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30篇 您的检索式:作者名="Liangliang Lin"
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1Activation of mTORC1 in subchondral bone preosteoblasts promotes osteoarthritis by stimulating bone sclerosis and secretion of CXCL12显示文摘Increasing evidences show that aberrant subchondral bone remodeling plays an important role in the development of osteoarthritis(OA).However,how subchondral bone formation is activated and the mechanism by which increased subchondral bone turnover promotes cartilage degeneration during OA remains unclear.Here,we show that the mechanistic target of rapamycin complex 1(mTORC1)pathway is activated in subchondral bone preosteoblasts(Osterix+)from OA patients and mice.Constitutive activation of mTORC1 in preosteoblasts by deletion of the mTORC1 upstream inhibitor,tuberous sclerosis 1,induced aberrant subchondral bone formation,and sclerosis with little-to-no effects on articular cartilage integrity,but accelerated posttraumatic OA development in mice.In contrast,inhibition of mTORC1 in preosteoblasts by disruption of Raptor(mTORC1-specific component)reduced subchondral bone formation and cartilage degeneration,and attenuated post-traumatic OA in mice.Mechanistically,mTORC1 activation promoted preosteoblast expansion and Cxcl12 secretion,which induced subchondral bone remodeling and cartilage degeneration during OA.A Cxcl12-neutralizing antibody reduced cartilage degeneration and alleviated OA in mice.Altogether,these findings demonstrate that mTORC1 activation in subchondral preosteoblasts is not sufficient to induce OA,but can induce aberrant subchondral bone formation and secrete of Cxcl12 to accelerate disease progression following surgical destabilization of the joint.Pharmaceutical inhibition of the pathway presents a promising therapeutic approach for OA treatment.Chuangxin Lin Liangliang Liu Chun Zeng Zhong-Kai Cui Yuhui Chen Pinling Lai Hong Wang Yan Shao Haiyan Zhang Rongkai Zhang Chang Zhao Hang Fang Daozhang Cai Xiaochun Bai 2019Bone Research2019,7,1:12
2Tuning Superhydrophobic Materials with Negative Surface Energy Domains显示文摘Hydrophobic/superhydrophobic materials with intrinsic water repellence are highly desirable in engineering fields including antiicing in aerocrafts,antidrag and anticorrosion in ships,and antifog and self-cleaning in optical lenses,screen,mirrors,and windows.However,superhydrophobic material should have small surface energy(SE)and a micro/nanosurface structure which can reduce solid-liquid contact significantly.The low SE is generally found in organic materials with inferior mechanical properties that is undesirable in engineering.Intriguingly,previous theoretical calculations have predicted a negative SE forθ-alumina(θ-Al_(2)O_(3)),which inspires us to use it as a superhydrophobic material.Here,we report the experimental evidence of the small/negative SE ofθ-Al_(2)O_(3) and aθ-Al_(2)O_(3)-based superhydrophobic coating prepared by one-step scalable plasma arcing oxidation.The superhydrophobic coating has complete ceramic and desired micro/nanostructure and therefore exhibits excellent aging resistance,wear resistance,corrosion resistance,high-temperature tolerance,and burning resistance.Owing to the rarity of the small/negative SE in inorganic materials,the concept to reduce SE byθ-Al_(2)O_(3) may foster a blowout to develop robust superhydrophobicity by complete inorganic materials.Zhongzhen Wu Liangliang Liu Shunning Li Shunping Ji Pinghu Chen Suihan Cui Zhengyong Ma Yuchang Weng Qian Huang Zhongcan Wu Hao Wu Yuan Lin Ricky KYFu Hai Lin Xiubo Tian Paul KChu Feng Pan 2019Research2019,,1:6
3High-conductivity free-standing Li_(6)PS_(5)Cl/poly(vinylidene difluoride)composite solid electrolyte membranes for lithium-ion batteries显示文摘Bulk-type all-solid-state batteries(ASSBs)using sulfide solid electrolyte are considered as a promising alternative to commercial lithium-ion batteries owing to their high energy density and safety.However,cell energy density is often comparatively low due to use of a thick solid electrolyte separator and a lithium alloy as anode.For achieving high-performance ASSBs,creating a thin free-standing electrolyte with high-conductivity and good cycling stability against lithium anode is essential.In this work,we present Li_(6)PS_(5)Cl/poly(vinylidene difluoride)(LPSCl/PVDF)composite electrolytes prepared by a slurry method.The influence of the PVDF content on the microstructure,morphology,ionic conductivity and activation energy of the LPSCl/PVDF electrolytes is systematically investigated.Free-standing LPSCl/PVDF membranes with a thickness of 100-120 mm and a high ionic conductivity of about 1·10^(-3) S cm^(-1) at 25℃ are obtained.After adding PVDF to the LPSCl electrolyte,the cycling stability of the LPSCl electrolyte against lithium metal improves significantly.Therefore,LPSCl/PVDF composite electrolytes are promising candidates to be used in ASSBs.Shuo Wang Xue Zhang Sijie Liu Chengzhou Xin Chuanjiao Xue Felix Richter Liangliang Li Lizhen Fan Yuanhua Lin Yang Shen Jurgen Janek Ce-Wen Nan 2020Journal of Materiomics2020,6,1:5
4A dynamic simulation of the wheel–rail impact caused by a wheel flat using a 3D rolling contact model显示文摘A three-dimensional(3-D) wheel-rail rolling contact model with a wheel flat was built using commercial software Hypermesh, and the dynamic finite element simulation was conducted using LS-DYNA 3D/explicit code.Influences of the train speed, flat length and axle load on the vertical wheel-rail impact response were discussed,respectively. The results show that the maximum vertical wheel-rail impact force induced by the wheel flat is higher than that generated by the perfect wheel, and these two dynamic impact forces are much greater than the static axle load. Besides, the maximum von Mises equivalent stress and maximum equivalent plastic strain are observed on the wheel-rail contact surface, and both of them as well as the maximum wheel-rail impact force are sensitive to train speed, flat length and axle load.Liangliang Han Lin Jing Kai Liu 2017Journal of Modern Transportation2017,25,2:5
5Mining,characterization,and exploitation of EST-derived microsatellites in Gossypium barbadense显示文摘Simple sequence repeats(SSRs) have been widely applied as molecular markers in genetic studies.However,the number of expressed sequence tags(ESTs) and SSR markers from Gossypium barbadense is fewer than those from other cotton species.In this study,EST-SSR distribution from G.barbadense was characterized and new G.barbadense-derived EST-SSR markers were determined on the basis of the ESTs obtained by randomly sequencing 2 cDNA libraries associated with fiber development in G.barbadense.By mining 9697 non-redundant ESTs,a total of 638 SSR loci derived from 595 ESTs were observed.In G.barbadense,the frequency of ESTs containing SSRs was 6.13%,with an average of 1 SSR in every 10.4 kb of EST sequence.Furthermore,trinucleotide was found to be the most abundant repeat type among 2-6-nucleotide repeat types.It accounted for 26.6% of the total,followed by the hexanucleotide(26.0%) and pentanucleotide repeats(25.9%).Among all the repeat motifs,(AAG)n accounted for the highest proportion.EST-SSR primer pairs were developed using the Primer3 program,and the redundant primers were removed using the virtual PCR approach.As a result,380 non-redundant EST-SSR primer pairs were developed and used to detect polymorphisms between the mapping parents G.hirsutum 'TM-1' and G.barbadense 'Hai7124' for constructing linkage groups in cultivated allotetraploid cotton.Out of these,98(25.8%) primer pairs detected polymorphisms.Finally,95 polymorphic loci from 82 primer pairs were integrated into the backbone genetic map;of these,42 were mapped into the A subgenome and 53 into the D subgenome.The present work provided the foundation for constructing saturated genetic maps and conducting comparative genomic studies on different cotton species.LU YuanDa CAI CaiPing WANG Lei LIN ShaoYan ZHAO Liang TIAN LiangLiang LU JunHong ZHANG TianZhen GUO WangZhen 2010Chinese Science Bulletin2010,55,18:5
6Fluorescence spectroscopic studies of the effect of granular activated carbon adsorption on structural properties of dissolved organic matter fractions显示文摘这个工作在第二等的自河在溶解有机物( DOM )的荧光特征上调查了小粒的激活的碳吸附( GACA )的效果,借助于刺激排放矩阵( EEM )系列,荧光地区性的集成(星期五)方法,同步系列,在刺激在 500 nm 在波长 450 nm 定义为荧光排放紧张的比率到那的荧光索引(<潜水艇class=“ a-plus-plus ”>前)=通信的 370 nm ,和波长 t 在从北方废水处理工厂的第二等的自河的 DOM (沈阳,中国) 是用进 5 部分的 XAD 树脂的 fractionated:恐水病的酸(HPO -- 一) ,恐水病中立(HPO-N ) , transphilic 酸(TPI -- 一) , transphilic 中立(TPI-N ) 并且吸水的部分(HPI ) 。结果显示出那荧光灯在 HPO-N 和 TPI-N 的材料被 GACA 不太乐意地在另外的部分比那些移开。相对内容荧光灯在 HPO 的材料 -- 一, TPI -- 而那作为 GACA 的后果在 HPO-N 和 TPI-N 增加了, A 和 HPI 减少了。在所有 DOM 部分的多不的 aromatics 被 GACA 优先地吸收,与表示为文档的体积 DOM 比较。在另一方面,芳香的氨基酸的吸附和由 GACA 在同步系列展出荧光山峰的腐殖的像酸的 fluorophores 似乎依赖于 DOM 部分的酸 / 中立性质。所有五部分减少了由于 GACA 的荧光索引。GACA 导致了一减少 < 潜水艇 class= “ a-plus-plus ” > 为 HPO 的 0.5 价值 -- 一,增加 < 潜水艇 class= “ a-plus-plus ” > 为 HPO-N 的 0.5 价值, TPI -- A 和 HPI,并且一一致 < 潜水艇 class= “ a-plus-plus ” > 为 TPI-N 的 0.5 价值。Shuang XUE Qingliang ZHAO Liangliang WEI Xiujuan HUI Xiping MA Yingzi LIN 2012Frontiers of Environmental Science & Engineering2012,6,6:5
7A SNX10/V-ATPase pathway regulates ciliogenesis in vitro and in vivo显示文摘排序 nexins (SNX )phosphoinositide 有约束力的蛋白质在在 vitro 排序各种各样的膜蛋白质被含有,但是在里面他们的 vivo 功能仍然保持大部分未知。我们以前报导 SNX10 是 SNX 家庭基因的一个独特成员因为它在房间举办 vacuolation 活动。我们在这研究由 loss-of-function 试金调查 SNX10 的生物功能并且证明 SNX10 在有教养的房间为主要的睫的形成被要求。在 zebrafish, SNX10 为内脏的机关的左右的 patterning 在 Kupffer 的泡和必需品涉及 ciliogenesis。机械学地, SNX10 与复杂的 V-ATPase 交往并且指向它到 ciliogenesis 被开始的中心体。象 SNX10 一样, V-ATPase 在 vitro 并且在 vivo 调整 ciliogenesis 并且对 SNX10 那么 synergistically 做。我们进一步发现 SNX10 和 V-ATPase 调整 Rab8a 的睫的 trafficking,它是睫的膜扩展的一个批评管理者。这些结果识别为 ciliogenesis 是关键的一条 SNX10/V-ATPase-regulated 小囊的 trafficking 小径,并且表明通过在各种各样的机关的睫形成的规定, SNX10/V-ATPase 在早胚胎的开发期间起一个必要作用。Yanqun Chen Bin Wu Liangliang Xu Huapeng Li Jianhong Xia Wenguang Yin Zhuo Li Dawei Shi Song Li Shuo Lin Xiaodong Shu Duanqing Pei 2012Cell Research2012,22,2:4
8Plasma-electrochemical synthesis of europium doped cerium oxide nanoparticles显示文摘In the present study,a plasma-electrochemical method was demonstrated for the synthesis of europium doped ceria nanoparticles.Ce(NO3)3· 6H2O and Eu(NO3)3·5H2O were used as the starting materials and being dissolved in the distilled water as the electrolyte solution.The plasma-liquid interaction process was in-situ investigated by an optical emission spectroscopy,and the obtained products were characterized by complementary analytical methods.Results showed that crystalline cubic CeO2:Eu3+ nanoparticles were successfully obtained,with a particle size in the range from 30 to 60 nm.The crystal structure didn't change during the calcination at a temperature from 400℃ to 1000℃,with the average erystallite size being estimated to be 52 nm at 1000℃.Eu3+ ions were shown to be effectively and uniformly doped into the CeO2 lattices.As a result,the obtained nanophosphors emit apparent red color under the UV irradiation,which can be easily observed by naked eye.The photoluminescence spectrum further proves the downshift behavior of the obtained products,where characteristic 5Do → 7F1,2,3 transitions of Eu3+ ions had been detected.Due to the simple,flexible and environmental friendly process,this plasma-electrochemical method should have great potential for the synthesis of a series of nanophosphors,especially for bio-application purpose.Liangliang Lin Xintong Ma Sirui Li Marly Wouters Volker Hessel 2019Frontiers of Chemical Science and Engineering2019,13,3:3
9Rabies Virus Pseudotyped with CVS-N2C Glycoprotein as a Powerful Tool for Retrograde Neuronal Network Tracing显示文摘Efficient viral vectors for mapping and manipulating long-projection neuronal circuits are crucial in structural and functional studies of the brain. The SAD strain rabies virus with the glycoprotein gene deleted pseudotyped with the N2 C glycoprotein(SAD-RV(DG)-N2 C(G)) shows strong neuro-tropism in cell culture, but its in vivo efficiency for retrograde gene transduction and neuro-tropism have not been systematically characterized.We compared these features in different mouse brain regions for SAD-RV-N2 C(G) and two other widely-used retrograde tracers, SAD-RV(DG)-B19(G) and r AAV2-retro. We found that SAD-RV(DG)-N2 C(G) enhanced the infection efficiency of long-projecting neurons by^10 times but with very similar neuro-tropism, compared with SAD-RV(DG)-B19(G). On the other hand, SAD-RV(DG)-N2 C(G) had an infection efficiency comparable with r AAV2-retro, but a more restricted diffusion range, and broader tropism to different types and regions of longprojecting neuronal populations. These results demonstrate that SAD-RV(DG)-N2 C(G) can serve as an effective retrograde vector for studying neuronal circuits.Xutao Zhu Kunzhang Lin Qing Liu Xinpei Yue Huijie Mi Xiaoping Huang Xiaobin He Ruiqi Wu Danhao Zheng Dong Wei Liangliang Jia Weilin Wang Anne Manyande Jie Wang Zhijian Zhang Fuqiang Xu 2020Neuroscience Bulletin2020,36,3:2
10Enzymatically-degradable hydrogel coatings on titanium for bacterial infection inhibition and enhanced soft tissue compatibility via a self-adaptive strategy显示文摘Ideal percutaneous titanium implants request both antibacterial ability and soft tissue compatibility.ZnO structure constructed on titanium has been widely proved to be helpful to combat pathogen contamination,but the biosafety of ZnO is always questioned.How to maintain the remarkable antibacterial ability of ZnO and efficiently reduce the corresponding toxicity is still challenging.Herein,a hybrid hydrogel coating was constructed on the fabricated ZnO structure of titanium,and the coating was proved to be enzymatically-degradable when bacteria exist.Then the antibacterial activity of ZnO was presented.When under the normal condition(no bacteria),the hydrogel coating was stable and tightly adhered to titanium.The toxicity of ZnO was reduced,and the viability of fibroblasts was largely improved.More importantly,the hydrogel coating provided a good buffer zone for cell ingrowth and soft tissue integration.The curbed Zn ion release was also proved to be useful to regulate fibroblast responses such as the expression of CTGF and COL-I.These results were also validated by in vivo studies.Therefore,this study proposed a valid self-adaptive strategy for ZnO improvement.Under different conditions,the sample could present different functions,and both the antibacterial ability and soft tissue compatibility were finely preserved.Jin Leng Ye He Zhang Yuan Bailong Tao Ke Li Chuanchuan Lin Kun Xu Maowen Chen Liangliang Dai Xuemin Li Tony Jun Huang Kaiyong Cai 2021Bioactive Materials2021,6,12:2
11Augmented cellular uptake and homologous targeting of exosome-based drug loaded IOL for posterior capsular opacification prevention and biosafety improvement显示文摘Posterior capsular opacification(PCO),the most common complication after cataract surgery,is caused by the proliferation,migration and differentiation of residual lens epithelial cells(LECs)on the surface of the intraocular lens(IOL).Although drug-loaded IOLs have been successfully developed,the PCO prevention efficacy is still limited due to the lack of targeting and low bioavailability.In this investigation,an exosome-functionalized drug-loaded IOL was successfully developed for effective PCO prevention utilizing the homologous targeting and high biocompatibility of exosome.The exosomes derived from LECs were collected to load the anti-proliferative drug doxorubicin(Dox)through electroporation and then immobilized on the aminated IOLs surface through electrostatic interaction.In vitro experiments showed that significantly improved cellular uptake of Dox@Exos by LECs was achieved due to the targeting ability of exosome,compared with free Dox,thus resulting in superior anti-proliferation effect.In vivo animal investigations indicated that Dox@Exos-IOLs effectively inhibited the development of PCO and showed excellent intraocular biocompatibility.We believe that this work will provide a targeting strategy for PCO prevention through exosome-functionalized IOL.Siqing Zhu Huiying Huang Dong Liu Shimin Wen Liangliang Shen Quankui Lin 2022Bioactive Materials2022,7,9:1
12Dry friction damping mechanism of flexible microporous metal rubber based on cell group energy dissipation mechanism显示文摘Flexible microporous metal rubber (FMP-MR) is a high-damping material that dissipates energy by dry friction through internal spiral metal wires in contact with each other. However, the FMP-MR energy dissipation mechanism is not fully understood owing to its disordered grid interpenetrating structure. In this work, computer-aided preparation technology is used to accurately reconstruct the complex spiral network structure of FMP-MR multipoint random contact, and a cell group model with an energy dissipation mechanism is proposed to obtain the dynamic energy distribution of the contact friction in both space and time dimensions. By judging the effective contact point, a global displacement ablation phenomenon of hooked staggered porous materials is induced. The macro- and micro-equivalent frictions are introduced to effectively explain the characteristics of the strong energy dissipation in FMP-MR under fretting excitation. A real and effective damping hysteresis constitutive model is then constructed to dynamically capture the mapping relationship between the complex nonlinear topological structure effect of the materials and spatial random contact dry friction in real time. The results indicate that the contact behavior between turns of the FMP-MR wire follows a clear quasi-Gaussian distribution under an external load, forcing the topological results to change. The energy dissipation of the materials revealed peak energy consumption lagging behind the loading limit for a certain distance, which can be determined by the effective contact point and contact dry friction slip. The consistency between the quasi-static compression tests and constitutive curves of the model was quantitatively verified through residual analysis. The data demonstrated the differential behavior of the FMP-MR meso-structure to follow a phased growth law during loading with different action mechanisms in the guiding, main growth, and relaxation stages of the energy consumption displacement curve. In summary, these findings provide an acceptable theoretical basis for the damping energy consumption mechanism and lifetime prediction of FMP-MR.Liangliang SHEN Zhiying REN Jian XU Lin PAN Youxi LIN Hongbai BAI 2023Friction2023,11,2:1
13Late Early-Cretaceous Magma Mixing in the Langqi Island, Fujian Province, China: Evidences from Petrology, Geochemistry and Zircon Geochronology显示文摘The mafic enclaves from Mesozoic intermediate-acid magmatic rocks,widely developed along Fujian coast,are considered to be the results of large-scale crust-mantle interaction and magma mixing.In this paper,petrography,mineralogy,and geochemistry of granites and mafic microgranular enclaves(MMEs)in Langqi Island are studied to provide new information for tracing crust-mantle interaction.The zircon U-Pb dating results show that the Langqi rocks were formed at^101 Ma,which are metaluminous,enriched in silica and high-K calc-alkaline I-type granites.The enclaves have a typical magmatic structure,which is characterized by magma mixing between high-temperature basic magma and low-temperature acidic magma through injecting.The enclaves and host granites show a tendency to mixed major and trace elements,displaying a clear-cut contact relationship,which is indicative of coeval magmatism.The genesis of Langqi rocks is related to the extensional setting caused by the subduction of Paleo-Pacific Plate,and they are the results of mixing of subduction-related metasomatized mantle-derived mafic and induced crustal-melted granitic magma originating from partial melting of the crustal material.Liangliang Huang Liyuan Wang Hong-Rui Fan Musen Lin Wenhui Zhang 2020Journal of Earth Science2020,31,3:1
14Mechanisms for strong adsorption of tetracycline to carbon nanotubes: A corn parative study using activated carbon and graphite as adsorbents 显示文摘Ji Liangliang Chen Wei Duan Lin 2009Environ Sci Technol2009,43,:1
15SNX17 regulates Notch pathway and pancreas development through the retromer-dependent recycling of Jag1显示文摘Background:Notch is one of the most important signaling pathways involved in cell fate determination.Activation of the Notch pathway requires the binding of a membrane-bound ligand to the Notch receptor in the adjacent cell which induces proteolytic cleavages and the activation of the receptor.A unique feature of the Notch signaling is that processes such as modification,endocytosis or recycling of the ligand have been reported to play critical roles during Notch signaling,however,the underlying molecular mechanism appears context-dependent and often controversial.Results:Here we identified SNX17 as a novel regulator of the Notch pathway.SNX17 is a sorting nexin family protein implicated in vesicular trafficking and we find it is specifically required in the ligand-expressing cells for Notch signaling.Mechanistically,SNX17 regulates the protein level of Jag1a on plasma membrane by binding to Jag1a and facilitating the retromer-dependent recycling of the ligand.In zebrafish,inhibition of this SNX17-mediated Notch signaling pathway results in defects in neurogenesis as well as pancreas development.Conclusions:Our results reveal that SNX17,by acting as a cargo-specific adaptor,promotes the retromer dependent recycling of Jag1a and Notch signaling and this pathway is involved in cell fate determination during zebrafish neurogenesis and pancreas development.Wenguang Yin Dapeng Liu Nian Liu Liangliang Xu Song Li Shuo Lin Xiaodong Shu Duanqing Pei 2012Cell Regeneration2012,1,1:1
16Typical Microstructural Characteristics of Ti–5Al–5Mo–5V–3Cr–1Fe Metastable β Ti Alloy Forged in α + β Region显示文摘In this study,typical microstructural characteristics of a metastableβTi alloy(Ti–5Al–5Mo–5V–3Cr–1Fe)forged in a dual-phase region(strain of 54%at 820℃)were investigated in detail by the combined use of X-ray diff raction,energy dispersive spectroscopy,electron channeling contrast imaging and electron backscatter diff raction techniques.Results show that the microstructure of the forged alloy is composed of bulkαgrains,αplates andβmatrix.The bulkαgrains correspond to retained primaryαphase(αp,average grain size^2.4μm),while theαplates are secondaryαphase(αs,width^70 nm)precipitated from theβmatrix during air cooling.During forging,theβmatrix experiences dynamic recovery with many subgrains and signifi cant orientation gradients formed.Analyses of the orientation relationship between theαandβphases show that the Burgers orientation relationship is not maintained between someα_p andβphases,which should be related to thermal deformation-induced changes of their orientations.In contrast,all of theαs plates are found to maintain well the Burgers orientation relationship with theβphase.Zhiying Zheng Linjiang Chai Kang Xiang Weijiu Huang Yongfeng Wang Liangliang Liu Lin Tian 2020Acta Metallurgica Sinica(English Letters)2020,33,12:1
17Political Connections and the Cost of Bank Loans显示文摘JOEL F. HOUSTON LIANGLIANG JIANG CHEN LIN YUE MA 2014Journal of Accounting Research2014,,1:1
18The potential dependent electrochemical impedance spectroscopy and lithium diffusion kinetics of LiFePO 4显示文摘Lin Feng Xiaoping Xu Miao Shui Weidong Zheng Jie Shu Lei Hui Linxia Xu Liangliang Chen Yuanlong Ren 2014Solid State Ionics2014,,:1
19Political connections and the cost of bank loans 显示文摘Joel F Houston Liangliang Jiang Chen Lin 2012Journal of Ac- counting Research2012,38,2:1
203-75 Radiosensitizing Effects of miR-185 on Melanoma Cells显示文摘Melanoma is an aggressive malignancy with high metastasis and low survival rate, of which the incidence rate keeps increasing year by year worldwide while the therapeutic options are still limited up to now[1;2]. Melanoma is considered to be a relatively radioresistant tumor, and radiotherapy has an important role in its treatment, especially in patients with central nervous system metastases[3], so enhancement of cellular radiosensitivity by radiosensitizer is an efficient strategy to improve the outcome of radiotherapy.He Jinpeng Tian Ning Yang Yanli Jin Liangliang Feng Xiu Hua Junrui Lin Sulan Wang Bing Li He Wang Jufang 2015IMP & HIRFL Annual Report2015,,1:0
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