professor Thomas Davis

  • Doctor Philosophy

    Novel 3D Printed Composites for Biomedical Applications

    Principal Advisor

    Other advisors: Professor Thomas Davis

  • Doctor Philosophy

    Activatable nanomaterials for cancer treatment

    Associate Advisor

    Other advisors: Dr Run Zhang

  • Doctor Philosophy

    Investigation of nanoparticle treatments to the brain

    Associate Advisor

    Other advisors: Professor Thomas Davis

  • Doctor Philosophy

    New biomedical imaging tools using nanotechnology

    Associate Advisor

    Other advisors: Dr Cheng Zhang, Professor Thomas Davis

  • Doctor Philosophy

    New Nanomaterials for obviating amyloid formation

    Associate Advisor

    Other advisors: Professor Thomas Davis

  • Doctor Philosophy

    Polymer-siRNA therapeutics for the treatment of brain cancers

    Associate Advisor

    Other advisors: Dr Helen Forgham, Professor Thomas Davis

Completed supervision

Media

Enquiries

Contact Dr Ruirui Qiao directly for media enquiries about:

  • 3D printing
  • Intelligent Materials
  • Soft robots

Need help?

For help with finding experts, story ideas and media enquiries, contact our Media team:

communications@uq.edu.au