2021
DOI: 10.1002/smll.202006508
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Biodegradable Silica‐Based Nanotheranostics for Precise MRI/NIR‐II Fluorescence Imaging and Self‐Reinforcing Antitumor Therapy

Abstract: cancer diagnosis including higher spatial and temporal resolution than the conventional NIR-I window fluorescence imaging (650-900 nm), mainly benefiting from the simultaneously suppressed tissue auto-fluorescence, photon scattering, and background interference. [3-5] In spite of significant improvements in NIR-II FL for imaging performance, accurate and wealthy information at different tissue penetration depths and scales cannot be effectively provided by a single imaging technology. [6,7] Magnetic resonance … Show more

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Cited by 57 publications
(46 citation statements)
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“…Effective introduction of HCO 3 − in the nanosystems should be one of the ways to improve the Mn‐involved CDT effects. Besides, the Mn 2+ generated in the above process is generally regarded as an MRI reagent, [ 276 ] which makes Mn‐containing CDT nanomaterials potential theranostic platforms.…”
Section: Discussionmentioning
confidence: 99%
See 2 more Smart Citations
“…Effective introduction of HCO 3 − in the nanosystems should be one of the ways to improve the Mn‐involved CDT effects. Besides, the Mn 2+ generated in the above process is generally regarded as an MRI reagent, [ 276 ] which makes Mn‐containing CDT nanomaterials potential theranostic platforms.…”
Section: Discussionmentioning
confidence: 99%
“…[ 205,274 ] Importantly, manganese oxides can provide many advantages for tumor therapy, including optimal performance in near‐neutral conditions and selective production of ROS. [ 205 ] Thus, Mn‐based nanomaterials have been used for CDT, [ 275–279 ] some of which are listed in Table 2. For example, Cao et al.…”
Section: Applications Of Cdt In Anticancer and Antibacterial Therapiesmentioning
confidence: 99%
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“…How to take advantage of the tumor microenvironments characteristics to better image diseases and combine efficient therapeutics is still a challenge. To solve this problem, Zheng et al (2021) have developed the FMSN-MnO 2 -BCQ biodegradable nanoplatforms, with TME-activated tumor-deep delivery performance for accurate imaging and self-reinforcing CDT ( Figure 9Ai ) . In 2020, Chen et al (2020c) have successfully prepared a NIR-light triggered ratio metric fluorescent nanoplatform composed of UCNPs, DOX, and photosensitive block copolymer PEG-b-P(NBA-co-NBANA) ( Figure 9Aii ) .…”
Section: Biological Applicationmentioning
confidence: 99%
“… An illustrated summary of significant CDT, PDT, PTT (A) (i) Schematic illustration of FMSN-MnO 2 -BCQ for dual-mode imaging and self-reinforcing CDT ( Zheng et al, 2021 ). Reproduced with permission from Zheng et al (2021) . (ii) NIR-light-regulated fluorescence imaging and chemotherapy ( Chen et al, 2020a ).…”
Section: Biological Applicationmentioning
confidence: 99%