Photothermal/Photodynamic Therapy with Immune‐Adjuvant Liposomal Complexes for Effective Gastric Cancer Therapy

2019 ◽  
Vol 36 (6) ◽  
pp. 1900015 ◽  
Author(s):  
Xiangbo Meng ◽  
Ke Wang ◽  
Lin Lv ◽  
Ye Zhao ◽  
Chen Sun ◽  
...  
2021 ◽  
Vol 539 ◽  
pp. 1-7
Author(s):  
Mamoru Tanaka ◽  
Makiko Sasaki ◽  
Taketo Suzuki ◽  
Hirotada Nishie ◽  
Hiromi Kataoka

2021 ◽  
Vol 9 (12) ◽  
pp. 2816-2830
Author(s):  
Ning Ding ◽  
Shengjun Xu ◽  
Sheng Zheng ◽  
Qianwei Ye ◽  
Li Xu ◽  
...  

Motivated by the overexpression of GLUT1 in gastric cancer, a targeted SN38 prodrug delivery nanoplatform was constructed and exhibited potent antitumor efficiency, which brought a new insight to the design of nanomedicine against cancer.


Author(s):  
Jiaxin Shen ◽  
Dandan Chen ◽  
Ye Liu ◽  
Guoyang Gao ◽  
Zhihe Liu ◽  
...  

Photodynamic therapy (PDT) is a promising method for cancer therapy and also may initiate unexpected damages to normal cells and tissues. Herein, we developed a near-infrared (NIR) light-activatable nanophotosensitizer, which...


2021 ◽  
Vol Publish Ahead of Print ◽  
Author(s):  
Fanming Kong ◽  
Yang Yao ◽  
Renfen Deng ◽  
Xiaojiang Li ◽  
Yingjie Jia

Nanomaterials ◽  
2018 ◽  
Vol 9 (1) ◽  
pp. 9 ◽  
Author(s):  
Artiom Skripka ◽  
Dominyka Dapkute ◽  
Jurga Valanciunaite ◽  
Vitalijus Karabanovas ◽  
Ricardas Rotomskis

Nanomaterials have permeated various fields of scientific research, including that of biomedicine, as alternatives for disease diagnosis and therapy. Among different structures, quantum dots (QDs) have distinctive physico-chemical properties sought after in cancer research and eradication. Within the context of cancer therapy, QDs serve the role of transporters and energy donors to photodynamic therapy (PDT) drugs, extending the applicability and efficiency of classic PDT. In contrast to conventional PDT agents, QDs’ surface can be designed to promote cellular targeting and internalization, while their spectral properties enable better light harvesting and deep-tissue use. Here, we investigate the possibility of complex formation between different amphiphilic coating bearing QDs and photosensitizer chlorin e6 (Ce6). We show that complex formation dynamics are dependent on the type of coating—phospholipids or amphiphilic polymers—as well as on the surface charge of QDs. Förster’s resonant energy transfer occurred in every complex studied, confirming the possibility of indirect Ce6 excitation. Nonetheless, in vitro PDT activity was restricted only to negative charge bearing QD-Ce6 complexes, correlating with better accumulation in cancer cells. Overall, these findings help to better design such and similar complexes, as gained insights can be straightforwardly translated to other types of nanostructures—expanding the palette of possible therapeutic agents for cancer therapy.


Author(s):  
Dong-Hui Wang ◽  
Li-Jian Chen ◽  
Xu Zhao ◽  
Xiu-Ping Yan

Phototheranostics has attracted great interest in cancer therapy. Small-molecule self-reporting photosensitizers, one kind of idea agents in phototheranostics, enable simultaneous photodynamic therapy (PDT) and feedback of therapeutic efficacy. However, previous...


Author(s):  
Huiping Dang ◽  
Quan Cheng ◽  
Youliang Tian ◽  
Changchang Teng ◽  
Kai Xie ◽  
...  

To achieve accurate fluorescence imaging-guided cancer therapy, intelligent systems with specific responsiveness to the tumor microenvironment need to be designed. Here, we have achieved both enhanced NIR fluorescence and photodynamic...


Author(s):  
Youwei Zhang ◽  
Qing Pei ◽  
Ying Yue ◽  
Zhigang Xie

Chemotherapy is the major strategy for cancer therapy, but its limited therapeutic efficiency and serious toxicity to normal tissues greatly restrict its clinical performance. Herein, we develop carrier-free self-activated prodrug...


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