Liposomes have been well established as an effective drug delivery system, due to simplicity of their preparation and unique characteristics. However conventional liposomes are unsuitable for the on-demand content release, which limits their therapeutic utility. Here we report X-ray-triggerable liposomes incorporating gold nanoparticles and photosensitizer verteporfin. The 6 MeV X-ray radiation induces verteporfin to produce singlet oxygen, which destabilises the liposomal membrane and causes the release of cargos from the liposomal cavity. This triggering strategy is demonstrated by the efficiency of gene silencing in vitro and increased effectiveness of chemotherapy in vivo. Our work indicates the feasibility of a combinatorial treatment ...
Stimulus-responsive liposomes (L) for triggering drug release to the target site are particularly us...
Amphiphilic gold nanoparticles (amph-NPs), composed of gold cores surrounded by an amphiphilic mixed...
Ying Liu,1,* Man He,1,* Mengmeng Niu,1 Yiqing Zhao,1 Yuanzhang Zhu,1 Zhenhua Li,2 Nianping Feng1 1D...
In this study, we constructed multifunctional liposomes with preferentially mitochondria-targeted fe...
Targeted delivery of drugs or other therapeutic agents through internal or external triggers has bee...
Zofia Kautzka, Sandhya Clement, Ewa M Goldys, Wei Deng Centre of Excellence for Nanoscale BioPhoton...
We developed light-triggered liposomes incorporating 3-5 nm hydrophobic gold nanoparticles and Rose ...
© 2023 The Authors. Published by American Chemical Society. This is an open access article under the...
AbstractThe use of liposomes for the delivery of therapeutic agents to tumor sites took a major step...
Photodynamic therapy is a well-established and clinically approved treatment for several types of ca...
INTRODUCTION: The depth limitation of conventional photodynamic therapy (PDT) with visible electroma...
AbstractSuccess of nanoparticle-mediated drug delivery is subject to development of optimal drug rel...
Encapsulation of small molecule drugs in long-circulating lipid nanoparticles (LNPs) can reduce toxi...
Sandhya Clement,1,2,* Wenjie Chen,1,* Wei Deng,1,2 Ewa M Goldys1,2 1Australian Research Council Cen...
Liposomes are an effective gene and/or drug delivery system, widely used in biomedical applications ...
Stimulus-responsive liposomes (L) for triggering drug release to the target site are particularly us...
Amphiphilic gold nanoparticles (amph-NPs), composed of gold cores surrounded by an amphiphilic mixed...
Ying Liu,1,* Man He,1,* Mengmeng Niu,1 Yiqing Zhao,1 Yuanzhang Zhu,1 Zhenhua Li,2 Nianping Feng1 1D...
In this study, we constructed multifunctional liposomes with preferentially mitochondria-targeted fe...
Targeted delivery of drugs or other therapeutic agents through internal or external triggers has bee...
Zofia Kautzka, Sandhya Clement, Ewa M Goldys, Wei Deng Centre of Excellence for Nanoscale BioPhoton...
We developed light-triggered liposomes incorporating 3-5 nm hydrophobic gold nanoparticles and Rose ...
© 2023 The Authors. Published by American Chemical Society. This is an open access article under the...
AbstractThe use of liposomes for the delivery of therapeutic agents to tumor sites took a major step...
Photodynamic therapy is a well-established and clinically approved treatment for several types of ca...
INTRODUCTION: The depth limitation of conventional photodynamic therapy (PDT) with visible electroma...
AbstractSuccess of nanoparticle-mediated drug delivery is subject to development of optimal drug rel...
Encapsulation of small molecule drugs in long-circulating lipid nanoparticles (LNPs) can reduce toxi...
Sandhya Clement,1,2,* Wenjie Chen,1,* Wei Deng,1,2 Ewa M Goldys1,2 1Australian Research Council Cen...
Liposomes are an effective gene and/or drug delivery system, widely used in biomedical applications ...
Stimulus-responsive liposomes (L) for triggering drug release to the target site are particularly us...
Amphiphilic gold nanoparticles (amph-NPs), composed of gold cores surrounded by an amphiphilic mixed...
Ying Liu,1,* Man He,1,* Mengmeng Niu,1 Yiqing Zhao,1 Yuanzhang Zhu,1 Zhenhua Li,2 Nianping Feng1 1D...