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11篇 您的检索式:作者名="Pan Changjiang"
    题名 作者 年代 出处 被引量
1Layer-by-layer deposition of bioactive layers on magnesium alloy stent materials to improve corrosion resistance and biocompatibility显示文摘Magnesium alloy is considered as one of the ideal cardiovascular stent materials owing to its good mechanical properties and biodegradability.However,the in vivo rapid degradation rate and the insufficient biocompatibility restrict its clinical applications.In this study,the magnesium alloy(AZ31B)was modified by combining the surface chemical treatment and in-situ self-assembly of 16-phosphonyl-hexadecanoic acid,followed by the immobilization of chitosan-functionalized graphene oxide(GOCS).Heparin(Hep)and GOCS were alternatively immobilized on the GOCS-modified surface through layer by layer(LBL)to construct the GOCS/Hep bioactive multilayer coating,and the corrosion resistance and biocompatibility were extensively explored.The results showed that the GOCS/Hep bioactive multilayer coating can endow magnesium alloys with an excellent in vitro corrosion resistance.The GOCS/Hep multilayer coating can significantly reduce the hemolysis rate and the platelet adhesion and activation,resulting in an excellent blood compatibility.In addition,the multilayer coating can not only enhance the adhesion and proliferation of the endothelial cells,but also promote the vascular endothelial growth factor(VEGF)and nitric oxide(NO)expression of the attached endothelial cells on the surfaces.Therefore,the method of the present study can be used to simultaneously control the corrosion resistance and improve the biocompatibility of the magnesium alloys,which is expected to promote the application of magnesium alloys in biomaterials or medical devices,especially cardiovascular stent.Fan Gao Youdong Hu Guicai Li Sen Liu Li Quan Zhongmei Yang Yanchun Wei Changjiang Pan 2020Bioactive Materials2020,5,3:12
2Facile Conjugation of Heparin onto Titanium Surfaces via Dopamine Inspired Coatings for Improving Blood Compatibility显示文摘Immobilization of heparin on biomaterials surface has been proven to be an effective strategy for preventing thrombus formation. However, the procedures of most immobilization methods(physical adsorption, covalent linkage, electrostatic interaction) are complicated and time-consuming. In the present study, heparin with various concentrations immobilized on a titanium(Ti) substrate via polydopamine layer for improving blood compatibility was investigated. Water contact angle measurement showed that the immobilization of heparin resulted in an increase of the hydrophilicity. X-ray photoelectron spectroscopy(XPS) and Toluidine Blue O(TBO) tests displayed that the heparin molecules were successfully immobilized on Ti surface. The evaluations of blood compatibility(hemolysis rate, APTT, platelet adhesion and activation, fibrinogen conformational change) showed that the immobilization of heparin decreased hemolysis rate, prolonged blood coagulation time, reduced platelets adhesion and activation, and induced less fibrinogen conformational change. Moreover, a significant inhibition of blood coagulation and platelet adhesion was obtained when the heparin concentration was higher than 5 mg/mL, indicating that only with a certain surface densities could heparin perform its anticoagulant properties well. The results suggest that the immobilization of heparin via polydopamine layer can confer excellent antithrombotic properties, and the heparin immobilization method via polydopamine layer provides an alternative approach for other biomolecules immobilization on biomaterials surface. Thus it is envisaged that this method will be potentially useful for the surface modifi cation of blood-contacting biomaterials.李贵才 XIE Bing PAN Changjiang 杨萍 DING Hongyan HUANG Nan 2014Journal of Wuhan University of Technology(Materials Science)2014,29,4:3
3Bicontinuous porous membranes with micro-nano composite structure using a facile atomization-assisted nonsolvent induced phase separation method显示文摘The micro-nano composite structure can endow separation membranes with special surface properties,but it often has the problems of inefficient preparation process and poor structural stability.In this work,a novel atomization-assisted nonsolvent induced phase separation method,which is also highly efficient and very simple,has been developed.By using this method,a bicontinuous porous microfiltration membrane with robust micro-nano composite structure was obtained via commercially available polymers of polyacrylonitrile and polyvinylpyrrolidone.The formation mechanism of the micro-nano composite structure was proposed.The microphase separation of polyacrylonitrile and polyvinylpyrrolidone components during the atomization pretreatment process and the hydrogen bonding between polyacrylonitrile and polyvinylpyrrolidone molecules should have resulted in the nano-protrusions on the membrane skeleton.The membrane exhibits superhydrophilicity in air and superoleophobicity underwater.The membrane can separate both surfactant-free and surfactant-stabilized oil-in-water emulsions with high separation efficiency and permeation flux.With excellent antifouling property and robust microstructure,the membrane can easily be recycled for long-term separation.Furthermore,the scale-up verification from laboratory preparation to continuous production has been achieved.The simple,efficient,cost-effective preparation method and excellent membrane properties indicate the great potential of the developed membranes in practical applications.Jing Wang Guoyuan Pan Yu Li Yang Zhang Hongwei Shi Xuanbo Liu Hao Yu Muhua Zhao Yiqun Liu Changjiang Wu 2022Frontiers of Chemical Science and Engineering2022,16,8:2
4Overexpression of GPC3 inhibits hepatocellular carcinoma cell proliferationand invasion through induction of apoptosis显示文摘Zhijian Pan Chunzhou Chen Haocheng Long Changjiang Lei Gang Tang Lei Li Jiarui Feng Feixiang Chen 2013Molecular Medicine Reports2013,,:2
5Human Bop is a novel BH3-only member of the Bcl-2 protein family显示文摘One group of Bcl-2 protein family,which shares only the BH3 domain(BH3-only),is critically involved in the regulation of programmed cell death.Herein we demonstrated a novel human BH3-only protein(designated as Bop)which could induce apoptosis in a BH3 domain-dependent manner.Further analysis indicated that Bop mainly localized to mitochondria and used its BH3 domain to contact the loop regions of voltage dependent anion channel 1(VDAC1)in the outer mitochondrial membrane.In addition,purified Bop protein induced the loss of mitochondrial transmembrane potential(ΔΨm)and the release of cytochrome c.Furthermore,Bop used its BH3 domain to contact pro-survival Bcl-2 family members(Bcl-2,Bcl-XL,Mcl-1,A1 and Bcl-w),which could inhibit Bop-induced apoptosis.Bop would be constrained by pro-survival Bcl-2 proteins in resting cells,because Bop became released from phosphorylated Bcl-2 induced by microtubule-interfering agent like vincristine(VCR).Indeed,knockdown experiments indicated that Bop was partially required for VCR induced cell death.Finally,Bop might need to function through Bak and Bax,likely by releasing Bak from Bcl-XL sequestration.In conclusion,Bop may be a novel BH3-only factor that can engage with the regulatory network of Bcl-2 family members to process intrinsic apoptotic signaling.Xiaoping Zhang Changjiang Weng Yuan Li Xiaoyan Wang Chunsun Jiang Xuemei Li Youli Xu Quan Chen Lei Pan Hong Tang 2012Protein & Cell2012,3,10:2
6Preparation and in vitro release profiles of drug-eluting controlled bio- degradable polyrner coating stents显示文摘Pan Changjiang Tang Jiaju Weng Yajun 2009Colloids and Surfaces B: Biointerfaces2009,73,2:1
7Overexpression of GPC3 inhibits hepatocellular carcinoma cell proliferationand invasion through induction of apoptosis显示文摘Zhijian Pan Chunzhou Chen Haocheng Long Changjiang Lei Gang Tang Lei Li Jiarui Feng Feixiang Chen 2013Molecular Medicine Reports2013,,3:1
8Recent advances in surface endothelialization of the magnesium alloy stent materials显示文摘Magnesium and its alloy have good mechanical properties and biodegradability,and have become the hotspot of the next-generation biodegradable vascular stent materials.However,their rapid degradation in vivo and poor biocompatibility are still the bottlenecks of clinical applications for the cardiovascular stents.In particular,how to induce the repair and regeneration of the vascular endothelial with normal physiological functions on the surface of the magnesium alloy stent materials represents the key to its clinical application in the field of cardiovascular stents.It has been believed that it is an ideal way to completely solve the postoperative complications through constructing the multifunctional anti-corrosive bioactive coating on the magnesium alloy surface to induce the formation of vascular endothelium with normal physiological functions.However,how to construct a corrosion-resistant multifunctional bioactive coating with the good endothelial regeneration abilities on the magnesium alloy surface still faces a great challenge.This paper mainly focused on highlighting and summarizing the recent advances in the surface endothelialization of the magnesium alloy materials for the vascular stent,including the bio-inert coating,in-situ immobilization of bioactive molecules on the surface,polymer coating loaded with bioactive factors,novel multifunctional polymer coating,bioactive micropatterns,bioactive layer with glycocalyx-like structure,NO-releasing coating and bioactive sol-gel coating.The advantages and disadvantages of these strategies were discussed and analyzed.Finally,in the senses of future development and clinical application,this paper analyzed and summarized the development direction and prospect of surface endothelialization of the magnesium alloy vascular stents.It is anticipated that this review can give the new cues to the surface endothelialization of the cardiovascular magnesium alloy stents and promote future advancements in this field.Changjiang Pan Xuhui Liu Qingxiang Hong Jie Chen Yuxin Cheng Qiuyang Zhang Lingjie Meng Juan Dai Zhongmei Yang Lingren Wang 2023Journal of Magnesium and Alloys2023,11,1:1
9Integrative analysis of in vivo recording with single-cell RNA-seq data reveals molecular properties of light-sensitive neurons in mouse V1显示文摘Vision formation is classically based on projections from retinal ganglion cells(RGC)to the lateral geniculate nucleus(LGN)and the primary visual cortex(V1).Neurons in the mouse V1 are tuned to light stimuli.Although the cellular information of the retina and the LGN has been widely studied,the transcriptome profiles of single light-stimulated neuron in V1 remain unknown.In our study,in vivo calcium imaging and whole-cell electrophysiological patch-clamp recording were utilized to identify 53 individual cells from layer 2/3 of V1 as lightsensitive(LS)or non-light-sensitive(NS)by single-cell light-evoked calcium evaluation and action potential spiking.The contents of each cell after functional tests were aspirated in vivo through a patch-clamp pipette for mRNA sequencing.Moreover,the three-dimensional(3-D)morphological characterizations of the neurons were reconstructed in a live mouse after the whole-cell recordings.Our sequencing results indicated that V1 neurons with a high expression of genes related to transmission regulation,such as Rtn4r and Rgs7,and genes involved in membrane transport,such as Na+/K+ATPase and NMDA-type glutamatergic receptors,preferentially responded to light stimulation.Furthermore,an antagonist that blocks Rtn4r signals could inactivate the neuronal responses to light stimulation in live mice.In conclusion,our findings of the vivo-seq analysis indicate the key role of the strength of synaptic transmission possesses neurons in V1 of light sensory.Jianwei Liu Mengdi Wang Le Sun Na Clara Pan Changjiang Zhang Junjing Zhang Zhentao Zuo Sheng He Qian Wu Xiaoqun Wang 2020Protein & Cell2020,11,6:0
10Magnetized Water Improves Digestion and Growth of Lambs显示文摘Twelve of weaned Small-tail Han male lambs,with body weight of(7.99±1.04)kg,at 30 days of age,were divided into two groups to study the effect of drinking magnetized water(MW)on digestion and metabolism of lambs.The voluntary intake and ADG from 30 to 240 days of age were measured,twice of digestion and metabolism trial were carried out,and at the age of 240 days slaughter test was conducted.The results showed that drinking MW significantly increased voluntary feed intake(27.2%),ADG(27.4%)and apparent digestibility of DM(17.9%),OM(20.2%),CP(22.8%),and energy(12.7%),respectively.The nitrogen retention in two experimental trials significantly increased by 43.9%and 28.9%,respectively.Drinking MW significantly increased live body weight(24.5%),carcass weight(28.2%),carcass net meat weight(25.5%),carcass lean weight(32.5%)and carcass fat weight(31.3%),respectively.The fresh weights of liver,kidney,rumen,longissimus dorsi and leg muscle of lambs drinking MW increased significantly,but there was no significant difference in their contents of DM,OM and CP.It is concluded that drinking MW is beneficial for increasing voluntary feed intake,digestibility,and ADG,and improving slaughter performance of lambs.Xie Jiaxun Luo Qiujiang Zang Changjiang Liu Shimin Pan Rong 2020Animal Husbandry and Feed Science2020,12,2:0
11Light-, Middle- and Heavy-Lanthanide Ate-Complexes Bearing Ln(Ⅲ)-Si bonds: Structural, Spectroscopic, and Bonding Analysis显示文摘Recent decades have witnessed a rapid development of the lanthanide silicon chemistry.In this research,by reacting[(THF)_(3)LisiPh_(3)]with Cp_(3)Ln(Ⅰ)(THF)(Ln(I)=Sm(Ⅰ),Tb(Ⅱ),Dy(Ⅰ),Yb(Ⅰ)or Cp_(2)Lu(Ⅱ)CI(THF),a series of middle-and heavy-lanthanocene monosilyl/disilyl ate-complexes([(DME)_(3)Lil[Cp_(3)Ln(Ⅱ)SiPh_(3)]and[(DME)_(3)Li[Cp_(2)Lu(Ⅱ)(SiPh_(3))_(2)])were synthesized.The structures of the obtained lanthanocene monosilyl/disilyl ate-complexes were determined by single crystal X-ray diffraction.Together with the previously reported[(DME)_(3)Li[Cp_(3)La(Ⅱ)SiPh_(3)]and[(DME);Lil[Cp_(3)Ce(Ⅱ)SiPha],a complex group comprising silyl light-,middle-and heavy-lanthanocene with identical core coordination pattern are presented.Xiaowei Pan Changjiang Wu Huayi Fang Chunhua Yan 2023Chinese Journal of Chemistry2023,41,22:0
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