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11篇 您的检索式:作者名="Lintao Cai"
    题名 作者 年代 出处 被引量
1Indocyanine Green Nanoparticles for Theranostic Applications显示文摘Theranostics is a concept that integrated imaging and therapy. As an emerging field, it embraces multiple techniques to arrive at an individualized treatment purpose. Indocyanine green(ICG) is a near infrared dye that has been approved by Food and Drug Administration(FDA) in USA for the use in indicator-dilution studies in humans. ICG nanoparticles(NPs) have attracted much attention for its potential applications in cancer theranostics. This review focuses on the preparation, application of ICG NPs for in vivo imaging(fluorescent imaging and photoacoustic imaging) and therapeutics(photothermal therapy, photodynamic therapy and photoacoustic therapy), and future directions based on recent developments in these areas. It is hoped that this review might provide new impetus to understand ICG NPs for cancer theranostics.Zonghai Sheng Dehong Hu Miaomiao Xue Meng He Ping Gong Lintao Cai 2013Nano-Micro Letters2013,5,3:11
2High-performance all-polymer solar cells enabled by a novel low bandgap non-fully conjugated polymer acceptor显示文摘The non-fully conjugated polymer as a new class of acceptor materials has shown some advantages over its small molecular counterpart when used in photoactive layers for all-polymer solar cells(all-PSCs),despite a low power conversion efficiency(PCE)caused by its narrow absorption spectra.Herein,a novel non-fully conjugated polymer acceptor PFY-2TS with a low bandgap of~1.40 eV was developed,via polymerizing a largeπ-fused small molecule acceptor(SMA)building block(namely YBO)with a non-conjugated thioalkyl linkage.Compared with its precursor YBO,PFY-2TS retains a similar low bandgap but a higher LUMO level.Moreover,compared with the structural analog of YBO-based fully conjugated polymer acceptor PFY-DTC,PFY-2TS shows a similar absorption spectrum and electron mobility,but significantly different molecular crystallinity and aggregation properties,which results in optimal blend morphology with a polymer donor PBDB-T and physical processes of the device in all-PSCs.As a result,PFY-2TS-based all-PSCs achieved a PCE of 12.31%with a small energy loss of 0.56 eV enabled by the reduced non-radiative energy loss(0.24 eV),which is better than that of 11.08%for the PFY-DTC-based ones.Our work clearly demonstrated that non-fully conjugated polymers as a new class of acceptor materials are very promising for the development of high-performance all-PSCs.Qunping Fan Ruijie Ma Tao Liu Jianwei Yu Yiqun Xiao Wenyan Su Guilong Cai Yuxiang Li Wenhong Peng Tao Guo Zhenghui Luo Huiliang Sun Lintao Hou Weiguo Zhu Xinhui Lu Feng Gao Ellen Moons Donghong Yu He Yan Ergang Wang 2021Science China Chemistry2021,64,8:3
3Blade-coated organic solar cells from non-halogenated solvent offer 17%efficiency显示文摘Organic solar cell(OSC)has attracted great interests due to its potential applications[1-9].To date,18%power conversion efficiency(PCE)has been achieved in single-junction OSC[10−13],indicating the feasibility of commercialization.This photovoltaic technology currently faces the performance gap between laboratory cells and large-area modules.Wei Guan Dong Yuan Juntao Wu Xiaobo Zhou Hong Zhao Fei Guo Lianjie Zhang Ke Zhou Wei Ma Wanzhu Cai Junwu Chen Liming Ding Lintao Hou 2021Journal of Semiconductors2021,42,3:2
4Effects of the mag- netic field on the polyaniline film studied by in situ conduc- tivity measurements and X-ray diffraction 显示文摘Cai Lintao Yao Shibing Zhou Shaomin 1997Journal of Electroanalytical Chemistry1997,421,12:1
5Probing electrical properties of oriented DNA by conducting atomic force microscopy 显示文摘Lintao Cai Hitoshi Tabata Tomoji Kawai 2001Nanotechnology2001,12,3:1
6Charge transport through self-assembled monolayers of compounds of interest in molecular electronics显示文摘Fan Fu-Ren Yang Jiping Cai Lintao 2002Am Chem Soc2002,124,:1
7Optical characteristics and environmental pollutants detection of porous silicon microcavities显示文摘Porous silicon microcavities (PSM) optical crystals consisting of a Fabry-Perot microcavity embedded between two distributed Bragg reflectors have been fabricated by electrochemical etching. Scanning electron microscopy (SEM) clearly depicted their physical sandwich construction. The optical feature of the PSM structure was tuned by varying the anodization parameters. Through proper thermal oxidation and surface chemical modifications, the resulting structures were employed as optical sensors for the detection of environmental pollutants including volatile organic vapors (i.e. acetonitrile, toluene, cyclohexane, chloroform, acetone and ethanol) and interior decoration gases (i.e. toluene, ammonia and formaldehyde). Fourier transform infrared spectroscopy (FTIR) spectra confirmed the effective thermal annealing and surface modification chemistry, and the sensing process was accompanied by recording the modified structures' optical responses when exposed to target analytes. The PSM optical sensors showed good stability, sensitivity and selectivity, implying promising applications in gas sensing and en- vironmental monitoring.HUANG JianFeng, LI Sha, CHEN QingWei & CAI LinTao CAS Key Laboratory of Health Informatics Shenzhen Key Laboratory of Cancer Nanotechnology Institute of Biomedical and Health Engineering, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China 2011Science China Chemistry2011,54,8:0
8Aptamer-Anchored Rubrene-Loaded Organic Nanoprobes for Cancer Cell Targeting and Imaging显示文摘Fluorescence imaging has become an indispensable technique in cancer research because it can reveal informative molecular,cellular,anatomical,and func-tional insights.Development of advanced fluores-cent probes with superior sensitivity and biological selectivity for fluorescence imaging is thus impera-tive.To move forward in this direction,we developed an easy self-assembly method for fabricating apta-mer-anchored rubrene-loaded organic fluorescent nanoprobes.The aptamer-modified organic nanop-robes integrated the best features of the organic light-emitting materials and the aptamers,thus endowing them with excellent cell-targeting capabil-ity,high stability,and good biocompatibility.By using this general method,a variety of biocompatible and highly bright organic fluorescent nanoprobes based on novel organic light-emitting materials with specific recognition could be easily constructed for real-time biosensing and long-term biomedical imaging.Yuanyuan Li Chuansheng Li Tao Jiang Lihua Zhou Pengfei Zhang Ryan T.K.Kwok Jacky Wing Yip Lam Ping Gong Lintao Cai Ben Zhong Tang 2019CCS Chemistry2019,1,3:0
9Identification and genetic characterization of bovine hepacivirus in China:A large scale epidemiological study显示文摘Bovine hepacivirus(BovHepV)is a novel virus that was recently discovered in Ghana and Germany in 2015.Until now,this virus has been identified in cattle population worldwide and is classified into subtypes A-G.To fully understand the epidemic situation and genetic characteristic of BovHepV in China,a total of 612 cattle serum samples were collected from 20 farms in seven provinces and municipality in China between 2018 and 2020 and were tested for the presence of BovHepV RNA via semi-nested PCR.The results demonstrated that 49(8.0%)samples were BovHepV RNA-positive.It is noted that BovHepV infection in yak was confirmed for the first time.BovHepV was detected in all the seven provinces,with the positive rate ranging from 3.1%to 13.3%,which indicates a wide geographical distribution pattern of BovHepV in China.Sequencing results revealed that 5'UTR of the 49 field BovHepV strains have a nucleotide similarity of 96.3%-100%between each other and 93.9%-100%with previously reported BovHepV strains.In addition,genetic analysis identified five critical nucleotide sites in 5'UTR to distinguish different subtypes,which was further verified by genomic sequencing and nucleotide similarity analysis.All the 49 Chinese field BovHepV strains were classified into subtype G and this subtype is only determined in cattle in China currently.This study will provide insights for us to better understand the epidemiology and genetic diversity of BovHepV.Gang Lu Chaoxi Chen Ran Shao Juan Zhang Jinghao Li Siqi Cai Lintao Zhong Zhiying Lai Jiajun Ou Xin Yin Guihong Zhang Shoujun Li 2022Virologica Sinica2022,37,2:0
10Click CAR-T cell engineering for robustly boosting cell immunotherapy in blood and subcutaneous xenograft tumor显示文摘The adoptive transfer of chimeric antigen receptor-T(CAR-T)cells has shown remarkable clinical responses in hematologic malignancies.However,unsatisfactory curative results and side effects for tumor treatment are still unsolved problems.Herein we develop a click CAR-T cell engineering strategy via cell glycometabolic labeling for robustly boosting their antitumor effects and safety in vivo.Briefly,paired chemical groups(N3/BCN)are separately incorporated into CAR-T cell and tumor via nondestructive intrinsic glycometabolism of exogenous Ac4GalNAz and Ac4ManNBCN,serving as an artificial ligand-receptor.Functional groups anchored on cell surface strengthen the interaction of CAR-T cell and tumor via bioorthogonal click chemistry,further enhancing specific recognition,migration and selective antitumor effects of CAR-T cells.In vivo,click CAR-T cell completely removes lymphoma cells and minimizes off-target toxicity via selective and efficient bioorthogonal targeting in blood cancer.Surprisingly,compared to unlabeled cells,artificial bioorthogonal targeting significantly promotes the accumulation,deep penetration and homing of CAR-T cells into tumor tissues,ultimately improving its curative effect for solid tumor.Click CAR-T cell engineering robustly boosts selective recognition and antitumor capabilities of CAR T cells in vitro and in vivo,thereby holding a great potential for effective clinical cell immunotherapy with avoiding adverse events in patients.Hong Pan Wenjun Li Ze Chen Yingmei Luo Wei He Mengmeng Wang Xiaofan Tang Huamei He Lanlan Liu Mingbin Zheng Xin Jiang Ting Yin Ruijing Liang Yifan Ma Lintao Cai 2021Bioactive Materials2021,6,4:0
11Cancer-macrophage hybrid membrane-camouflaged photochlor for enhanced sonodynamic therapy against triple-negative breast cancer显示文摘Sonodynamic therapy(SDT)has aroused considerable momentum in cancer therapy due to its abilities of deep penetration,low toxicity,and noninvasion,while insufficient tumor accumulation of sonosensitizers is a major obstacle for SDT effect.Here,we developed a 4T1 cancer cell-macrophage hybrid membrane(HM)-camouflaged sonosensitizer nanoplatform by encapsulating photochlor(HPPH)-loaded albumin nanoparticles(PHNPs).The experimental results proved that the HM-coated biomimetic NPs(PHNPs@HM)could express the characteristic membrane proteins of both cancer cells and macrophages,remarkedly enhancing the effective targeting and endocytosis to 4T1 cells through homologous adhesion recognition and immune escaping.Meanwhile,as a novel sonosensitizer,HPPH could generate amount of reactive oxygen species(ROS)under ultrasound(US)irradiation and exhibit obvious SDT efficiency to inhibit 4T1 tumor growth through ROS-induced cell apoptosis.This study provides a novel and multifunctional biomimetic sonosensitizer system to enhance SDT efficiency.Lishan Zhang Ting Yin Baozhen Zhang Chong Yan Chengyu Lu Lanlan Liu Ze Chen Hui Ran Qingxia Shi Hong Pan Aiqing Ma Lintao Cai 2022Nano Research2022,15,5:0
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