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| 1 | Development of nitrogen and sulfur-doped carbon dots for cellular imaging显示文摘Heteroatom-doped carbon dots(CDs) have attracted extensive interest because of their improved electronic and fluorescence properties with heteroatom doping. In this study, a new synthetic method for nitrogen(N) and sulfur(S)-doped CDs was developed via a hydrothermal method using methionine and citric acid as raw materials. The as-prepared CDs exhibit excellent optical properties and good biocompatibility. The spherical N,S-doped CDs have an average diameter of 5 nm. They consist of C, O, N and S, and take on excellent water solubility due to the hydroxyl and carboxyl, amino groups on the surface.The CDs have a photoluminescence quantum yield of 13.8% using quinine sulfate as a reference; the average fluorescence lifetime of the CDs was 3.67 ns. The CDs solution present good photoluminescence properties, and the maximum excitation wavelength and emission wavelength locate at 330 nm and405 nm, respectively. In addition, their fluorescence intensity almost does not change under the conditions of acid, alkali, and high salt, which indicated their anti-photobleaching property and good light stability. Based on the good biocompatibility and strong fluorescence emission of the CDs, they can be used as fluorescent imaging reagents. | Hui Liu Yue Zhang Chengzhi Huang | 2019 | Journal of Pharmaceutical Analysis2019,9,2: | 6 |
| 2 | Highly stable organic fluorescent nanorods for living- cell imaging显示文摘Metal-free, organic-dye-based fluorescent nanorods were fabricated through a simple solvent-exchange procedure. The as-prepared nanorods exhibit low toxicity to living cells and excellent photostability. Furthermore, they are stable in solutions of various pHs and high ionic strength and in solutions with interfering metal ions. Compared with the free DPP-Br molecules in THF, these nanorods exhibit larger Stokes shift, broader absorption spectra, and greatly improved photostability. We successfully demonstrated the application of the nanorods, including their aforementioned beneficial characteristics, as a good fluorescence probe for bio-imaging. | Minhuan Lan Jinfeng Zhang Xiaoyue Zhu Pengfei Wang Xianfeng Chen Chun-Sing Lee Wenjun Zhang | 2015 | Nano Research2015,8,7: | 2 |
| 3 | Recent advances in molecular fluorescent probes for organic phosphate biomolecules recognition显示文摘Organic phosphate biomolecules(OPBs) are indispensable components of eukaryotes and prokaryotes,such as acting as the fundamental components of cell membranes and important substrates for nucleic acids. They play pivotal roles in various biological processes, such as energy conservation, metabolism,and signal modulation. Due to the difficulty of detection caused by variety OPBs, investigation of their respective physiological effects in organisms has been restrained by the lack of efficient tools. Many small fluorescent probes have been employed for selective detection and monitoring of OPBs in vitro or in vivo due to the advantages of tailored properties, biodegradability and in situ high temporal and spatial resolution imaging. In this review, we summarize the recent advances in fluorescent probes for OPBs,such as nucleotides, NAD(P)H, FAD/FMN and PS. Importantly, we describe their identification mechanisms in detail and discuss the general strategies for these OPBs probe designs, which provide new insights and ideas for the future probe designs. | Wei Li Xiangyang Gong Xiaopeng Fan Shulu Yin Dongdong Su Xiaobing Zhang Lin Yuan | 2019 | Chinese Chemical Letters2019,30,10: | 2 |
| 4 | Novel strategy of constructing fluorescent probe for MAO-B via cascade reaction and its application in imaging MAO-B in human astrocyte显示文摘To detect monoamine oxidase B(MAO-B), the level of which is one of the most important indicators of neurodegenerative diseases such as Parkinson's disease, a new type of cascade reaction based on the formation of coumarin was applied in this research. After the reaction with MAO-B, the protecting group of hydroxyl group in probes(DEAN-MA and DEAB-MA) was removed, and the fluorescence intensity significantly increased(l_(em) 456 nm) as the structure of coumarin was formed subsequently. The probes showed excellent sensitivity and selectivity to MAO-B. The detection limit of DEAN-MA and DEAB-MA were 0.6ng/mL and 0.2 ng/mL, respectively. We succeeded in detecting MAO-B in vitro and imaging it in human astrocyte(U87). | Huihuan Qin Lingling Li Kun Li Xiaoqi Yu | 2019 | Chinese Chemical Letters2019,30,1: | 2 |
| 5 | Sensing carboxylesterase 1 in living systems by a practical and isoformspecific fluorescent probe显示文摘Carboxylesterase 1(CES1), one of the most abundant serine hydrolases in mammals, has drawn much attentions in recent years, owing to this enzyme involves in many physiological processes via hydrolysis of both endogenous esters and xenobiotic esters. Herein, to real-time monitor the activities of CES1 in various biological systems, a practical and iso form-specific fluorescent probe was developed on the basis of the substrate preference of CES1, as well as the structural and optical properties of BODIPY dyes. After screening of a panel of BODIPY ester derivatives, probe 1 displayed the best combination of specificity,sensitivity, enzymatic kinetics and applicability for monitoring CES1 activities in real samples. This probe was successfully used to detect CESl activities in several biological systems including tissue preparations,living cells, tissue slices and zebrafish. Furthermore, the biomedical applications of probe 1 for screening of CES1 inhibitors were also demonstrated using tissue preparations or living cells as enzyme sources. In summary, a practical and broadly applicable tool for real-time monitoring CES1 in biological systems was developed and well-characterized, which held great promise for further investigations on CES1-associated drug discovery, clinical practice and fundamental research. | Lele Ding Zhenhao Tian Jie Hou Tongyi Dou Qiang Jin Dandan Wang Liwei Zou Yadi Zhu Yunqing Song Jingnan Cui Guangbo Ge | 2019 | Chinese Chemical Letters2019,30,3: | 2 |
| 6 | A carbazole-hemicyanine dye based ratiometric fluorescent probe for selective detection of bisulfite(HSO_3^-)in cells and C. elegans显示文摘Bisulfite(HSO_3) is an important sulfur dioxide(SO_2) derivative, which plays a major role in many physiological processes and is also closely associated with a variety of diseases. Thus the development of highly selective and sensitive fluorescent probes is essential to detect HSO_3 in living cells. In this work,we report the synthesis and analysis of a ratiometric fluorescent probe for selective detection of HSO_3 based on the 1,4-nucleophilic addition reaction with the carbazole as an electron donor(D) and aldehyde group as an electron acceptor(A). The addition of HSO_3 and other ions to our probe can be observed by UV vis and fluorescence spectrometry. Our investigation proved that the probe is highly selective and sensitive for HSO_3 and ratiometric changes. Moreover, the probe has good cell permeability and was successfully applied to the detection of exogenous HSO_3 in Hela cells and C. elegans. | Keying Bi Rui Tan Ruiting Hao Lanxi Miao Yanqi He Xianghua Wu Junfeng Zhang Rui Xu | 2019 | Chinese Chemical Letters2019,30,3: | 1 |
| 7 | Sulfonate-based fluorescent probes for imaging hydrogen peroxide in living cells显示文摘Based on the mechanism of H2O2-mediated hydrolysis of sulfonates, two fluorescein disulfonates compounds (FS-1 and FS-2) were designed and synthesized as the highly selective and sensitive fluorescent probes for imaging H2O2 in living cells. The probes were detected with elemental analysis, IR, 1H NMR and 13C NMR. Upon reaction with H2O2, the probes exhibit strong fluorescence responses and high selectivity for H2O2 over other reactive oxygen species and some biological compounds. Furthermore, the sulfonate-based probes, as novel fluorescent reagents, are cell-permeable and can detect micromolar changes in H2O2 concentrations in living cells by using confocal microscopy. | XU KeHua LIU Fen WANG HuiXia WANG ShanShan WANG LuLu TANG Bo | 2009 | Science China Chemistry2009,52,6: | 1 |
| 8 | In vivo and in situ real-time fluorescence imaging of peripheral nerves in the NIR-II window显示文摘The peripheral nervous system(PNS)is essential for performing and maintaining various motor and sensory functions.Abnormalities can lead to a series of peripheral neurological conditions,such as paraesthesia,pain,or spasms,which are debilitating and lowering the quality of life.Thecurrent guidelines for diagnosis rely predominantly on clinical symptoms resulting from PNS dysfunction,which occur already at an advancedstage.There are currently no effective methods that visually reflect the extent of peripheral neuropathy.In our study,we present a novel in vivoand in situ real-time imaging of peripheral nerves based on the second near-infrared window(NIR-II)fluoresce nee.In NIR-II system,lead sulfidequa ntum dots(PbS Qds)with NIR-II fluoresce nee specifically bound to motor neuro rvspecific protein agrin,acting as image con trast.In micemodel,peripheral nerves were visible as soon as after 2 h post injection.We provide evidenee for the efficacy of this approach,which allows todirectly dem on strate peripheral nerves,their structure,and pote ntial damagesites and degree.Furthermore,our products were of goodbiocompatibility,while the n eural fluoresce nee signal was solid,bright and stable for 4 h in vivo.Thus,overall,our results suggest that NIR-II isan effective new method for direct imaging of peripheral nerves in vivo,opening new horizons on early,improved and more precise,targeteddiag no sis.A resulti ng more rapid installatio n of perso nalized therapy facilitates a better prognosis of clinical peripheral neuropathy. | Zhujun Feng Yimeng Yang Jian Zhang Kan Wang Yunxia Li Heng Xu Zhen Wang Ewelina Biskup Shixian Dong Xing Yang Yuefeng Hao Jun Chen Yan Wo | 2019 | Nano Research2019,12,12: | 1 |
| 9 | Hierarchically self-assembled fluorescent nanoparticles for near-infrared lysosome-targeted imaging显示文摘Manipulating emitting properties of fluorescent dyes plays a critical role in various fields such as light emitting materials, living cell imaging, and phototheranostics (1)In particular, supramolecular strategies, such as complexation-induced quenching, aggregation-induced emission, have attracted ever-growing attention(2)Near-infrared (NIR) probes have been demonstrated to possess. | Dong-Sheng Guo | 2018 | Chinese Chemical Letters2018,29,12: | 0 |
| 10 | A lysosomal targeting fluorescent probe and its zinc imaging in SH-SY5Y human neuroblastoma cells显示文摘Zinc plays a significant role in oxidative balance and central nervous systems. Herein, we reported a highly sensitive fluorescent probe DR, bearing a morpholine group and a BPEN ligand in the naphthalimide fluorophore. Upon Zn2+binding, DR exhibited remarkable fluorescence enhancement, and showed high sensitivity to Zn2+with the association constant of 4.9 ? 108 L/mol, and the detection limit of15 nmol/L. Confocal imaging experiments indicated that DR was able to localize to lysosomes in MCF-7 cells. Moreover, upon H2 O2 stimulation in SH-SY5 Y cells, endogenous release of Zn2+was observed. | Houna Duan Yu Ding Chusen Huang Weiping Zhu Rui Wang Yufang Xu | 2019 | Chinese Chemical Letters2019,30,1: | 0 |
| 11 | Blood compatible heteratom-doped carbon dots for bio-imaging of human umbilical vein endothelial cells显示文摘Carbon dots have unique advantages in biological applications owing to their excellent optical prope rties.However,the biosafety evaluation of carbon dots has limitations owing to cytotoxicity in vitro,and the re is little pre-safety evaluation before in vivo and clinical applications.Whether the carbon dots are or not suitable for applications in vivo,evaluation analysis can be made based on hemolysis and changes in erythrocyte morphology.In this work,a green fluorescent N,S-doped carbon dots(N,S-CDs)were obtained by hydrothermal method,tobias acid,and m-phenylenediamine as precursors.N,S-CDs not only possessed excellent dispersibility,uniform particle size,high quantum yield(37.2%)and stable photoluminescence property but also retain their photostability and stro ng fluorescence intensity in the acid/alkaline solutions,different ionic strengths(NaCl)and under 365 nm UV illumination.Moreove r,the N,S-CDs displayed low cytotoxicity and high cellular uptake efficiency in human umbilical vein endothelial cells(HUVEC)and excellent blood compatibility to the erythrocyte.It is foreseeable that N,S-CDs could be further studied as a promising biological imaging agent in vivo. | Jian Zhong Xinmian Chen Miaoran Zhang Chaoxin Xiao Lulu Cai Waleed Ali Khan Kaixuan Yu Jiayi Cui Lin He | 2020 | Chinese Chemical Letters2020,31,3: | 0 |
| 12 | A New Generation of Semiconductor Quantum Dots for Molecular and Cellular Imaging显示文摘Semiconductor quantum dots, tiny light-emitting particles on the nanometer scale, are emerging as a new class of fluorescent labels for a broad range of molecular and | Andrew M.Smith Mary Wen | 2009 | 生物物理学报2009,25,S1: | 0 |