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2021 ◽  
Vol 19 (1) ◽  
Author(s):  
Haixian Zhang ◽  
Feifei Song ◽  
Caihong Dong ◽  
Luodan Yu ◽  
Cai Chang ◽  
...  

Abstract Background In comparison with traditional therapeutics, it is highly preferable to develop a combinatorial therapeutic modality for nanomedicine and photothermal hyperthermia to achieve safe, efficient, and localized delivery of chemotherapeutic drugs into tumor tissues and exert tumor-activated nanotherapy. Biocompatible organic–inorganic hybrid hollow mesoporous organosilica nanoparticles (HMONs) have shown high performance in molecular imaging and drug delivery as compared to other inorganic nanosystems. Disulfiram (DSF), an alcohol-abuse drug, can act as a chemotherapeutic agent according to its recently reported effectiveness for cancer chemotherapy, whose activity strongly depends on copper ions. Results In this work, a therapeutic construction with high biosafety and efficiency was proposed and developed for synergistic tumor-activated and photothermal-augmented chemotherapy in breast tumor eradication both in vitro and in vivo. The proposed strategy is based on the employment of HMONs to integrate ultrasmall photothermal CuS particles onto the surface of the organosilica and the molecular drug DSF inside the mesopores and hollow interior. The ultrasmall CuS acted as both photothermal agent under near-infrared (NIR) irradiation for photonic tumor hyperthermia and Cu2+ self-supplier in an acidic tumor microenvironment to activate the nontoxic DSF drug into a highly toxic diethyldithiocarbamate (DTC)-copper complex for enhanced DSF chemotherapy, which effectively achieved a remarkable synergistic in-situ anticancer outcome with minimal side effects. Conclusion This work provides a representative paradigm on the engineering of combinatorial therapeutic nanomedicine with both exogenous response for photonic tumor ablation and endogenous tumor microenvironment-responsive in-situ toxicity activation of a molecular drug (DSF) for augmented tumor chemotherapy. Graphical abstract



2021 ◽  
Author(s):  
Yi Liu ◽  
Ying Liu ◽  
Yusuke Yamauchi ◽  
Zeid A. Alothman ◽  
Yusuf Valentino Kaneti ◽  
...  


2020 ◽  
Vol 398 ◽  
pp. 125571 ◽  
Author(s):  
Kezhu Xu ◽  
Jin Wu ◽  
Qunling Fang ◽  
Linfeng Bai ◽  
Jinyu Duan ◽  
...  


2020 ◽  
Vol 2 (10) ◽  
pp. 4841-4852
Author(s):  
Varsha Thambi ◽  
Abhay Raj Singh Gautam ◽  
Saumyakanti Khatua

We report the synthesis and enhanced catalytic activity of broken-shell nano-peanuts with variable hole size.



Molecules ◽  
2019 ◽  
Vol 24 (5) ◽  
pp. 834 ◽  
Author(s):  
Chenyu Wang ◽  
Jun Wang ◽  
Liangdan Zeng ◽  
Ziwen Qiao ◽  
Xiaochen Liu ◽  
...  

Fiber structures with nanoscale diameters offer many fascinating features, such as excellent mechanical properties and high specific surface areas, making them attractive for many applications. Among a variety of technologies for preparing nanofibers, electrospinning is rapidly evolving into a simple process, which is capable of forming diverse morphologies due to its flexibility, functionality, and simplicity. In such review, more emphasis is put on the construction of polymer nanofiber structures and their potential applications. Other issues of electrospinning device, mechanism, and prospects, are also discussed. Specifically, by carefully regulating the operating condition, modifying needle device, optimizing properties of the polymer solutions, some unique structures of core–shell, side-by-side, multilayer, hollow interior, and high porosity can be obtained. Taken together, these well-organized polymer nanofibers can be of great interest in biomedicine, nutrition, bioengineering, pharmaceutics, and healthcare applications.



Nanoscale ◽  
2019 ◽  
Vol 11 (20) ◽  
pp. 10097-10105 ◽  
Author(s):  
Pengcheng Du ◽  
Wenli Wei ◽  
Yuman Dong ◽  
Dong Liu ◽  
Qi Wang ◽  
...  

PPy-coated MnO2 nanotubes were fabricated as a highly efficient sulfur host. Hollow interior of the MnO2 nanotubes and the polypyrrole outer layer can effectively improve the specific capacity and maintain an extremely stable cycling performance.



AIP Advances ◽  
2017 ◽  
Vol 7 (2) ◽  
pp. 025012 ◽  
Author(s):  
Tingting Zhu ◽  
Ping Ning ◽  
Lihong Tang ◽  
Kai Li ◽  
Shuangyou Bao ◽  
...  
Keyword(s):  


Author(s):  
Xingyuan Zhang ◽  
Jian-Gan Wang ◽  
Huanyan Liu ◽  
Hongzhen Liu ◽  
Bingqing Wei

Three-dimensional V2O5 hollow structures have been prepared through a simple synthesis strategy combining solvothermal treatment and a subsequent thermal annealing. The V2O5 materials are composed of microspheres 2–3 μm in diameter and with a distinct hollow interior. The as-synthesized V2O5 hollow microspheres, when evaluated as a cathode material for lithium-ion batteries, can deliver a specific capacity as high as 273 mAh·g−1 at 0.2 C. Benefiting from the hollow structures that afford fast electrolyte transport and volume accommodation, the V2O5 cathode also exhibits a superior rate capability and excellent cycling stability. The good Li-ion storage performance demonstrates the great potential of this unique V2O5 hollow material as a high-performance cathode for lithium-ion batteries.



2017 ◽  
Vol 5 (39) ◽  
pp. 20757-20764 ◽  
Author(s):  
Jian Zhang ◽  
Shan Bai ◽  
Zhuwen Chen ◽  
Yanding Wang ◽  
Lei Dong ◽  
...  

One-pot synthesis of core–shell zeolite Y with 3D interconnected mesochannels with enhanced crystallinity and catalytic activity by using amino acids.



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