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| 1 | Ultrasound-enhanced fluorescence imaging and chemotherapy of multidrugresistant tumors using multifunctional dendrimer/carbon dot nanohybrids显示文摘Development of innovative nanomedicine enabling enhanced theranostics of multidrug-resistant(MDR)tumors remains to be challenging.Herein,we report the development of a newly designed multifunctional yellowfluorescent carbon dot(y-CD)/dendrimer nanohybrids as a platform for ultrasound(US)-enhanced fluorescence imaging and chemotherapy of MDR tumors.Generation 5(G5)poly(amidoamine)dendrimers covalently modified with efflux inhibitor of D-α-tocopheryl polyethylene glycol 1000 succinate(G5-TPGS)were complexed with one-step hydrothermally synthesized y-CDs via electrostatic interaction.The formed G5-TPGS@y-CDs complexes were then physically loaded with anticancer drug doxorubicin(DOX)to generate(G5-TPGS@y-CDs)-DOX complexes.The developed nanohybrids display a high drug loading efficiency(40.7%),strong y-CD-induced fluorescence emission,and tumor microenvironment pH-preferred DOX release profile.Attributing to the DOX/TPGS dual drug design,the(G5-TPGS@y-CDs)-DOX complexes can overcome the multidrug resistance(MDR)of cancer cells and effectively inhibit the growth of cancer cells and tumors.Furthermore,the introduction of US-targeted microbubble destruction technology was proven to render the complexes with enhanced intracellular uptake and anticancer efficacy in vitro and improved chemotherapeutic efficacy and fluorescence imaging of tumors in vivo due to the produced sonoporation effect.The developed multifunctional dendrimer/CD nanohybrids may represent an advanced design of nanomedicine for US-enhanced theranostics of different types of MDR tumors. | Dan Li Lizhou Lin Yu Fan Long Liu Mingwu Shen Rong Wu Lianfang Du Xiangyang Shi | 2021 | Bioactive Materials2021,6,3: | 3 |
| 2 | Two-dimensional LDH nanodisks modified with hyaluronidase enable enhanced tumor penetration and augmented chemotherapy显示文摘The condensed tumor extracellular matrix(ECM)consisting of cross-linked hyaluronic acid(HA)is one of the key factors that result in the aberrant tumor microenvironment and severely impair drug delivery and tumor penetration.Herein,we report a simple design of a hyaluronidase(HAase)-modified layered double hydroxide(LDH)nanoplatform loaded with anticancer drug doxorubicin(DOX)for enhanced tumor penetration and augmented chemotherapy.In our approach,LDH nanodisks were synthesized via a co-precipitation method,modified with HAase by electrostatic attraction,and finally physically loaded with DOX.The formulated DOX/LDH-HAase complexes show a high DOX loading percentage of 34.2%with good colloidal stability,retain 86.1%of the enzyme activity,and release DOX in a pH-responsive manner having a faster release rate under slightly acidic tumor microenvironment than that under a physiological condition.With the catalytic activity of HAase to digest the HA nearby the cancer cells,the developed DOX/LDH-HAase complexes enable more significant uptake by cancer cells and penetration in 3-dimensional tumor spheroids than enzyme-free DOX/LDH complexes,thus displaying much better antitumor efficacy in vitro than the latter.The more significant tumor penetration and inhibition of the DOX/LDH-HAase complexes than that of the DOX/LDH complexes was further demonstrated by in vivo tumor imaging and therapeutic activity assessments.Our study suggests a unique nanomedicine platform combined with both anticancer drug and enzyme for improved tumor penetration and chemotherapy,which is promising for effective chemotherapy of different types of stroma-rich tumors. | Gaoming Li Yu Fan Lizhou Lin Rong Wu Mingwu Shen Xiangyang Shi | 2021 | Science China Chemistry2021,64,5: | 2 |
| 3 | Servitization strategy: strategic priority, capacity require- ment, and organizational feature 显示文摘 | YONG LIN JING LUO LIZHOU SHI HUAMA | 2011 | Service Operations Logistics and Informatics(SOLI)2011,2011,3: | 1 |
| 4 | Hyperfine Structure of La1 in a Cathode Discharge Tube显示文摘Hyperfine structures of La1 are reported using Doppler-free intermodulated fluorescence,Doppler-limited laser induced fluorescence and optogalvanic spectroscopy in a home-made cathode discharge tube.The constants A and B for the levels at 20197.34,21447.86cm^(-1) and constant A for the levels at 19379.40,18156.97,94910.38,and 24409.68cm^(-1) are reported.A homogeneous linewidth less than 40MHz and the different resolutions between fluorescence and optogalvanic spectroscopy were observed. | LUO Caiyan QU Jianan ZHU Lizhou LIN Fucheng | 1991 | Chinese Physics Letters1991,8,2: | 0 |
| 5 | Size-dependent spatio-temporal dynamics of eukaryotic plankton community near nuclear power plant in Beibu Gulf,China显示文摘Pico-and nano-eukaryotic plankton are important members of marine ecosystems.To understand their community structure and spatio-temporal variations in the Beibu Gulf,and to study the impact of Changjiang Nuclear Power Plant(CNPP)located in the northwest coast of the Hainan Island on the eukaryotic plankton,we studied these issues in the coastal water near CNPP bimonthly from February 2018 to January 2019 via 18 S Illumina sequencing.The results reveal a higher genetic alphadiversity and less beta-diversity of the plankton community in small-size(0.45-5μm and 5-20μm)fractions than in large-size(20-200μm and>20μm)fractions.The small-sized phytoplankton,including Micromonas(Chlorophyta)and Minutocellus(Bacillariophyta),as well as heterotrophic plankton,including Paraphysomonas(Chrysophyceae),Ellobiopsis(Dinoflagellates),and Syndiniales(Dinoflagellates),took up a considerable proportion in eukaryotic plankton community.In addition,it showed a slight temperature increase and no significant difference in eukaryotic plankton community between the outfall of CNPP and other sampling sites,suggesting that the impact of the thermal discharge from the CNPP on local eukaryotic plankton community was limited. | Lizhou LIN Haifeng GU Zhaohe LUO Na WANG | 2021 | Journal of Oceanology and Limnology2021,39,5: | 0 |