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Xujiang Yu

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Articles 16
Citations 302
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Recent Articles
1.
Tang Y, Yu X, He L, Tang M, Yue W, Chen R, et al.
Nat Commun . 2025 Jan; 16(1):860. PMID: 39833161
Reactive oxygen species with evoked immunotherapy holds tremendous promise for cancer treatment but has limitations due to its dependence on exogenous excitation and/or endogenous HO and O. Here we report...
2.
He L, Wang L, Yu X, Tang Y, Jiang Z, Yang G, et al.
Nat Commun . 2024 Sep; 15(1):8240. PMID: 39300124
The poor 5-year survival rate for bladder cancers is associated with the lack of efficient diagnostic and treatment techniques. Despite cystoscopy-assisted photomedicine and external radiation being promising modalities to supplement...
3.
Jiang Z, He L, Yang Z, Qiu H, Chen X, Yu X, et al.
Nat Commun . 2023 Feb; 14(1):827. PMID: 36788239
Distinctive upconversion or downshifting of lanthanide nanocrystals holds promise for biomedical and photonic applications. However, either process requires high-energy lasers at discrete wavelengths for excitation. Here we demonstrate that co-sensitization...
4.
He L, Yu X, Li W
ACS Nano . 2022 Nov; 16(12):19691-19721. PMID: 36378555
The prominence of photodynamic therapy (PDT) in treating superficial skin cancer inspires innovative solutions for its congenitally deficient shadow penetration of the visible-light excitation. X-ray-induced photodynamic therapy (X-PDT) has been...
5.
Liu X, Li M, Yu X, Shen L, Li W
Biosens Bioelectron . 2022 Oct; 219:114804. PMID: 36272345
Suspension arrays are a critical components of next generation multiplexed detection technologies. Current fluorescence suspension arrays are limited by a multiplexed coding ceiling and difficulties with ultrasensitive detection. Raman mode...
6.
Jiang Z, He L, Yu X, Yang Z, Wu W, Wang X, et al.
ACS Nano . 2021 Jun; 15(7):11112-11125. PMID: 34170115
X-ray-induced photodynamic therapy (XPDT) is overwhelmingly superior in treating deep-seated cancers. However, limitations remain, owing to a combination of the poor scintillation performance of the nanoscintillator, low energy transfer efficiency...
7.
Yu X, Liu X, Yang K, Chen X, Li W
ACS Nano . 2021 Jan; 15(2):2038-2067. PMID: 33486944
Innovative multifunctional nanomaterials have attracted tremendous interest in current research by facilitating simultaneous cancer imaging and therapy. Among them, antimony (Sb)- and bismuth (Bi)-based nanoparticles are important species with multifunction...
8.
Zhao S, Yu X, Qian Y, Chen W, Shen J
Theranostics . 2020 Jun; 10(14):6278-6309. PMID: 32483453
Multifunctional magnetic nanoparticles and derivative nanocomposites have aroused great concern for multimode imaging and cancer synergistic therapies in recent years. Among the rest, functional magnetic iron oxide nanoparticles (FeO NPs)...
9.
Kang Y, Yu X, Fan X, Aodenggerile , Zhao S, Tu C, et al.
ACS Nano . 2020 Apr; 14(4):4336-4351. PMID: 32275394
The abundant species of functional nanomaterials have attracted tremendous interests as components to construct multifunctional composites for cancer theranostics. However, their distinct chemical properties substantially require a specific strategy to...
10.
Ahmad F, Wang X, Jiang Z, Yu X, Liu X, Mao R, et al.
ACS Nano . 2019 Aug; 13(9):10419-10433. PMID: 31430127
Radio- and photodynamic therapies are the first line of cancer treatments but suffer from poor light penetration and less radiation accumulation in soft tissues with high radiation toxicity. Therefore, a...