维普中文期刊产品整合服务
4篇 您的检索式:作者名="Guangle Niu"
    题名 作者 年代 出处 被引量
1Two-photon-excited near-infrared emissive carbon dotsas multifunctional agents for fluorescence imaging andphotothermal therapy显示文摘C dots (CDs) have shown great potential in bioimaging and phototherapy.However, it is challenging to manipulate their fluorescent properties andtherapeutic efficacy to satisfy the requirements for clinic applications. In thisstudy, we prepared S, Se-codoped CDs via a hydrothermal method anddemonstrated that the doping resulted in excitation wavelength-independentnear-infrared (NIR) emissions of the CDs, with peaks at 731 and 820 nm.Significantly, the CDs exhibited a photothermal conversion efficiency of -58.2%,which is the highest reported value for C nanostructures and is comparable tothat of Au nanostructures. Moreover, the CDs had a large two-photon absorptioncross section (-30,045 GM), which allowed NIR emissions and the photothermalconversion of the CDs through the two-photon excitation (TPE) mechanism. Invitro and in vivo tests suggested that CDs can function as new multi functionalphototheranostic agents for the TPE fluorescence imaging and photothermaltheraov of cancer cells.Minhuan Lan Shaojing Zhao Zhenyu Zhang Li Yan Liang Guo Guangle Niu Jinfeng Zhang Junfang Zhao Hongyan Zhang Pengfei Wang Guangyu Zhu Chun-Sing Lee Wenjun Zhang 2017Nano Research2017,10,9:9
2Specific photoacoustic cavitation through nucleus targeted nanoparticles for high-efficiency tumor therapy显示文摘As a new type of cancer treatment,photoacoustic(PA)therapy is based on PA shockwave for rapid,selective and effective killing of cancer cells.The nucleus has been widely used as a target for tumor therapy,which has obtained a very considerable therapeutic effect.In situ destruction of tumor cell nucleus by photoacoustic therapy has not been studied.In this paper,a highly efficient nucleus-targeted photoacoustic theranostic polymer was developed for fluorescence and photoacoustic dual-mode imaging-guided PA therapy.The prepared polymer consists of nucleus targeting TAT peptide(TAT:YGRKKRRQRRR),hydrophilic chain poly(N,N-dimethylacrylamide)(PDMA),and near-infrared(NIR)light absorbing agent(hCyR),which can self-assemble to form nanoparticles of approximately 28 nm(denoted as TAT-PDMA-hCyR NPs).The designed nanoparticles show excellent nucleus targeting and tumor cell death(up to 80%)caused by DNA damage under pulsed laser irradiation compared to non-nucleus target counterpart PDMA-hCyR NPs without TAT peptide in vitro.As expected,the fluorescence and PA dual-mode imaging observed that TAT-PDMA-hCyR NPs were able to passively target and enrich in tumors,providing an experimental basis for in vivo treatment and thus ensuring a significant tumor inhibition rate(about 92%).In conclusion,this study provides a new and practicable method for the development of nucleus-targeting nanoparticles as potential theranostic agent for in vivo cancer imaging and therapy.Yuan Wang Guangle Niu Shaodong Zhai Wenjia Zhang Da Xing 2020Nano Research2020,13,3:3
3Mitochondria-targeting NIR fluorescent probe for rapid,highly sensitive and selective visualization of nitroxyl in live cells,tissues and mice显示文摘Nitroxyl(HNO)has been reported to possess unique biological and pharmacological performances,and emerged as a novel therapy for congestive heart failure.Recent studies also suggest that HNO may be produced and involved in important metabolisms in mitochondria.However,due to its high reactivity and short life properties,fast,sensitive and selective observation and monitoring of HNO related dynamic changes in mitochondria still remains a great challenge.Herein,we synthesized a mitochondria-targeting near-infrared(NIR)fluorescent probe(DCMHNO)for rapid detection of HNO with remarkably high sensitivity,selectivity and photostability.DCMHNO shows fast response(about 4 min)towards HNO via 2-(diphenylphosphino)benzoyl group through the Staudinger reaction to boost the bright NIR emission(700 nm)with excellent sensitivity(detection limit of 13 nM),high p H stability and very low interference from other species.DCMHNO can selectively locate in mitochondria and visualize exogenous and endogenous HNO in live He La cells with high biocompatibility and photostability.The probe could also monitor the interaction between NO and H2 S that gives rise to the generation of HNO in live He La cells.In addition,DCMHNO was further utilized in ex vivo NIR imaging of HNO in live mouse liver tissues at the depth of about 50μm.In vivo imaging of HNO with high signal-to-noise ratio in live mice was also realized by using DCMHNO.These remarkable imaging performances could render NIR DCMNHNO as a useful tool to reveal HNO related dynamic changes in live samples.Jianguo Wang Wenping Zhu Chunbin Li Pengfei Zhang Guoyu Jiang Guangle Niu Ben Zhong Tang 2020Science China Chemistry2020,63,2:0
4Lipid droplets imaging with three-photon microscopy显示文摘Lipid droplets(LDs)participate in many physiological processes,the abnormality of which will cause chronic diseases and pathologies such as diabetes and obesity.It is crucial to monitor the distribution of LDs at high spatial resolution and large depth.Herein,we carried three-photon imaging of LDs in fat liver.Owing to the large three-photon absorption cross-section of the luminogen named NAP-CF_(3)(1:67×10^(-79) cm^(6) s^(2)),three-photon fluorescence fat liver imaging reached the largest depth of 80μm.Fat liver diagnosis was successfully carried out with excellent performance,providing great potential for LDs-associated pathologies research.Mubin He Hojeong Park Guangle Niu Qiming Xia Hequn Zhang Ben Zhong Tang Jun Qian 2023Journal of Innovative Optical Health Sciences2023,16,4:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费