Page 117 - 《精细化工》2023年第11期
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第 11 期                    胡   伟,等:  比率型过氧化氢荧光探针的合成及成像应用                                 ·2429·


            脑卒中诱导细胞氧化应激过程这一原理,探针                                   regions of AD mouse brain[J]. Chemical Science, 2020, 11(8):
            MQH 2 O 2 在脑卒中的早期精准诊断领域具有广阔的                           2215-2224.
                                                               [13]  LIU T (刘涛),  CHENG Z L  (程忠玲), WU X N (吴效楠),  et al.
            应用前景。                                                  Synthesis and application of  the ratiometric fluorescent sensor for
                                                                   cysteine[J]. Fine Chemicals (精细化工), 2014, 31(7): 817-819.
            参考文献:                                              [14]  YU H H, CHEN F, HE Y, et al. Theoretical modeling and analysis on
                                                                   the absorption cross section of the two-photon excitation in Rb[J].
            [1]   AN  B S, PANG S D, ZHANG  Y  R,  et al. A novel near-infrared   Optics Express, 2018, 26(13): 17254-17263.
                 fluorescent probe for  visualization of intracellular hydrogen   [15]  OGAWA Y,  OKINAKA Y,  TAKEUCHI Y,  et al. Intravenous bone
                 peroxide[J]. Frontiers in Chemistry, 2022, 10: 1025723.     marrow mononuclear cells transplantation improves the effect of
            [2]   SERRAMITO G R, SANTÍN A J M, ROMÁN P P, et al. Cerebral   training in chronic stroke mice[J]. Frontiers  in Medicine, 2020, 7:
                 infarction after pituitary apoplexy: Description of a case and review   535902.
                 of the literature[J]. Neurocirugia, 2016, 27(6): 310-314.   [16]  TANG  X Z, KREUK  L S M,  CHO  C,  et al. Bronchus-associated
            [3]   KIM J Y, BARUA S, JEONG Y J, et al. Adiponectin: The potential   macrophages efficiently capture and present soluble inhaled antigens
                 regulator and therapeutic target of obesity and Alzheimer's disease[J].   and are capable of local Th2 cell activation[J]. Elife, 2022, 11:
                 International Journal of Molecular Sciences, 2020, 21(17): 6419.   e63296.
            [4]   KUMARI S, SINGH R, CHANDRA S,  et al. Association of   [17]  LIANG T Y, ZHANG D L, HU W, et al. A dual lock-and-key two
                 paraoxonase-2 (C1053G) gene polymorphism with the expression of   photon fluorescence probe in response to hydrogen  peroxide and
                 paraoxonase-2 gene in patients of ischemic stroke-A pilot study in   viscosity: Application in cellular imaging and inflammation
                 Indian population[J]. Neurology India, 2022, 70(4): 1575.   therapy[J]. Talanta, 2021, 235: 122719.
            [5]   CHEN L J, CHEN M J, ZHOU Y P, et al. NIR photosensitizer for   [18]  WANG K N, MA W, XU Y C, et al. Design of a novel mitochondria
                 two-photon fluorescent imaging and photodynamic therapy of   targetable turn-on fluorescence probe for hydrogen peroxide and its
                 tumor[J]. Frontiers in Chemistry, 2021, 9: 629062.   two-photon bioimaging applications[J]. Chinese Chemical Letters,
            [6]   CHAI L, LIANG  T  Y,  AN Q,  et al. Near-infrared in  and out:   2020, 31(12): 3149-3152.
                 Observation of autophagy during stroke  via  a lysosome-targeting   [19]  REN M G, DONG D J, XU Q Y, et al. A biotin-guided two-photon
                 two-photon viscosity-dependent probe[J]. Analytical Chemistry,   fluorescent probe for detection of hydrogen peroxide in cancer cells
                 2022, 94(15): 5797-5804.                          ferroptosis process[J]. Talanta, 2021, 234: 122684.
            [7]   LU Q, WU C J, LIU Z Q, et al. Fluorescent AIE-active materials for   [20]  WU Z,  LIU M  M, LIU Z C,  et al. Real-time imaging and
                 two-photon bioimaging applications[J]. Frontiers in Chemistry, 2020,   simultaneous quantification of mitochondrial H 2O 2 and ATP in
                 8: 617463.                                        neurons with a single two-photon fluorescence-lifetime-based probe[J].
            [8]   DROBIZHEV M, MOLINA R S, HUGHES T E. Characterizing the   Journal of the American Chemical Society, 2020, 142(16): 7532-
                 two-photon absorption  properties of  fluorescent molecules in the   7541.
                 680~1300 nm spectral range[J]. Bio-Protocol, 2020, 10(2): e3498.   [21]  LI H D, YAO  Q  C, FAN J  L,  et al. A two-photon NIR-to-NIR
            [9]   ZHONG H M, WU Y X, YU S R, et al. Two-photon CQDs-based   fluorescent probe for imaging hydrogen peroxide in living cells[J].
                 dual-mode nanoprobe for fluorescence imaging and magnetic   Biosensors and Bioelectronics, 2017, 94: 536-543.
                 resonance imaging of intracellular wide pH[J]. Analytical Chemistry,   [22]  ZHAI B P, HU W, HAO  R L, et al.  Development of a ratiometric
                 2021, 93(14): 5691-5699.                          two-photon fluorescent probe for imaging of hydrogen  peroxide in
            [10]  WANG X M, SUN Q, SONG X J,  et al. Development of a   ischemic brain injury[J]. Analyst, 2019, 144(20): 5965-5970.
                 ratiometric nitric oxide probe with baseline resolved emissions by an   [23]  KIM H R, SARKAR S, AHN K H. A two-photon ratiometric sensing
                 ESIPT and rhodol ring opened-closed integrated two-photon   platform based on solid-state luminescent benzocoumarin: Application
                 platform[J]. RSC Advances, 2022, 12(5): 2721-2728.   to prolonged bioimaging of hydrogen peroxide[J]. Chemistry-An
            [11]  SHI L (石磊), HUANG  L (黄玲), GONG  S Z  (龚盛昭),  et al. A   Asian Journal, 2022, 17(4): e202101317.
                 ratiometric fluorescent probe for hypochlorite ion recognition and its   [24]  ZHOU L Y, DING H Y, ZHAO W, et al. A mitochondria targetable
                 application [J]. Fine Chemicals (精细化工), 2019, 36(7): 1316-1320.   two-photon excited near-infrared fluorescent probe for imaging of
            [12]  GE  L H, LIU Z C,  TIAN Y. A  novel two-photon ratiometric   H 2O 2 in live cells and tissues[J]. Spectrochimica Acta Part A:
                 fluorescent probe for imaging and sensing of BACE1 in different     Molecular and Biomolecular Spectroscopy, 2019, 206: 529-534.
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