Construction of nanomaterials with targeting phototherapy properties to inhibit resistant bacteria and biofilm infections Chem. Eng. J., 358 (2019), pp. 74-90 View PDFView articleCrossrefGoogle Scholar 11 B. Wang, H. Liu, B. Zhang, Y. Han, C. Shen, Q. Lin, H. Chen Development of anti...
Researchers have utilized different types of nanomaterials, such as polymeric micelles and MOFs, to regulate autophagy in a timely and accurate manner. Compared with traditional therapies (such as chemotherapy, phototherapy and immunotherapy), the combination of NPs with autophagy modulators exhibits ...
Nano-in-micro (NIM) delivery systems, using both traditional nanomaterials, such as block copolymers, metal nanoparticles (NPs), and some novel nanomaterials, such as up-conversion nanomaterials, metal-organic frameworks, and quantum dots [1,2,3], are widely used to diagnose and treat cancers, ...
Combined photothermotherapy and chemotherapy of oral squamous cell carcinoma guided by multifunctional nanomaterials enhanced photoacoustic tomography. Int J Nanomed. 2021;16:7373–90. CAS Google Scholar Zhang RR, Schroeder AB, Grudzinski JJ, Rosenthal EL, Warram JM, Pinchuk AN, Eliceiri KW, Kuo ...
systems in the field of cancer smart nanoparticle therapy.174And light sources include visible light, UV, or NIR. The method of realizing the critical parameters for the control of structures and functions of nanomaterials are precisely dependent on the light intensity, wavelength, and exposure time...
Most of the PSs used for clinical applications are not cancer-cell specific. One of the solutions to overcome this problem is the use of nanoparticles (NPs) to induce a passive targeting. It is also possible to graft a vector onto the NPs to specifically target membrane receptors overexpressed...
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and general synthetic method of carbon-dominated nanoparticles with superior photothermal properties for highly efficient tumor ablation, and the large-organelle (ER and nucleus)-targeted cancer therapeutic strategy may represent an alternative solution for optimizing the anticancer efficacy of nanomaterials. ...
Acceptor/π-bridge planarization and donor rotation manipulation for designing an NIR-II AIEgen with high photothermal conversion efficiency to enhance cancer phototherapy Chem. Eng. J., 468 (2023), Article 143726 View in ScopusGoogle Scholar [46] C. Shen, M. Xie, L. Pan, et al. Acceptor ...
Exosomes: the next generation of endogenous nanomaterials for advanced drug delivery and therapy Acta Biomater., 86 (2019), pp. 1-14 View PDFView articleView in ScopusGoogle Scholar [11] S.G. Darband, M. Mirza-Aghazadeh-Attari, M. Kaviani, A. Mihanfar, S. Sadighparvar, B. Yousefi,...