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42篇 您的检索式:作者名="Duo Ma"
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1Single-cell transcriptomic atlas of primate cardiopulmonary aging显示文摘Aging is a major risk factor for many diseases,especially in highly prevalent cardiopulmonary comorbidities and infectious diseases including Coronavirus Disease 2019(COVID-19).Resolving cellular and molecular mechanisms associated with aging in higher mammals is therefore urgently needed.Here,we created young and old non-human primate single-nucleus/cell transcriptomic atlases of lung,heart and artery,the top tissues targeted by SARS-CoV-2.Analysis of cell type-specific aging-associated transcriptional changes revealed increased systemic inflammation and compromised virus defense as a hallmark of cardiopulmonary aging.With age,expression of the SARS-CoV-2 receptor angiotensin-converting enzyme 2(ACE2)was increased in the pulmonary alveolar epithelial barrier,cardiomyocytes,and vascular endothelial cells.We found that interleukin 7(IL7)accumulated in aged cardiopulmonary tissues and induced ACE2 expression in human vascular endothelial cells in an NF-κB-dependent manner.Furthermore,treatment with vitamin C blocked IL7-induced ACE2 expression.Altogether,our findings depict the first transcriptomic atlas of the aged primate cardiopulmonary system and provide vital insights into age-linked susceptibility to SARS-CoV-2,suggesting that geroprotective strategies may reduce COVID-19 severity in the elderly.Shuai Ma Shuhui Sun Jiaming Li Yanling Fan Jing Qu Liang Sun Si Wang Yiyuan Zhang Shanshan Yang Zunpeng Liu Zeming Wu Sheng Zhang Qiaoran Wang Aihua Zheng Shuguang Duo Yang Yu Juan Carlos Izpisua Belmonte Piu Chan Qi Zhou Moshi Song Weiqi Zhang Guang-Hui Liu 2021Cell Research2021,31,4:10
2Evolution and protein interactions of AP2 proteins in Brassicaceae: Evidence linking development and environmental responses显示文摘Plants have evolved a large number of transcription factors(TF), which are enriched among duplicate genes,highlighting their roles in complex regulatory networks. The APETALA2/EREBP-like genes constitute a large plant TF family and participate in development and stress responses. To probe the conservation and divergence of AP2/EREBP genes,we analyzed the duplication patterns of this family in Brassicaceae and identified interacting proteins of representative Arabidopsis AP2/EREBP proteins. We found that many AP2/EREBP duplicates generated early in Brassicaceae history were quickly lost, but many others were retained in all tested Brassicaceae species, suggesting early functional divergence followed by persistent conservation. In addition,the sequences of the AP2 domain and exon numbers were highly conserved in rosids. Furthermore, we used 16 A.thaliana AP2/EREBP proteins as baits in yeast screens and identified 1,970 potential AP2/EREBP-interacting proteins,with a small subset of interactions verified in planta. Many AP2 genes also exhibit reduced expression in an antherdefective mutant, providing a possible link to developmental regulation. The putative AP2-interacting proteins participate in many functions in development and stress responses,including photomorphogenesis, flower development, pathogenesis, drought and cold responses, abscisic acid and auxin signaling. Our results present the AP2/EREBP evolution patterns in Brassicaceae, and support a proposed interaction network of AP2/EREBP proteins and their putative interacting proteins for further study.Liping Zeng Yue Yin Chenjiang You Qianli Pan Duo Xu Taijie Jin Bailong Zhang Hong Ma 2016Journal of Integrative Plant Biology2016,58,6:3
3Intelligent Segmentation and Measurement Model for Asphalt Road Cracks Based on Modified Mask R-CNN Algorithm显示文摘Nowadays, asphalt road has dominated highways around the world. Among various defects of asphalt road, crackshave been paid more attention, since cracks often cause major engineering and personnel safety incidents. Currentmanual crack inspection methods are time-consuming and labor-intensive, and most segmentation methods cannot detect cracks at the pixel level. This paper proposes an intelligent segmentation and measurement model basedon the modified Mask R-CNN algorithm to automatically and accurately detect asphalt road cracks. The modelproposed in this paper mainly includes a convolutional neural network (CNN), an optimized region proposalnetwork (RPN), a region of interest (RoI) Align layer, a candidate area classification network and a Mask branch offully convolutional network (FCN). The ratio and size of anchors in the RPN are adjusted to improve the accuracyand efficiency of segmentation. Soft non-maximum suppression (Soft-NMS) algorithm is developed to improvethe segmentation accuracy. A dataset including 8,689 images (512× 512 pixels) of asphalt cracks is established andthe road crack is manually marked. Transfer learning is used to initialize the model parameters in the trainingprocess. To optimize the model training parameters, multiple comparison experiments are performed, and the testresults show that the mean average precision (mAP) value and F1-score of the optimal trained model are 0.952 and0.949. Subsequently, the robustness verification test and comparative test of the trained model are conducted andthe topological features of the crack are extracted. Then, the damage area, length and average width of the crackare measured automatically and accurately at pixel level. More importantly, this paper develops an automatic crackdetection platform for asphalt roads to automatically extract the number, area, length and average width of cracks,which can significantly improve the crack detection efficiency for the road maintenance industry.Jiaxiu Dong Jianhua Liu Niannian Wang Hongyuan Fang Jinping Zhang Haobang Hu Duo Ma 2021Computer Modeling in Engineering & Sciences2021,,8:3
4High H_(2) selective performance of Ni-Fe-Ca/H-Al catalysts for steam reforming of biomass and plastic显示文摘The development of a selective catalyst for the conversion of biomass and plastics into H2by steam reforming can combat the energy crisis and global warming.In this work,support Ni-Fe-Ca/H-Al bifunctional catalysts were prepared by loading Ni and Fe into pretreatment CaO/Al_(2)O_(3)(Ca/H-Al)carriers and showed high catalytic activity for the steam reforming of biomass and plastic.Moreover,the idea of bidirectional degradation was exploited to strengthen the pyrolysis of plastic with a high H/C and biomass with a high O/C.Interestingly,the products presented high H2selective(1302.10 m L/g)and low CO_(2)yield(120.23 m L/g)in 7Ni-5Fe-Ca/H-Al(2:4)catalyst compared with current reports.Here,the abundant oxygen vacancies(Ov)in the H-Al carrier exhibited an electron-deficient nature,providing active sites for anchoring Ni O.Meanwhile,Ni O interacted with Ca_(2)Fe_(2)O_(5)to produce more defective Ovsites,which stabilized the NiO particles in the 7Ni-5Fe-Ca/H-Al(2:4)catalyst,and the interaction between the catalyst and the carrier was enhanced,leading to the reduction of weakly basic sites,this property promoted the strong adsorption of CO_(2)and H2O by the catalyst,contributing to the enhancement of efficient steam conversion and the promotion of conversion of by-products to H2.Notably,7Ni-5Fe-Ca/H-Al(2:4)catalysts maintained structural integrity after regeneration and exhibited excellent regenerability in H2selection and CO_(2)adsorption.The work provides a new idea for the study of efficient H2production from steam reforming of biomass and plastics.Jin Deng Lingshuai Meng Duo Ma Yujie Zhou Xianyang Wang Xiaodong Luo Shenfu Yuan 2023Journal of Energy Chemistry2023,,5:2
5Frequent RNF43 mutation contributes to moderate activation of Wnt signaling in colorectal signet-ring cell carcinoma显示文摘Dear Editor,Signet-ring cell carcinoma(SRCC)is a rare subtype of colorectal cancer(CRC)characterized histologically by the accumulation of mucins in the cytoplasm and displacement of nuclei to the cellular periphery,accounting for about 1%CRC(Fig.S1A)(Borger et al.,2007).Compare to common subtypes of CRC,such as adenocarcinoma(AC)and mucinous adenocarcinoma(MAC),SRCC is associated with aggressive behaviors and younger age at presentation(Kang et al.,2005;Sung et al.,2008;Nitsche et al.,2013;Hugen et al.,2014;Inamura et al.,2015).A retrospective analysis of CRC patient's data at Fudan University Shanghai Cancer Center(FUSCC)also indicated a worse overall and disease-free survival of SRCC patients(Fig.S1B and S1C,Table S1).Yaqi Li Jian Li Renjie Wang Long Zhang Guoxiang Fu Xueying Wang Yebin Wang Chuantao Fang Dandan Zhang Duo Du Xiaoji Ma Mengxue Pan Qiang Guo Xiaoya Xu Xiang Hu Yi Zhou Shaobo Mo Huijun Wang Jianjun Gao Shenglin Huang Yun Liu Sanjun Cai Guoqiang Hua Junjie Peng Fa-Xing Yu 2020Protein & Cell2020,11,4:2
6Dietary ellagic acid supplementation attenuates intestinal damage and oxidative stress by regulating gut microbiota in weanling piglets显示文摘Intestinal oxidative stress triggers gut microbiota dysbiosis,which is involved in the etiology of postweaning diarrhea and enteric infections.Ellagic acid(EA)can potentially serve as an antioxidant supplement to facilitate weaning transition by improving intestinal oxidative stress and gut microbiota dysbiosis.Therefore,we aimed to investigate the effects of dietary EA supplementation on the attenuation of intestinal damage,oxidative stress,and dysbiosis of gut microbiota in weanling piglets.A total of126 piglets were randomly assigned into 3 groups and treated with a basal diet and 2 m L saline orally(Ctrl group),or the basal diet supplemented with 0.1%EA and 2 m L saline orally(EA group),or the basal diet and 2 m L fecal microbiota suspension from the EA group orally(FEA group),respectively,for 14 d.Compared with the Ctrl group,EA group improved growth performance by increasing average daily feed intake and average daily weight gain(P<0.05)and decreasing fecal scores(P<0.05).EA group also alleviated intestinal damage by increasing the tight junction protein occludin(P<0.05),villus height,and villus height-to-crypt depth ratio(P<0.05),while decreasing intestinal epithelial apoptosis(P<0.05).Additionally,EA group enhanced the jejunum antioxidant capacity by increasing the total antioxidant capacity(P<0.01),catalase(P<0.05),and glutathione/oxidized glutathione(P<0.05),but decreased the oxidative metabolite malondialdehyde(P<0.05)compared to the Ctrl group.Compared with the Ctrl group,EA and FEA groups increased alpha diversity(P<0.05),enriched beneficial bacteria(Ruminococcaceae and Clostridium ramosum),and increased metabolites short-chain fatty acids(P<0.05).Correspondingly,FEA group gained effects comparable to those of EA group on growth performance,intestinal damage,and intestinal antioxidant capacity.In addition,the relative abundance of bacteria shifted in EA and FEA groups was significantly related to the examined indices(P<0.05).Overall,dietary EA supplementation could improve growth performance and attenuate intestinal damage and oxidative stress by regulating the gut microbiota in weanling piglets.Wenxia Qin Baoyang Xu Yuwen Chen Wenbo Yang Yunzheng Xu Juncheng Huang Ting Duo Yihua Mao Guozong Zhou Xianghua Yan Libao Ma 2022Animal Nutrition2022,,4:2
7Shape control technology during electrochemical synthesis of gold nanoparticles显示文摘Gold nanoparticles with different shapes and sizes were prepared by adding gold precursor (HAuCl4) to an electrolyzed aqueous solution of poly(N-vinylpyrrolidone) (PVP) and KNO3 , which indicates the good reducing capacity of the PVP-containing solution after being treated by electrolysis. Using a catholyte and an anolyte as the reducing agents for HAuCl4 , respectively, most gold nanoparticles were spherical particles in the former case but plate-like particles in the latter case. The change in the pH value of electrolytes caused by the electrolysis of water would be the origin of the differences in shape and morphology of gold nanoparticles. A hypothesis of the H+ or OH- catalyzed PVP degradation mechanism was proposed to interpret why the pH value played a key role in determining the shape or morphology of gold nanoparticles. These experiments open up a new method for effectively controlling the shape and morphology of metal nanoparticles by using electrochemical methods.Xiu-yu Liu Cong-ying Cui Ying-wen Cheng Hou-yi Ma Duo Liu 2013International Journal of Minerals,Metallurgy and Materials2013,20,5:2
8Pre-ribosomal RNA reorganizes DNA damage repair factors in nucleus during meiotic prophase and DNA damage response显示文摘In response to DNA double strand breaks(DSBs),DNA damage repair factors are recruited to DNA lesions and form nuclear foci.However,the underlying molecular mechanism remains largely elusive.Here,by analyzing the localization of DSB repair factors in the XY body and DSB foci,we demonstrate that pre-ribosomal RNA(pre-rRNA)mediates the recruitment of DSB repair factors around DNA lesions.Pre-rRNA exists in the XY body,a DSB repair hub,during meiotic prophase,and colocalizes with DSB repair factors,such as MDC1,BRCA1 and TopBP1.Moreover,pre-rRNA-associated proteins and RNAs,such as ribosomal protein subunits,RNase MRP and snoRNAs,also localize in the XY body.Similar to those in the XY body,pre-rRNA and ribosomal proteins also localize at DSB foci and associate with DSB repair factors.RNA polymerase I inhibitor treatment that transiently suppresses transcription of rDNA but does not affect global protein translation abolishes foci formation of DSB repair factors as well as DSB repair.The FHA domain and PST repeats of MDC1 recognize pre-rRNA and mediate phase separation of DSB repair factors,which may be the molecular basis for the foci formation of DSB repair factors during DSB response.Xiaochen Gai Di Xin Duo Wu Xin Wang Linlin Chen Yiqing Wang Kai Ma Qilin Li Peng Li Xiaochun Yu 2022Cell Research2022,32,3:1
9Driving and tilt-hovering-An agile and manoeuvrable aerial vehicle with tiltable rotors显示文摘Driving and tilt-hovering help unmanned aerial vehicles extend their time of operation and the visible range of the equipped sensors.Standard quadrotors are underactuated,whose translational and rotational motions are strongly coupled.As a result,it is impossible to maintain the attitude invariably while changing position.Meanwhile,larger flying speed results in greater air resistance,which is also not desirable.A novel aerial platform with tiltable rotors is proposed.Compared with standard quadrotors,the aerial vehicle has three special capabilities:vector-flying,tilt-hovering,and driving.The platform consists of two tilting-axes to change the direction of thrusts with respect to the aircraft body.To guarantee flexible manoeuvres,a geometric tracking control scheme that adapts on the fly to the thrust vectoring is exploited.Manoeuvrability of the proposed vehicle in different manoeuvres is demonstrated,such as flight with vectoring thrust that can reduce the flight resistance,tilt-hovering expanding the reachable set of the equipped sensors.The prototype equipped with an electromechanical controller is constructed,and several associated preliminary experiments are performed.The feasibility of the mechanical design and the geometric control strategy are demonstrated.Binbin Li Lei Ma Duo Wang Yongkui Sun 2021IET Cyber-Systems and Robotics2021,3,2:1
10A mouse muscle-adapted enterovirus 71 strain with increased virulence in mice 显示文摘Wang W Duo J LiuJ Ma C Zhang L Wei Q Qin C 2011Microbes Infect2011,13,10:1
11Angiotensin II induces type I collagen gene expression in human dermal fibroblasts through an AP-1/TGF-β1-dependent pathway显示文摘Hong-Tai Tang Da-Sheng Cheng Yi-Tao Jia Dao-Feng Ben Bing Ma Kai-Yang Lv Duo Wei Zhi-Yong Sheng Zhao-Fan Xia 2009Biochemical and Biophysical Research Communications2009,,3:1
12Nicotinamide mononucleotide improves spermatogenic function in streptozotocin-induced diabetic mice via modulating the glycolysis pathway显示文摘Spermatogenic dysfunction is one of the major secondary complications of diabetes;however,the underlying mechanisms remain ill-defined,and there is no available drug or strategy for the radical treatment of diabetic spermatogenic dysfunction.Therefore,the objective of this study is to investigate the protective effects of nicotinamide mononucleotide(NMN)on testicular spermatogenic function in streptozotocin(STZ)-induced diabetic mice.The results show that oral administration of NMN significantly increases the body and testis weight and the number of sperms.Moreover,the abnormal sperm count and the rate of sperm malformation are significantly decreased compared with the saline-treated diabetic mice.Histological analysis reveals that NMN treatment significantly increases the area and diameter of seminiferous tubules,accompanied by an increased number of spermatogenic cells and sperms.Immunohistochemistry and qRT-PCR results show that NMN increases Bcl-2 expression and decreases Bax expression in the testis.NMN also increases the protein expression of Vimentin and the mRNA expressions of WT1 and GATA4.In addition,qRT-PCR,western blot analysis and immunohistochemistry results also show that NMN increases the expressions of glycolysis-related rate-limiting enzymes including HK2,PKM2,and LDHA.In summary,this study demonstrates the protective effects of NMN on the testis in an STZ-induced diabetic mice model.NMN exerts its protective effects via reducing spermatogenic cell apoptosis by regulating glycolysis of Sertoli cells in diabetic mice.This study provides an experimental basis for the future clinical application of NMN in diabetes-induced spermatogenicdysfunction.Duo Ma Linlin Hu Jinyuan Wang Min Luo Aihong Liang Xiaocan Lei Biyun Liao Meixiang Li Ming Xie Haicheng Li Yiwei Gong Dan Zi Xiangrun Li Xi Chen Xucai Liao 2022Acta Biochimica et Biophysica Sinica2022,54,9:1
13Krüppel-like factor 7 attenuates hippocampal neuronal injury after traumatic brain injury显示文摘Our previous study has shown that the transcription factor Krüppel-like factor 7(KLF7) promotes peripheral nerve regeneration and motor function recovery after spinal cord injury.KLF7 also participates in traumatic brain injury,but its regulatory mechanisms remain poorly understood.In the present study,an HT22 cell model of traumatic brain injury was established by stretch injury and oxygenglucose deprivation.These cells were then transfected with an adeno-associated virus carrying KLF7(AAV-KLF7).The results revealed that,after stretch injury and oxygen-glucose deprivation,KLF7 greatly reduced apoptosis,activated caspase-3 and lactate dehydrogenase,downregulated the expression of the apoptotic markers B-cell lymphoma 2(Bcl-2)-associated X protein(Bax) and cleaved caspase-3,and increased the expression of βIII-tubulin and the antiapoptotic marker Bcl-2.Furthermore,KLF7 overexpression upregulated Janus kinase 2(JAK2) and signal transducer and activator of transcription 3(STAT3) phosphorylation in HT22 cells treated by stretch injury and oxygenglucose deprivation.Immunoprecipitation assays revealed that KLF7 directly participated in the phosphorylation of STAT3.In addition,treatment with AG490,a selective inhibitor of JAK2/STAT3,weakened the protective effects of KLF7.A mouse controlled cortical impact model of traumatic brain injury was then established.At 30 minutes before modeling,AAV-KLF7 was injected into the ipsilateral lateral ventricle.The protein and m RNA levels of KLF7 in the hippocampus were increased at 1 day after injury and recovered to normal levels at 3 days after injury.KLF7 reduced ipsilateral hippocampal atrophy,decreased the injured cortex volume,downregulated Bax and cleaved caspase-3 expression,and increased the number of 5-bromo-2'-deoxyuridine-positive neurons and Bcl-2 protein expression.Moreover,KLF7 transfection greatly enhanced the phosphorylation of JAK2 and STAT3 in the ipsilateral hippocampus.These results suggest that KLF7 may protect hippocampal neurons after traumatic brain injury through activation of the JAK2/STAT3 signaling pathway.The study was approved by the Institutional Review Board of Mudanjiang Medical University,China(approval No.mdjyxy-2018-0012) on March 6,2018.Wen-Yuan Li Xiu-Mei Fu Zhen-Dong Wang Zhi-Gang Li Duo Ma Ping Sun Gui-Bo Liu Xiao-Feng Zhu Ying Wang 2022Neural Regeneration Research2022,17,3:1
14Effects of silkworm pupa protein on apoptosis and energy metabolism in human colon cancer DLD-1 cells显示文摘Objective:To investigate the effects of silkworm pupa(Bombyx mori) protein(SPP) on cell proliferation,apoptosis and energy metabolism in human colon cancer cells DLD-1.Methods:CCK-8 was used to detect cell proliferation rate after 72 h of cell culture for the control group(normal cultured DLD-1 cells) and SPP dose groups;Annexin-V/PI was applied to observe cell apoptosis;XFe24 Extracellular Flux Analyzer was used to detect cell mitochondrial respiratory function and glycolytic function.Results:Comparing with the control,SPP significantly inhibited the proliferation of DLD-1 cells with all the dosage tested(P <0.01);flow cytometry showed that SPP significantly promoted apoptosis(P<0.05).Additionally,SPP could significantly inhibited mitochondrial metabolism and glycolysis of DLD-1 cells and decreased cell energy metabolism in all groups treated with different doses.Conclusion:SPP can cause oxidative damage,promote apoptosis,and reduce mitochondrial respiratory and glycolysis rate in colon cancer DLD-1 cells,which reveals that SPP has the potential to serve as the anti-cancer drugs in the future,but further experimental evidence is needed.Xiaojiao Ji Jing Wang Aijin Ma Duo Feng Yue He Wenjie Yan 2022Food Science and Human Wellness2022,11,5:1
15A Hu sheep genome with the first ovine Y chromosome reveal introgression history after sheep domestication显示文摘The Y chromosome plays key roles in male fertility and reflects the evolutionary history of paternal lineages.Here,we present a de novo genome assembly of the Hu sheep with the first draft assembly of ovine Y chromosome(o MSY),using nanopore sequencing and Hi-C technologies.The o MSY that we generated spans 10.6 Mb from which 775 Y-SNPs were identified by applying a large panel of whole genome sequences from worldwide sheep and wild Iranian mouflons.Three major paternal lineages(HY1a,HY1b and HY2)were defined across domestic sheep,of which HY2 was newly detected.Surprisingly,HY2 forms a monophyletic clade with the Iranian mouflons and is highly divergent from both HY1a and HY1b.Demographic analysis of Y chromosomes,mitochondrial and nuclear genomes confirmed that HY2 and the maternal counterpart of lineage C represented a distinct wild mouflon population in Iran that diverge from the direct ancestor of domestic sheep,the wild mouflons in Southeastern Anatolia.Our results suggest that wild Iranian mouflons had introgressed into domestic sheep and thereby introduced this Iranian mouflon specific lineage carrying HY2 to both East Asian and Africa sheep populations.Ran Li Peng Yang Ming Li Wenwen Fang Xiangpeng Yue Hojjat Asadollahpour Nanaei Shangquan Gan Duo Du Yudong Cai Xuelei Dai Qimeng Yang Chunna Cao Weidong Deng Sangang He Wenrong Li Runlin Ma Mingjun Liu Yu Jiang 2021Science China(Life Sciences)2021,64,7:1
16Photocatalysis of PbS quantum dots in a quantum dot-sensitized solar cell: photovoltaic performance and characteristics显示文摘MA Bei Bei WANG Li Duo DONG Hao Peng 2011Phys Chem Chem Phys2011,13,3:1
17Distribution, sources, and potential risk of polycyclic aromatic hydrocarbons (PAHs) in drinking water resources from Henan Province in middle of China显示文摘Ying-ge Ma Jin-ping Cheng Fei Jiao Ke-xin Duo Zheng Rong Ming Li Wen-hua Wang 20082008 (1-3)2008,,1:1
18Highly-efficient and autocatalytic reduction of NaHCO_3 into formate by in situ hydrogen from water splitting with metal/metal oxide redox cycle显示文摘The Earth's sustainable development is threatened by the increasing atmospheric CO_2 level which can be attributed to the imbalance of CO_2 due to the rapid consumption of fossil fuels caused by human activities and the slow absorption and conversion of CO_2 by nature. One of the efficient methods for reconstructing the balance of CO_2 should involve the rapid conversion of CO_2 into fuels and chemicals.The hydrogenation of CO_2 with gaseous hydrogen is currently considered to be the most commercially feasible synthetic route, however, the supply of safe and economical hydrogen sources poses a significant challenge to up-scaling application. Direct utilization of hydrogen from dissociation of water, the most abundant, cheap and clean hydrogen resource, for the reduction of CO_2 would be one of the most promising approaches for CO_2 utilization. This paper provides an overview of the current advances in research on highly efficient reduction of CO_2 or NaHCO_3, a representative compound of CO_2, into formic acid/formate by in situ hydrogen from water dissociation with a metal/metal oxide redox cycle under mild hydrothermal conditions.Guodong Yao Jia Duo Binbin Jin Heng Zhong Lingyun Lyu Zhuang Ma Fangming Jin 2017Journal of Energy Chemistry2017,26,5:1
19Metformin synergistically enhances antitumor activity of histone deacetylase in- hibitor trichostatin a against osteosarcoma cell line 显示文摘Duo J Ma Y Wang G 2013DNA Cell Biol2013,32,4:1
20Two genetic variants of CD38 in subjects with autism spectrum disorder and controls显示文摘Toshio Munesue Shigeru Yokoyama Kazuhiko Nakamura Ayyappan Anitha Kazuo Yamada Kenshi Hayashi Tomoya Asaka Hong-Xiang Liu Duo Jin Keita Koizumi Mohammad Saharul Islam Jian-Jun Huang Wen-Jie Ma Uh-Hyun Kim Sun-Jun Kim Keunwan Park Dongsup Kim Mitsuru Kikuc 2010Neuroscience Research2010,,2:1
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