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50 publications found

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Group #2

Matched potential author: Weihua Guo - author of 1 items
TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Botulinum toxin A improves adipose tissue engraftment by promoting cell proliferation, adipogenesis and angiogenesis[1]Qi Tang, [2]Chang Chen, [3]Xiaqi Wang, [4]Wei Li, [5]Yan Zhang, [6]Muyao Wang, [7]Wei Jing, [8]Hang Wang, [9]Weihua Guo, [10]Weidong Tian [Full author list]International Journal of Molecular Medicine [missing]DOI: 10.3892/IJMM.2017.3073 [ORCID]
PubMed: 28731141 [ORCID]
adipogenesis [missing]2017-07-19
Bone marrow mesenchymal stem cells combine with Treated dentin matrix to build biological root[1]Shiwei Luo, [2]Fei Pei, [3]Wen Zhang, [4]Weihua Guo, [5]Rui Li, [6]Wei He, [7]Weidong Tian [Full author list]Scientific Reports [missing]DOI: 10.1038/SREP44635 [ORCID]
PubMed: 28401887 [ORCID]
mesenchymal stem cell [missing]2017-04-12
Maternal diabetes modulates dental epithelial stem cells proliferation and self-renewal in offspring through apurinic/apyrimidinicendonuclease 1-mediated DNA methylation[1]Guoqing Chen, [2]Jie Chen, [3]Zhiling Yan, [4]Ziyue Li, [5]Mei Yu, [6]Weihua Guo, [7]Weidong Tian [Full author list]Scientific Reports [missing]DOI: 10.1038/SREP40762 [ORCID]
PubMed: 28094306 [ORCID]
DNA methylation [missing]2017-01-17Weihua Guo (Q96229166; 1 items)
Bcl11b regulates enamel matrix protein expression and dental epithelial cell differentiation during rat tooth development[1]Ziyue Li, [2]Guoqing Chen, [3]Yaling Yang, [4]Weihua Guo, [5]Weidong Tian [Full author list]Molecular Medicine Reports [missing]DOI: 10.3892/MMR.2016.6030 [ORCID]
PubMed: 27959403 [ORCID]
cell differentiation [missing]2016-12-12Weihua Guo (Q96229166; 1 items)
DNA Demethylation Rescues the Impaired Osteogenic Differentiation Ability of Human Periodontal Ligament Stem Cells in High Glucose[1]Zhi Liu, [2]Tian Chen, [3]Wenhua Sun, [4]Zongyi Yuan, [5]Mei Yu, [6]Guoqing Chen, [7]Weihua Guo, [8]Jingang Xiao, [9]Weidong Tian [Full author list]Scientific Reports [missing]DOI: 10.1038/SREP27447 [ORCID]
PubMed: 27273319 [ORCID]
2016-06-08Weihua Guo (Q96229166; 1 items)
Cytoskeletal binding proteins distinguish cultured dental follicle cells and periodontal ligament cells[1]Jie Li, [2]Hui Li, [3]Ye Tian, [4]Yaling Yang, [5]Guoqing Chen, [6]Weihua Guo, [7]Weidong Tian [Full author list]Experimental Cell Research [missing]DOI: 10.1016/J.YEXCR.2015.12.011 [ORCID]
PubMed: 26708290 [ORCID]
cytoskeleton [missing]2015-12-18Weihua Guo (Q96229166; 1 items)
Tumorigenicity analysis of heterogeneous dental stem cells and its self-modification for chromosome instability[1]Zhaosong Meng, [2]Guoqing Chen, [3]Jinlong Chen, [4]Bo Yang, [5]Mei Yu, [6]Lian Feng, [7]Zongting Jiang, [8]Weihua Guo, [9]Weidong Tian [Full author list]Cell Cycle [missing]DOI: 10.1080/15384101.2015.1036204 [ORCID]
PubMed: 26322910 [ORCID]
2015-08-31Weihua Guo (Q96229166; 1 items)
A therapeutic strategy for spinal cord defect: human dental follicle cells combined with aligned PCL/PLGA electrospun material[1]Xinghan Li, [2]Chao Yang, [3]Lei Li, [4]Jie Xiong, [5]Li Xie, [6]Bo Yang, [7]Mei Yu, [8]Lian Feng, [9]Zongting Jiang, [10]Weihua Guo, [11]Weidong Tian [Full author list]BioMed Research International [missing]DOI: 10.1155/2015/197183 [ORCID]
PubMed: 25695050 [ORCID]
2015-01-28Weihua Guo (Q96229166; 1 items)
Expression and roles of syndecan-4 in dental epithelial cell differentiation[1]Zhiling Yan, [2]Guoqing Chen, [3]Yaling Yang, [4]Liang Sun, [5]Zongting Jiang, [6]Lian Feng, [7]Mei Yu, [8]Weihua Guo, [9]Weidong Tian [Full author list]International Journal of Molecular Medicine [missing]DOI: 10.3892/IJMM.2014.1910 [ORCID]
PubMed: 25174688 [ORCID]
cell differentiation [missing]2014-08-19Weihua Guo (Q96229166; 1 items)
The potential of dental stem cells differentiating into neurogenic cell lineage after cultivation in different modes in vitro[1]Chao Yang, [2]Liang Sun, [3]Xinghan Li, [4]Li Xie, [5]Mei Yu, [6]Lian Feng, [7]Zongting Jiang, [8]Weihua Guo, [9]Weidong Tian [Full author list]Cellular Reprogramming [missing]DOI: 10.1089/CELL.2014.0026 [ORCID]
PubMed: 25072651 [ORCID]
2014-07-29
Comparison of odontogenic differentiation of human dental follicle cells and human dental papilla cells[1]Lijuan Guo, [2]Jie Li, [3]Xiangchen Qiao, [4]Mei Yu, [5]Wei Tang, [6]Hang Wang, [7]Weihua Guo, [8]Weidong Tian [Full author list]PLOS One [missing]DOI: 10.1371/JOURNAL.PONE.0062332 [ORCID]
PubMed: 23620822 [ORCID]
2013-04-19Weihua Guo (Q96229166; 1 items)
Tooth root regeneration using dental follicle cell sheets in combination with a dentin matrix - based scaffold[1]Bo Yang, [2]Gang Chen, [3]Jie Li, [4]Qing Zou, [5]Dan Xie, [6]Yali Chen, [7]Hang Wang, [8]Xiaohui Zheng, [9]Jie Long, [10]Wei Tang, [11]Weihua Guo, [12]Weidong Tian [Full author list]Biomaterials [missing]DOI: 10.1016/J.BIOMATERIALS.2011.11.074 [ORCID]
PubMed: 22192537 [ORCID]
2011-12-20

Group #3

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Optimization algorithm based characterization scheme for tunable semiconductor lasers[1]Quanan Chen, [2]Gonghai Liu, [3]Qiaoyin Lu, [4]Weihua Guo [Full author list]Optics Express [missing]DOI: 10.1364/OE.24.020982 [ORCID]
PubMed: 27607701 [ORCID]
semiconductor [missing]; optimization algorithm [missing]2016-09-01
Design and simulation of two-section DFB lasers with short active-section lengths[1]Gongyuan Zhao, [2]Junqiang Sun, [3]Yanping Xi, [4]Dingshan Gao, [5]Qiaoyin Lu, [6]Weihua Guo [Full author list]Optics Express [missing]DOI: 10.1364/OE.24.010590 [ORCID]
PubMed: 27409881 [ORCID]
2016-05-01
Theory and simulation of multi-channel interference (MCI) widely tunable lasers[1]Quanan Chen, [2]Qiaoyin Lu, [3]Weihua Guo [Full author list]Optics Express [missing]DOI: 10.1364/OE.23.018040 [ORCID]
PubMed: 26191863 [ORCID]
2015-07-01
Improved performance of tunable single-mode laser array based on high-order slotted surface grating[1]Azat Abdullaev, [2]Qiaoyin Lu, [3]Weihua Guo, [4]Michael J Wallace, [5]Marta Nawrocka, [6]Frank Bello, [7]Aaron Benson, [8]James O'Callaghan, [9]John F. Donegan [Full author list]Optics Express [missing]DOI: 10.1364/OE.23.012072 [ORCID]
PubMed: 25969295 [ORCID]
2015-05-01
Single mode lasers based on slots suitable for photonic integration[1]Qiaoyin Lu, [2]Weihua Guo, [3]Marta Nawrocka, [4]Azat Abdullaev, [5]Chris Daunt, [6]James O'Callaghan, [7]Michael Lynch, [8]Vincent Weldon, [9]Frank Peters, [10]John F. Donegan [Full author list]Optics Express [missing]DOI: 10.1364/OE.19.00B140 [ORCID]
PubMed: 22274010 [ORCID]
2011-12-01

Group #5

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Synergizing 13C Metabolic Flux Analysis and Metabolic Engineering for Biochemical Production[1]Weihua Guo, [2]Jiayuan Sheng, [3]Xueyang Feng [Full author list]Advances in biochemical engineering/biotechnology [missing]DOI: 10.1007/10_2017_2 [ORCID]
PubMed: 28424826 [ORCID]
2017-04-20
Mini-review: In vitro Metabolic Engineering for Biomanufacturing of High-value Products[1]Weihua Guo, [2]Jiayuan Sheng, [3]Xueyang Feng [Full author list]Computational and Structural Biotechnology Journal [missing]DOI: 10.1016/J.CSBJ.2017.01.006 [ORCID]
PubMed: 28179978 [ORCID]
2017-01-19
Investigating strain dependency in the production of aromatic compounds in Saccharomyces cerevisiae[1]Miguel Suástegui, [2]Weihua Guo, [3]Xueyang Feng, [4]Zengyi Shao [Full author list]Biotechnology and Bioengineering [missing]DOI: 10.1002/BIT.26037 [ORCID]
PubMed: 27317047 [ORCID]
Saccharomyces cerevisiae [missing]2016-06-30
OM-FBA: Integrate Transcriptomics Data with Flux Balance Analysis to Decipher the Cell Metabolism[1]Weihua Guo, [2]Xueyang Feng [Full author list]PLOS One [missing]DOI: 10.1371/JOURNAL.PONE.0154188 [ORCID]
PubMed: 27100883 [ORCID]
transcriptome [missing]; transcriptomics [missing]2016-04-21
Metabolic engineering of Saccharomyces cerevisiae to produce 1-hexadecanol from xylose[1]Weihua Guo, [2]Jiayuan Sheng, [3]Huimin Zhao, [4]Xueyang Feng [Full author list]Microbial Cell Factories [missing]DOI: 10.1186/S12934-016-0423-9 [ORCID]
PubMed: 26830023 [ORCID]
biotechnology [missing]; microbiology [missing]; Saccharomyces cerevisiae [missing]; metabolic engineering [missing]2016-02-01
Investigate the Metabolic Reprogramming of Saccharomyces cerevisiae for Enhanced Resistance to Mixed Fermentation Inhibitors via 13C Metabolic Flux Analysis[1]Weihua Guo, [2]Yingying Chen, [3]Na Wei, [4]Xueyang Feng [Full author list]PLOS One [missing]DOI: 10.1371/JOURNAL.PONE.0161448 [ORCID]
PubMed: 27532329 [ORCID]
Saccharomyces cerevisiae [missing]2016-01-01
13C-Metabolic Flux Analysis: An Accurate Approach to Demystify Microbial Metabolism for Biochemical Production[1]Weihua Guo, [2]Jiayuan Sheng, [3]Xueyang Feng [Full author list]Bioengineering [missing]DOI: 10.3390/BIOENGINEERING3010003 [ORCID]
PubMed: 28952565 [ORCID]
2015-12-25
iTAP: integrated transcriptomics and phenotype database for stress response of Escherichia coli and Saccharomyces cerevisiae[1]Niveda Sundararaman, [2]Christine Ash, [3]Weihua Guo, [4]Rebecca Button, [5]Jugroop Singh, [6]Xueyang Feng [Full author list]BMC Research Notes [missing]DOI: 10.1186/S13104-015-1759-7 [ORCID]
PubMed: 26653323 [ORCID]
Escherichia coli [missing]; transcriptome [missing]; Saccharomyces cerevisiae [missing]; transcriptomics [missing]2015-12-12

Group #7

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
The effect of the cleidocranial dysplasia-related novel 1116_1119insC mutation in the RUNX2 gene on the biological function of mesenchymal cells[1]Bofu Ding, [2]Chanjuan Li, [3]Kun Xuan, [4]Na Liu, [5]Liang Tang, [6]Yali Liu, [7]Weihua Guo, [8]Weihong Liu, [9]Yan Jin [Full author list]European Journal of Medical Genetics [missing]DOI: 10.1016/J.EJMG.2013.01.009 [ORCID]
PubMed: 23376464 [ORCID]
2013-01-31
Scaffold-free cell pellet transplantations can be applied to periodontal regeneration[1]Weihua Guo, [2]Yong He, [3]Xuepeng Tang, [4]Gang Chen, [5]Haigang Shi, [6]Kun Gong, [7]Jing Zhou, [8]Lingying Wen, [9]Yan Jin [Full author list]Cell Transplantation [missing]DOI: 10.3727/096368912X662426 [ORCID]
PubMed: 23363564 [ORCID]
2013-01-28
Heterogeneous dental follicle cells and the regeneration of complex periodontal tissues[1]Weihua Guo, [2]Lei Chen, [3]Kun Gong, [4]Bofu Ding, [5]Yinzhong Duan, [6]Yan Jin [Full author list]Tissue Engineering. Part A [missing]DOI: 10.1089/TEN.TEA.2011.0261 [ORCID]
PubMed: 21919800 [ORCID]
2012-01-26
Role of bone marrow-derived progenitor cells in the maintenance and regeneration of dental mesenchymal tissues[1]Jing Zhou, [2]Songtao Shi, [3]Yuanyuan Shi, [4]Han Xie, [5]Lei Chen, [6]Yong He, [7]Weihua Guo, [8]Lingying Wen, [9]Yan Jin [Full author list]Journal of Cellular Physiology [missing]DOI: 10.1002/JCP.22538 [ORCID]
PubMed: 21520060 [ORCID]
2011-08-01
The use of dentin matrix scaffold and dental follicle cells for dentin regeneration[1]Weihua Guo, [2]Yong He, [3]Xiaojun Zhang, [4]Wei Lu, [5]Chunmei Wang, [6]Hua Yu, [7]Yuan Liu, [8]Yuan Li, [9]Yalei Zhou, [10]Jing Zhou, [11]Manjing Zhang, [12]Zhihong Deng, [13]Yan Jin [Full author list]Biomaterials [missing]DOI: 10.1016/J.BIOMATERIALS.2009.08.034 [ORCID]
PubMed: 19767098 [ORCID]
2009-09-19

Misc

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
The Medicago truncatula R2R3-MYB transcription factor gene MtMYBS1 enhances salinity tolerance when constitutively expressed in Arabidopsis thaliana[1]Wei Dong, [2]Yuguang Song, [3]Zhong Zhao, [4]Nian Wei Qiu, [5]Xijiang Liu, [6]Weihua Guo [Full author list]Biochemical and Biophysical Research Communications [missing]DOI: 10.1016/J.BBRC.2017.06.025 [ORCID]
PubMed: 28602696 [ORCID]
Medicago truncatula [missing]; Arabidopsis thaliana [missing]; halotolerance [missing]2017-06-08
¹³C Pathway Analysis for the Role of Formate in Electricity Generation by Shewanella Oneidensis MR-1 Using Lactate in Microbial Fuel Cells[1]Shuai Luo, [2]Weihua Guo, [3]Kenneth H Nealson, [4]Xueyang Feng, [5]Zhen He [Full author list]Scientific Reports [missing]DOI: 10.1038/SREP20941 [ORCID]
PubMed: 26868848 [ORCID]
electricity [missing]; Shewanella oneidensis [missing]; pathway analysis [missing]2016-02-12
Periodontal Ligament and Alveolar Bone in Health and Adaptation: Tooth Movement[1]Nan Jiang, [2]Weihua Guo, [3]Mo Chen, [4]Ying Zheng, [5]Jian Zhou, [6]Sahng Gyoon Kim, [7]Mildred C Embree, [8]Karen Songhee Song, [9]Heloisa F Marao, [10]Jeremy J Mao [Full author list]Frontiers of Oral Biology [missing]DOI: 10.1159/000351894 [ORCID]
PubMed: 26599112 [ORCID]
2015-11-24
Neuroprotection of resveratrol against neurotoxicity induced by methamphetamine in mouse mesencephalic dopaminergic neurons[1]Dong Sun, [2]Qingwei Yue, [3]Weihua Guo, [4]Tao Li, [5]Jing Zhang, [6]Guibao Li, [7]Zengxun Liu, [8]Jinhao Sun [Full author list]BioFactors [missing]DOI: 10.1002/BIOF.1221 [ORCID]
PubMed: 26212417 [ORCID]
dopamine [missing]; neurotoxicity [missing]2015-07-24
Genome survey sequencing and genetic background characterization of Gracilariopsis lemaneiformis (Rhodophyta) based on next-generation sequencing[1]Wei Zhou, [2]Yiyi Hu, [3]Zhenghong Sui, [4]Feng Fu, [5]Jinguo Wang, [6]Lianpeng Chang, [7]Weihua Guo, [8]Binbin Li [Full author list]PLOS One [missing]DOI: 10.1371/JOURNAL.PONE.0069909 [ORCID]
PubMed: 23875008 [ORCID]
2013-07-16
Effects of film structure on electrochromic properties of the multilayer films containing polyoxometalates[1]Bingbing Xu, [2]Lin Xu, [3]Guanggang Gao, [4]Weihua Guo, [5]Shuping Liu [Full author list]Journal of Colloid and Interface Science [missing]DOI: 10.1016/J.JCIS.2008.10.064 [ORCID]
PubMed: 19013585 [ORCID]
2008-10-30
Microbial community diversity in the profile of an agricultural soil in northern China[1]Juan Zhou, [2]Weihua Guo, [3]Renqing Wang, [4]Xuemei Han, [5]Qiang Wang [Full author list]Journal of Environmental Sciences [missing]DOI: 10.1016/S1001-0742(08)62197-X [ORCID]
PubMed: 18817079 [ORCID]
agriculture [missing]; agricultural soil [missing]2008-01-01

Potential author items

NameDescriptionAuthored itemsIdentifiersEmployer(s)
Wei-Hua GuoChinese botanist, ecologist and mycologist4ORCID: 0000-0002-7091-3572
Shandong University [missing]
Weihua Guoresearcher (ORCID 0000-0002-3031-142X)1ORCID: 0000-0002-3031-142X
Weihua Guoresearcher ORCID 0000-0002-2380-92701ORCID: 0000-0002-2380-9270
Weihua Guoresearcher ORCID 0000-0002-5839-71141ORCID: 0000-0002-5839-7114
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