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| 1 | Bone biomaterials and interactions with stem cells显示文摘Bone biomaterials play a vital role in bone repair by providing the necessary substrate for cell adhesion,proliferation, and differentiation and by modulating cell activity and function. In past decades, extensive efforts have been devoted to developing bone biomaterials with a focus on the following issues:(1)developing ideal biomaterials with a combination of suitable biological and mechanical properties;(2)constructing a cell microenvironment with pores ranging in size from nanoscale to submicro-and microscale;and(3) inducing the oriented differentiation of stem cells for artificial-to-biological transformation. Here we present a comprehensive review of the state of the art of bone biomaterials and their interactions with stem cells. Typical bone biomaterials that have been developed, including bioactive ceramics, biodegradable polymers, and biodegradable metals, are reviewed, with an emphasis on their characteristics and applications. The necessary porous structure of bone biomaterials for the cell microenvironment is discussed,along with the corresponding fabrication methods. Additionally, the promising seed stem cells for bone repair are summarized, and their interaction mechanisms with bone biomaterials are discussed in detail.Special attention has been paid to the signaling pathways involved in the focal adhesion and osteogenic differentiation of stem cells on bone biomaterials. Finally, achievements regarding bone biomaterials are summarized, and future research directions are proposed. | Chengde Gao Shuping Peng Pei Feng Cijun Shuai | 2017 | Bone Research2017,5,4: | 17 |
| 2 | Correlation between the cumulative analgesic effect of electroacupuncture intervention and synaptic plasticity of hypothalamic paraventricular nucleus neurons in rats with sciatica显示文摘In the present study, a rat model of chronic neuropathic pain was established by ligation of the sciatic nerve and a model of learning and memory impairment was established by ovariectomy to investigate the analgesic effect of repeated electroacupuncture stimulation at bilateral Zusanli (ST36) and Yanglingquan (GB34). In addition, associated synaptic changes in neurons in the paraventricular nucleus of the hypothalamus were examined. Results indicate that the thermal pain threshold (paw withdrawal latency) was significantly increased in rats subjected to 2-week electroacupuncture intervention compared with 2-day electroacupuncture, but the analgesic effect was weakened remarkably in ovariectomized rats with chronic constrictive injury. 2-week electroacupuncture intervention substantially reversed the chronic constrictive injury-induced increase in the synaptic cleft width and thinning of the postsynaptic density. These findings indicate that repeated electroacupuncture at bilateral Zusanli and Yanglingquan has a cumulative analgesic effect and can effectively relieve chronic neuropathic pain by remodeling the synaptic structure of the hypothalamic paraventricular nucleus. | Qiuling Xu Tao Liu Shuping Chen Yonghui Gao Junying Wang Lina Qiao Junling Liu | 2013 | Neural Regeneration Research2013,8,3: | 6 |
| 3 | Multiple fields manipulation on nitride material structures in ultraviolet light-emitting diodes显示文摘As demonstrated during the COVID-19 pandemic,advanced deep ultraviolet(DUV)light sources(200–280 nm),such as AlGaN-based light-emitting diodes(LEDs)show excellence in preventing virus transmission,which further reveals their wide applications from biological,environmental,industrial to medical.However,the relatively low external quantum efficiencies(mostly lower than 10%)strongly restrict their wider or even potential applications,which have been known related to the intrinsic properties of high Al-content AlGaN semiconductor materials and especially their quantum structures.Here,we review recent progress in the development of novel concepts and techniques in AlGaNbased LEDs and summarize the multiple physical fields as a toolkit for effectively controlling and tailoring the crucial properties of nitride quantum structures.In addition,we describe the key challenges for further increasing the efficiency of DUV LEDs and provide an outlook for future developments. | Jinchai Li Na Gao Duanjun Cai Wei Lin Kai Huang Shuping Li Junyong Kang | 2021 | Light(Science & Applications)2021,10,7: | 4 |
| 4 | Ln3+(Ln=Eu,Dy)-doped Sr2CeO4 fine phosphor particles:Wet chemical preparation,energy transfer and tunable luminescence显示文摘The Sr2 CeO4:Ln3+(Ln=Eu,Dy)fine phosphor particles were prepared by a facile wet chemical approach,in which the consecutive hydrothermal-combustion reaction was performed.The doping of Ln3+into Sr2 CeO4 has little influence on the structure of host,and the as-prepared samples display wellcrystallized spherical or elliptical shape with an average particle size at about 100-200 nm.For Eu3+ions-doped Sr2 CeO4,with the increase of Eu3+-doping concentration,the blue light emission band with the maximum at 468 nm originating from a Ce4+→O2-charge transfer of the host decreases obviously and the characteristic red light emission of Eu3+(5 D0→7 F2 transition at 618 nm)is enhanced gradually.Simultaneously,the fluorescent lifetime of the broadband emission of Sr2 CeO4 decreases with the doping of Eu3+,indicating an efficient energy transfer from the host to the doping Eu3+ions.The ene rgy transfer efficiency from the host to Eu3+was investigated in detail,and the emitting color of Sr2 CeO4:Eu3+can be easily tuned from blue to red by varying the doping concentration of Eu3+ions.Moreover,the luminescence of Dy3+-doped Sr2 CeO4 was also studied.Similar energy transfer pheno menon can be observed,and the incorporation of Dy3+into Sr2 CeO4 host leads to the characteristic emission of 4 F9/2→6 H15/2(488 nm,blue light)and 4 F9/2→6 H13/2(574 nm,yellow light)of Dy3+.The Sr2 CeO4:Ln3+fine particles with tunable luminescence are quite beneficial for its potential applications in the optoelectronic fields. | Na Gao Yanfei Yang Shikao Shi Jiye Wang Shuping Wang Jibiao Li Lianshe Fu | 2020 | Journal of Rare Earths2020,38,12: | 4 |
| 5 | Acupuncture effects on the hippocampal cholinergic system in a rat model of neuropathic pain显示文摘The present study observed the effects of repeated electroacupuncture of Zusanli (ST36) and Yanglingquan (GB34) on expression of hippocampal acetylcholinesterase, vesicular acetylcholine transporter, and muscarinic M1 receptor mRNA in chronic constrictive injury (neuropathic pain) and/or ovariotomy rats. Results demonstrated increased expression of hippocampal acetylcholinesterase, vesicular acetylcholine transporter, and muscarinic M1 receptor mRNA, as well as decreased pain threshold, in a rat model of chronic neuropathic pain after electroacupuncture. The effects of electroacupuncture increased with prolonged time, but the above-mentioned effects decreased in memory-deficient animals. Results indicated that repeated electroacupuncture has a cumulative analgesic effect, which is closely associated with upregulation of acetylcholinesterase and vesicular acetylcholine transporter activity, as well as M1 receptor mRNA expression and memory. | Junying Wang Junling Liu Shuping Chen Yonghui Gao Fanying Meng Lina Qiao | 2012 | Neural Regeneration Research2012,7,3: | 4 |
| 6 | Nano-SiC reinforced Zn biocomposites prepared via laser melting:Microstructure,mechanical properties and biodegradability显示文摘Zn has been regarded as new kind of potential implant biomaterials due to the desirable biodegradability and good biocompatibility,but the low strength and ductility limit its application in bone repairs.In the present study,nano-SiC was incorporated into Zn matrix via laser melting,aiming to improve the mechanical performance.The microstructure analysis showed that nano-SiC distributed along Zn grain boundaries.During the laser rapid solidification,nano-SiC particles acted as the sites for heterogeneous nucleation,which resulted in the reduction of Zn grain size from 250μm to 15μm with 2 wt%SiC(Zn-2 SiC).Meanwhile,nano-SiC acted as a reinforcer by virtue of Orowan strengthening and dispersion strengthening.As a consequence,the nanocomposites showed maximal compressive yield strength(121.8±5.3 MPa)and high microhardness(72.24±3.01 HV),which were increased by 441%and 78%,respectively,compared with pure Zn.Moreover,fracture analysis indicated a more ductile fracture of the nanocomposites after the incorporation of nano-SiC In addition,the nanocomposites presented favorable biocompatibility and accelerated degradation caused by intergranular corrosion.These findings suggested that the nano-SiC reinforced Zn biocomposites may be the potential candidates for orthopedic implants. | Chengde Gao Meng Yao Cijun Shuai Shuping Peng Youwen Deng | 2019 | Journal of Materials Science & Technology2019,35,11: | 4 |
| 7 | Do migrant and resident species differ in the timing of increases in reproductive and thyroid hormone secretion and body mass? A case study in the comparison of pre-breeding physiological rhythms in the Eurasian Skylark and Asian Short-toed Lark显示文摘Background:Physiological preparation for reproduction in small passerines involves the increased secretion of reproductive hormones, elevation of the metabolic rate and energy storage, all of which are essential for reproduction. However, it is unclear whether the timing of the physiological processes involved is the same in resident and migrant species that breed in the same area. To answer this question, we compared temporal variation in the plasma concentration of luteinizing hormone(LH), testosterone(T), estradiol(E_2), triiothyronine(T_3) and body mass, between a migrant species, the Eurasian Skylark(Alauda arvensis) and a resident species, the Asian Short-toed Lark(Calandrella cheleensis), both of which breed in northeastern Inner Mongolia, China, during the 2014 and 2015 breeding seasons.Methods:Twenty adult Eurasian Skylarks and twenty Asian Short-toed Larks were captured on March 15, 2014 and 2015 and housed in out-door aviaries. Plasma LH, T(males), E_2(females), T_3 and the body mass of each bird were measured every six days from March 25 to May 6.Results:With the exception of T, which peaked earlier in the Asian Short-toed Lark in 2014, plasma concentrations of LH, T, E_2 and T_3 of both species peaked at almost the same time. However, Asian Short-toed Larks attained peak body mass earlier than Eurasian Skylarks. Plasma T_3 concentrations peaked 12 days earlier than plasma LH in both species. Generally, plasma LH, T, E_2, T_3 and body mass, peaked earlier in both species in 2014 than 2015.Conclusions:The timing of pre-reproductive changes in the endocrine system and energy metabolism can be the same in migrant and resident species; however, residents may accumulate energy reserves faster than migrants. Although migration does not affect the timing of pre-breeding reproductive and metabolic changes, migrant species may need more time to increase their body mass. T levels in resident species may be accelerated by higher spring temperatures that may also advance the pre-breeding preparation of both migrants and residents. | Lidan Zhao Lijun Gao Wenyu Yang Xianglong Xu Weiwei Wang Wei Liang Shuping Zhang | 2017 | Avian Research2017,8,2: | 4 |
| 8 | The cumulative analgesic effect of repeated electroacupuncture involves synaptic remodeling in the hippocampal CA3 region显示文摘In the present study, we examined the analgesic effect of repeated electroacupuncture at bilateral Zusanli (ST36) and Yanglingquan (GB34) once a day for 14 consecutive days in a rat model of chronic sciatic nerve constriction injury-induced neuropathic pain. In addition, concomitant changes in calcium/calmodulin-dependent protein kinase II expression and synaptic ultrastructure of neurons in the hippocampal CA3 region were examined. The thermal pain threshold (paw withdrawal latency) was increased significantly in both groups at 2 weeks after electroacupuncture intervention compared with 2 days of electroacupuncture. In ovariectomized rats with chronic constriction injury, the analgesic effect was significantly reduced. Electroacupuncture for 2 weeks significantly diminished the injury-induced increase in synaptic cleft width and thinning of the postsynaptic density, and it significantly suppressed the down-regulation of intracellular calcium/ calmodulin-dependent protein kinase II expression in the hippocampal CA3 region. Repeated electroacupuncture intervention had a cumulative analgesic effect on injury-induced neuropathic pain reactions, and it led to synaptic remodeling of hippocampal neurons and upregulated calcium/calmodulin-dependent protein kinase II expression in the hippocampal CA3 region. | Qiulinq Xu Tao Liu Shuping Chen Yonghui Gao Junying Wang Lina Qiao Junling Liu | 2012 | Neural Regeneration Research2012,7,18: | 3 |
| 9 | Physical stimulations and their osteogenesis-inducing mechanisms显示文摘Physical stimulations such as magnetic,electric and mechanical stimulation could enhance cell activity and promote bone formation in bone repair process via activating signal pathways,modulating ion channels,regulating bonerelated gene expressions,etc.In this paper,bioeffects of physical stimulations on cell activity,tissue growth and bone healing were systematically summarized,which especially focused on their osteogenesis-inducing mechanisms.Detailedly,magnetic stimulation could produce Hall effect which improved the permeability of cell membrane and promoted the migration of ions,especially accelerating the extracellular calcium ions to pass through cell membrane.Electric stimulation could induce inverse piezoelectric effect which generated electric signals,accordingly up-regulating intracellular calcium levels and growth factor synthesis.And mechanical stimulation could produce mechanical signals which were converted into corresponding biochemical signals,thus activating various signaling pathways on cell membrane and inducing a series of gene expressions.Besides,bioeffects of physical stimulations combined with bone scaffolds which fabricated using 3D printing technology on bone cells were discussed.The equipments of physical stimulation system were described.The opportunities and challenges of physical stimulations were also presented from the perspective of bone repair. | Cijun Shuai Wenjing Yang Shuping Peng Chengde Gao Wang Guo Yuxiao Lai Pei Feng | 2018 | International Journal of Bioprinting2018,4,2: | 3 |
| 10 | Dual alloying improves the corrosion resistance of biodegradable Mg alloys prepared by selective laser melting显示文摘Mg alloys have been regarded as revolutionary metallic biomaterials for biodegradable bone implants,but their applications are mainly blocked by the too rapid degradation in physiological environment.This study explores the dual alloying effects of Mn and/or Sn on the performance of Mg alloys prepared by selective laser melting.The observed microstructure indicated remarkable refinement of both the grains and intermetallic phases in the Mn-and/or Sn-containing alloys during the rapid solidification process.Moreover,approximately a half decrease in corrosion rate was observed for AZ61-0.4Mn-0.8Sn alloy with respect to AZ61 alloy.The improved corrosion behavior was primarily due to the enhanced protective effects of surface layers,in which Mn-and/or Sn-rich phases acted as a helpful barrier against medium penetration and thereby alleviated the current exchange with the matrix.In addition,the solute Mn and/or Sn positively shifted the corrosion potential,which also brought about a better corrosion resistance.Furthermore,the strength and hardness of the alloys were also effectively improved and comparable to those of cortical bone.This could be ascribed to the dissolved Mn and/or Sn atoms and the finely dispersed intermetallic phases,which might cause lattice distortion and precipitation hardening.Besides,the Mn-and/or Sn-containing alloys showed good cytocompatibility as indicated by the normal morphology and increased viability of MG-63 cells.These findings suggest that the developed AZ61-Mn-Sn alloy is a promising candidate for biodegradable bone implants. | Chengde Gao Sheng Li Long Liu Shizhen Bin Youwen Yang Shuping Peng Cijun Shuai | 2021 | Journal of Magnesium and Alloys2021,9,1: | 3 |
| 11 | Synthesis,crystal structure and thermal behavior of Rb(NTO)·H_2O显示文摘The Rb(NTO) .H2O crystal has been synthesized by reaction of 3-nitro-l,2,4-triazole-5-one (NTO) with Rb2CO3 in aqueous solution. Its crystal structure has been determined. The crystal belongs to monoclinic system. Crystal structure data: space group P21/ n; a = 0.633 0(1), b = 0.824 1(2), c =1.296 4(3) nm; β = 97.90(1)°; V = 0.669 9 (2) nm3, Z = 4, Dc= 2.306 g/cm3,μ = 7.365 nm-1, F(000) = 448. An eight coordinated compound is formed between Rb+ with oxygen atoms and nitrogen atoms. A layer structure is formed by coordination bonds and hydrogen bonds. The thermal decomposition mechanism of this coordination compound is discussed. | HU Mancheng, GAO Shiyang, LIU Zhihong, SONG Jirong, XIA Shuping & YU Kaibei1. Institute of Applied Chemistry, Shaanxi Normal University, Xi’an 710062, China 2. Department of Chemical Engineering, Northwest University, Xi’an 710069, China 3. Chengdu Branch of Chinese Academy of Sciences, Chengdu 610041, China | 2001 | Chinese Science Bulletin2001,46,1: | 2 |
| 12 | miR-24-3p promotes colon cancer progression by targeting ING1显示文摘Dear Editor,Activation or upregulation of oncogenes and/or loss of function or downregulation of tumour suppressors are central to the processes involved in the transformation from normal colonic mucosa to malignant tumours.Inhibitor of growth 1(ING1)has been functionally linked to cell cycle arrest,apoptosis and chromatin remodelling. | Zhiying Gao Likun Zhou Shiyu Hua Huan Wu Laizhi Luo Libo Li Shuping Wang Yanqing Liu Zhen Zhou Xi Chen | 2020 | Signal Transduction and Targeted Therapy2020,5,1: | 2 |
| 13 | A New Diagnostic Method for Winding Short-Circuit Fault for SRM Based on Symmetrical Component Analysis显示文摘Winding short-circuit is one of the more common faults in switched reluctance motors(SRM).This paper takes an in-depth look at winding short-circuit.The characteristic of non-sinusoidal intermittent single phase current,fundamental components are extracted to reconstruct four phase symmetrical currents based on spectrum analysis of phase currents.The method of symmetrical component is used to calculate positive and negative sequence components of reconstructed currents,where then the ratio between positive and negative sequence component is seen as a fault feature and the diagnostic criterion is proposed.The simulation and experimental results are presented to confirm the implementation of the proposed method. | Li Xiao Hexu Sun Feng Gao Shuping Hou Lipeng Li | 2018 | Chinese Journal of Electrical Engineering2018,4,1: | 2 |
| 14 | Temperature effect on luteinizing hormone secretion of Eurasian Skylark(Alauda arvensis) and Great Tit(Parus major) in China显示文摘Background: Global warming caused trophic mismatch has affected the breeding success, and even the survival, of some bird species.The ability of birds to accelerate their reproduction onset in the warmer spring could be critical to the survival of some species.The activation of the reproductive endocrine axis in birds is a key physiological process that determines the onset of reproduction.Could birds change the HPG axis endocrine rhythm under the temperature rising condition?Methods: Using plasma LH level as an indicator of initiation of the reproductive endocrine and artificially controlling temperature, we compared variations in the timing of activation of the reproductive endocrine axis in response to temperature in two Chinese bird species, the Eurasian Skylark(Alauda arvensis) and the Great Tit(Parus major) at both the population and individual levels.Results: At the population level, temperature only significantly influenced LH level in the Eurasian Skylark, and had no significant effect on the LH levels in the Great Tit.Mean LH level of Eurasian Skylarks in the 20 ℃ group was higher than that of those in the 15 ℃ group throughout the experiment.Large individual variations in the timing of peak LH levels were observed in the high and the low temperature groups of both Eurasian Skylarks and Great Tits.Conclusions: These results indicate that the effects of temperature differ among species.Meanwhile, there appears to be a degree of within population polymorphism in the timing of reproductive endocrine axis activation in some species.This polymorphism could provide the variation required for bird populations to cope with the possible change of their food peak under the climate warming condition. | Lijun Gao Jing Gao Shuping Zhang | 2018 | Avian Research2018,9,1: | 2 |
| 15 | 显示文摘 | Xing Wei Zhuo Shuping Gao Xiuli | 2009 | Materials Letters2009,63,: | 1 |
| 16 | Studies on the basic compounds of magnesia cement : The thermal behavior of magnesium oxychlorides 显示文摘 | XIA Shuping XING Pifang GAO Shiyang | 1991 | Thermochimica Acta1991,183,: | 1 |
| 17 | Mapping Domain- and Age-Specific Functional Brain Activity for Children’s Cognitive and Affective Development显示文摘The human brain undergoes rapid development during childhood,with significant improvement in a wide spectrum of cognitive and affective functions.Mapping domain-and age-specific brain activity patterns has important implications for characterizing the development of children’s cognitive and affective functions.The current mainstay of brain templates is primarily derived from structural magnetic resonance imaging(MRI),and thus is not ideal for mapping children’s cognitive and affective brain development.By integrating task-dependent functional MRI data from a large sample of 250 children(aged 7 to 12)across multiple domains and the latest easy-to-use and transparent preprocessing workflow,we here created a set of age-specific brain functional activity maps across four domains:attention,executive function,emotion,and risky decision-making.Moreover,we developed a toolbox named Developmental Brain Functional Activity maps across multiple domains that enables researchers to visualize and download domain-and age-specific brain activity maps for various needs.This toolbox and maps have been released on the Neuroimaging Informatics Tools and Resources Clearinghouse website(http://gffzza9adc041c78b4b3bhcqoncb5oquku6fuo.ffgz.tsg.suse.edu.cn/projects/dbfa).Our study provides domain-and age-specific brain activity maps for future developmental neuroimaging studies in both healthy and clinical populations. | Lei Hao Lei Li Menglu Chen Jiahua Xu Min Jiang Yanpei Wang Linhua Jiang Xu Chen Jiang Qiu Shuping Tan Jia-Hong Gao Yong He Sha Tao Qi Dong Shaozheng Qin | 2021 | Neuroscience Bulletin2021,37,6: | 1 |
| 18 | Study on the biodegradability and biocompatibility of WE magnesium alloys显示文摘 | Guixue Wang Shuping Ge Yang Shen Honggang Wang Qinglei Dong Qin Zhang Jiacheng Gao Yong Wang | 2012 | Materials Science & Engineering C2012,,8: | 1 |
| 19 | A novel fault-location method for HVDC transmission lines 显示文摘 | Suonan Jiale Shuping Gao Guobing Song | 2010 | IEEE Transactions on Power Delivery2010,25,2: | 1 |
| 20 | Crystal growth and crystal structure of magnesium oxysulfate 2MgSO 4 ·Mg(OH) 2 ·2H 2 O显示文摘 | Yue Tao Gao Shiyang Zhu Lixia Xia Shuping Yu Kaibei | 2002 | Journal of Molecular Structure2002,,1: | 1 |