论文著作:
2025年:
[75] Zhao Qin, Dan Wang*, Ruilai Zhang, Fanzhen Lin, Lin Hu, Yaqi Kang, Mengdie Wang, Wenwei Li. Enhanced lignocellulose biomass hydrolysis in a confined space with cellulase-containing liposomes for high-levels succinic acid production. Int. J. Biol. Macromol.,2025, accepted. (*通讯作者,IF=7.7)
[74] Ruoshi Luo, Lin Hu, Dan Wang*,Kaixing Xiao,Xuemei Liu,Yaqi Kang,Qinhong Wang*. Enhanced Biosynthesis of 6-Aminocaproic Acid in Engineered Escherichia coli with Artificial Protein Cage-Organized Enzymatic Cascades. Bioresour. Technol., 2025, 431:132641. (*通讯作者,IF=11.889)
[73] Jikai Zong, Kaixin Xiao, Dan Wang*, Zhiyao Peng, Bo Yu. Novel Reprogramming of Polyketide Synthase for Valerolactam Production. ACS Synth Biol. 2025 Feb 22. doi: 10.1021/acssynbio.4c00758. PMID: 39985475. (通讯作者,IF=5.249)
[72] Weihang Han, Ruoshi Luo, Dan Wang *, Tinglan Li, Qin Zhao, Xue Xia, Ge Hu, Zhen Zhou and Yunpei Liang. Effective methane biodegradation through in situ coupling with methanotroph and HK@SB-1 MOFs. Ind. Chem. Mater., doi: 202510.1039/D4IM00131A (通讯作者,IF=11.8)
2024年:
[71] Lei Xu, Mao‑Ling Luo, Jing‑Jing Dai, Huan Zhu, Peng Li*, Dan Wang and Feng‑Qing Yang*. Applications of nanomaterials with enzyme‑like activity for the detection of phytochemicals and hazardous substances in plant samples. Chinese Medicine. 2024. (共同作者)
[70] 王梦蝶,夏雪,王丹,秦钊,彭祉尧. 生物固碳效益评价的发展和挑战. 过程工程学报, 2024. (通讯作者)
[69] Zeyang Zhu†, Wenwei Li†, Dan Wang*, Xia Fang, Jianing Li, Xuyang Li. Constructing a New Pathway for Ethylene Glycol Biosynthesis and Its Coenzyme Reuse Mechanism[J]. Fermentation, 2024, 10(11): 558. (通讯作者,IF=3.7)
[68] Shuai Liu, Lin Quan, Mei Yang, Dan Wang, Yong-Zhong Wang*. Regulation of cellulase production via calcium signaling in Trichoderma reesi under PEG8000 stress. Appl. Micorbiol. Biotechnol.2024,108: 178(共同作者,IF=5.560)
[67] Guo-Ying Chen, Mao-Ling Luo,Li Chen, Jia-Li Wang,Tong-Qing Chai,Dan Wang*,Feng-Qing Yang*. Selective fluorescence detection of acetylsalicylic acid, succinic acid and ascorbic acid based on a responsive lanthanide metal fluorescent coordination polymer. Anal. Methods, 2024,16:4981-4994.(共通讯作者,IF=2.7)
[66] Yaqi Kang†, Kaixing Xiao†, Dan Wang*, Zhiyao Peng, Ruoshi Luo, Xuemei Liu, Lin Hu, Ge Hu*. Metabolic Engineering of Saccharomyces cerevisiae for High-Level Production of L-pipecolic acid from Glucose. ACS Synthetic Biology .doi: https://doi.org/10.1021/acssynbio.4c00464.(通讯作者,IF=5.249)
[65] Kaixing Xiao, Dan Wang*, Xuemei Liu, Yaqi Kang, ruoshi Luo, Lin Hu, Zhiyao Peng. A novel bioproduction of 1,6-hexamethylenediamine from L-lysine based on an artificial one carbon elongation cycle. ACS Omega. doi: 10.1021/acsomega.4c06289. (通讯作者,IF=4.1)
[64] Lin Hu#, Ruoshi Luo#, Dan Wang*, Fanzhen Lin, Kaixing Xiao, Yaqi Kang. SERS-based microdroplet platform for high-throughput screening of Escherichia coli strains for the efficient biosynthesis of D-phenyllactic acid. Front. Bioeng. Biotechnol. 12:1470830. doi: 10.3389/fbioe.2024.1470830(通讯作者,IF=5.7)
[63] Xuemei Liu, Ruoshi Luo, Dan Wang*,Kaixing Xiao, Fanzhen Lin, Yaqi Kang, Xue Xia, Xiaojie Zhou, Ge Hu*. Combining directed evolution with high cell permeability for high-level cadaverine production in engineered Escherichia coli. Biotechnol. J., 2024, 19 (3), 2300642.(*共通讯作者, IF=4.7)
[62] Fanzhen Lin#, Wenwei Li#, Dan Wang*, Ge Hu, Zhao Qin, Xue Xia, Lin Hu, Xuemei Liu and Ruoshi Luo. Advances in succinic acid production: the enhancement of CO2 fixation for the carbon sequestration benefits. Front. Bioeng. Biotechnol. 12:1392414. doi: 10.3389/fbioe.2024.1392414.(通讯作者, IF=5.7)
[61] Xiaojie Zhou#, Xiaoxiao Zhang#, Dan Wang*, Ruoshi Luo, Zhao Qin, Fanzhen Lin, Xue Xia, Xuemei Liu, Ge Hu. Efficient biosynthesis of salidroside via artificial in vivo enhanced UDP-glucose system using cheap sucrose as substrate. ACS Omega. accepted.(通讯作者, IF=4.1)
2023年:
[60] 康雅琦, 罗若诗, 林凡祯, 程杰, 周桢, 王丹. 生物基塑料单体5-氨基戊酸的生物合成新途径[J]. 生物工程学报, 2023, 39(5): 2070-2080.(通讯作者,CSCD)
[59] Zeyu Wang, Dan Wang*. Can Paper Waste Be Utilised as an Insulation Material in Response to the Current Crisis. Sustainability. 2023, 3, 15. (通讯作者,IF=3.6)
[58] Wenwei Li, Zhen Zhou, Dan Wang*. Recent Advances, Challenges, and Metabolic Engineering Strategies in L-Cysteine Biosynthesis. Fermentation. 2023, 9, 802. (通讯作者,IF=3.7)
[57] Tinglan Li, Zhao Qin, Dan Wang*, Xue Xia, Ge Hu. Coenzyme self-sufficiency system-Recent advances in microbial production of high-value chemical D-phenyllactic acid. World J. Microb. Biot. 2023, 39:36. (通讯作者,IF=4.253)
2022年:
[56] Yaqi Kang, Ruoshi Luo, Dachun Gong, Yongkui Zhang, Dan Wang*. 2022 The 1st Western China symposium on the international frontier of synthetic biomanufacturing. Biotechnol. Notes 2022, 3:113-117. (通讯作者)
[55] Zhao Qin, Dan Wang*, Tinglan Li, Ruoshi Luo, Dan Zhou, Xiaochao Xiong. Construction of an enzymatic shuttling compartment based on reverse micellar for bamboo biomass hydrolysis in ionic liquids. Bioresour. Technol. 2022, 355: 127257. (*通讯作者,IF=11.889)
2021年:
[54] Zhao Qin, Dan Wang*, Ruoshi Luo, Tinglan Li, Xiaochao Xiong, Peng Chen. Using unnatural protein fusions to engineer a co-enzyme self-sufficiency system for D-phenyllactic acid biosynthesis. Front. Bioeng. Biotechnol., 2021, 9: 795885.(通讯作者, IF=6.064)
[53] Lin Quan, Yingwu Yang, Yanmei Wang, Ke Ding, Yong-Zhong Wang*, Dan Wang*. Characteristics of SSSF of rice straw and mass transfer of ethanol in a granular packed bed with N2 sparging. Biochem. Eng. J, 2021, 552: 170-175.(共通讯作者,IF=4.446)
[52] Ruoshi Luo, Zhao Qin, Dan Zhou, Dan Wang*, Ge Hu, Zhiguo Su, Suojiang Zhang. Coupling the fermentation and membrane separation process for polyamides monomer cadaverine production from feedstock lysine. Eng. Life Sci., 2021, doi.org/10.1002/elsc.202000099.(通讯作者,IF=2.678)
[51] Jie Cheng*, Wenying Tu, Ruiqi Cao, Xinghua Gou, Yin Zhang, Dan Wang, Qiang Li*, High-effiency production of 5-aminovalerate in engineered Escherichia coli controlled by an anaerobically-induced nirB promoter. Biochem. Bioph. Res. Co., 2021, 552, 170-175.(第六作者,IF=3.575)
[50] Jie Cheng*, Wenying Tu, Zhou Luo, Xinghua Gou, Qiang Li, Dan Wang*, Jingwen Zhou*, A high-efficiency artificial synthetic pathway for 5-aminovalerate production from biobased L-lysine in Escherichia coli. Front. Bioeng. Biotechnol., 2021, doi.org/10.3389/fbioe.2021.633028.(通讯作者,IF=6.064)
2020年:
[49] Hong Wang, Yang Su, Dan Wang, Saimeng Jin, Shun’an Wei, Weifeng Shen*. Optimal Design and Energy-Saving Investigation of the Triple CO2 Feeds for Methanol Production System by Combining Steam and Dry Methane Reforming. Ind. Eng. Chem. Res. 2020, 59: 1596-1606.(第三作者,IF=4.326)
[48] Yanqin Xu, Liyue Xiao, Yating Chang, Yuan Cao, Changguo Chen, Dan Wang*. 2020.pH and Redox Dual-Responsive MSN-S-S-CS as a Drug Delivery System in Cancer Therapy. Materials, 2020, 13: 1279.(通讯作者,IF=3.748)
[47] Yanqin Xu, Jie Liu, Shumin Guan, Yuan Cao*, Changguo Chen*, Dan Wang*. 2020. A dual pH and redox-responsive Ag/ AgO/carboxymethyl chitosan composite hydrogel for controlled dual drug delivery. J. Biomat. Sci.-Polyme. 2020, 31: 1706-1721(共通讯作者,IF=3.682)
[46] Yanqin Xu, Dan Zhou, Ruoshi Luo, Xizhi Yang, Baosheng Wang, Xiaochao Xiong, Weifeng Shen, Qinhong Wang, Dan Wang*. 2020. Metabolic engineering of Escherichia coli for polyamides monomerδ-valerolactam production from feedstock lysine. Appl. Micorbiol. Biotechnol.2020,104: 9965-9977. (通讯作者,IF=5.560)
[45] 徐彦芹,肖俪悦,陈昌国,王丹,曹渊*. 2020. 金属有机框架复合材料在超级电容器中的合成及应用研究, 化工学报,71: 4473-4489(第四作者,EI)
[44] 徐彦芹,秦钊,王烨,陈昌国,曹渊*,王丹*. 2020. NH2-MCM-41的改性及其pH响应性释药的研究.化工学报,71: 4783-47911(通讯作者,EI)
[43] 徐彦芹,杨锡智,罗若诗,黄玉红,霍锋,王丹*. 2020. 合成生物学在生物基塑料制造中的应用.化工学报,71: 4520-4531(通讯作者,EI)
2019年:
[42] Jie Cheng, Ge Hu, Yanqin Xu, Michael P. Torrens-Spence, Xiaohua Zhou, Dan Wang*, Jing-Ke Weng*, Qinhong Wang*. 2019. Production of nonnatural straight-chain amino acid 6-aminocaproate via an artificial iterative carbon-chain-extension cycle. Metab. Eng. 2019,55: 23-32. (*共通讯作者,IF=9.808) 被科技部生物技术中心亮点报道http://www.most.gov.cn/gnwkjdt/201907/t20190715_147700.htm
[41] Meihua Huang, Jie Cheng, Peng Chen, Gaowei Zheng, Dan Wang* and Yuanliang Hu*. 2019. Efficient production of succinic acid in engineered Escherichia coli strains controlled by anaerobically-induced nirB promoter using sweet potato waste hydrolysate. J. Environ. Manag. 2019,237: 147-154. (*共通讯作者,IF=8.910)
2018年:
[40] Jie Cheng, Yining Zhang, Meihua Huang, Peng Chen, Xiahua Zhou, Dan Wang*, Qinhong Wang*. 2018. Enhanced 5-aminovalerate production in Escherichia coli from L-lysine with ethanol and hydrogen peroxide addition. J. Chem. Technol. Biotechnol. 2018,93: 3492-3501. (*共通讯作者,IF=3.709)
[39] Jie Cheng, Yuding Huang, Le Mi, Wujiu Chen, Dan Wang*, Qinhong Wang*. 2018. An economically and environmentally acceptable synthesis of chiral drug intermediate L-pipecolic acid from biomass-derived lysine via artificially engineered microbes. J. Ind. Microbiool. Biotechnol. 2018,45: 405-415. (*共通讯作者,IF=4.258)
[38] Jie Cheng, Pen Chen, Andong Song, Dan Wang*, Qinhong Wang*. 2018. Expanding lysine industry: industrial biomanufacturing of lysine and its derivatives. J. Ind. Microbiol. Biotechnol. 2018,45: 719-734. (*共通讯作者,IF=4.258)
2017年:
[37] Le Mi, Dandan Qin, Jie Cheng, Dan Wang*, Sha Li*, Xuetuan Wei. 2017. Efficient production of free fatty acids from ionic liquid-based acid- or enzyme-catalyzed bamboo hydrolysate. J. Ind. Microbiol. Biotechnol. 2017,44: 419-430. (*共通讯作者,IF=4.258)
[36] Wenqin Si, Yuntao Li, Jie Zheng, Shunan Wei*, Dan Wang* 2017. Enhanced hydrolysis of bamboo biomass by chitosan based solid acid catalyst with surfactant addition in ionic liquid. Carbohydr. Polym., 2017,174: 154-159.(*共通讯作者,IF=10.723)
2016年:
[35] Dandan Qin, Yuanliang Hu, Jie Cheng, Nan Wang, Sha Li*, Dan Wang*. 2016. An auto-inducible Escherichia coli strain obtained by adaptive laboratory evolution for fatty acid synthesis from ionic liquid-treated bamboo hydrolysate. Bioresour. Technol. 2016,221: 375-384. (*共通讯作者,IF=11.889)
[34] Jie Cheng, Nan Wang, Dezhou Zhao, Dandan Qin, Wenqing Si, Yunfei Tan, Shun’an Wei, Dan Wang*. 2016. The enhancement of the hydrolysis of bamboo biomass in ionic liquid with chitosan-based solid acid catalysts immobilized with metal ions. Bioresour. Technol.2016,220: 457-463. (*通讯作者,IF=11.889)
[33] Wen Jiang, Zhiming Zhou, Dan Wang*, Xiaohua Zhou*, Renyou Tao, Yang Yang, Yexin Shi, Guiluo Zhang, Deyi Wang, Zhen Zhou*. Transglutaminase catalyzed hydrolyzed wheat gliadin grafted with chitosan oligosaccharide and its characterization. Carbohydr. Polym.2016,153: 105-114 (*共通讯作者,IF=10.723)
2015年:
[32] Dan Wang, Chandresh Thakker, Ping Liu, George N. Benett, Ka-Yiu San*. 2015. Efficient production of free fatty acids from soybean meal carbohydrate. Biotechnol. Bioeng.2015,112: 2324-2333. (第一作者,IF=5.26)
[31] Dan Wang, Hui Wu, Chandresh Thakker, Jared Beyersdorf, George N. Benett, Ka-Yiu San*. 2015. Efficient free fatty acid production in engineered Escherichia coli strains using soybean oligosaccharides as feedstock. Biotech. Prog.2015 ,31(3): 686-694.(第一作者,IF=3.406)
[30] Jing Wang, Dandan Qin, Baoyun Zhang, Qiang Li, Lichun Dong, Xiaohua Zhou*, Dan Wang*.2015. Fine-tuning of ecaA and pepc gene expression increases succinic acid production in Escherichia coli. Appl. Micorbiol. Biotechnol.2015,99:8575-8586 (*共通讯作者,IF=5.560)
2014年:
[29] Jing Wang, Baoyun Zhang, Jie Zhang, Honghui Wang, Minghui Zhao, Nan Wang, Lichun Dong, Xiaohua Zhou*, Dan Wang*. 2014. Enhanced succinic acid production and magnesium utilization by overexpression of magnesium transporter mgtA in Escherichia coli mutant. Bioresour. Technol.2014,170(07): 125-131,2014 (*共通讯作者,IF=11.889)
[28] Nan Wang, Jie Zhang, Honghui Wang, Qiang Li, Sun’an Wei, Dan Wang*. 2014. Effects of metal ions on the hydrolysis of bamboo biomass in 1-butyl-3-methylimidazolium chloride with dilute acid as catalyst. Bioresour. Technol.2014,173(09): 399-405 (*通讯作者,IF=11.889)
[27] Jie Zhang, Xiaohua Zhou, Dan Wang*, Xing Zhou, Fang Yun, Shiyu Tan. 2014. A comprehensive study of extraction of L-lysine with sec-octylphenoxy acetic acid in sulfonated kerosene. Sep. Sci. Technol. 2014,49(09): 1349-1356 (*通讯作者,IF=2.354)
[26] Jie Zhang, Dan Wang*, Jiachuan Pan, Jing Wang, Hongbo Zhao, Qiang Li, Xiaohua Zhou*. 2014. Efficient resveratrol production by immobilized β-glucosidase on cross-linked chitosan microsphere modified by L-lysine. J. Mol. Catal. B-Enzym. 2014,104(03): 29-34 (*共通讯作者,IF=3.82)
[25]Honghui Wang, Jiachuan Pan, Jing Wang, Nan Wang, Lin Xu, Qiang Li,Dan Wang*, Xiaohua Zhou*. 2014. Succinic acid production from xylose mother liquor by recombinant Escherichia coli strain. Biotechnol.Biotec.eq.2014,28(06): 1042-1049. (*共通讯作者,IF=2.097)
[24] Xuetuan Wei, Yinhua Zhou, Jingbang Chen, Dongbo Cai, Dan Wang, Gaofu Qi, Shouwen Chen. 2014. Efficient expression of nattokinase in Bacillus licheniformis: host strain construction and signal peptide optimization. J. Ind. Microbiol. Biot. 2014,42:.287-295. (IF=4.258)
[23] Caixia Wang, Qiang Li, Dan Wang, Jianmin Xing*. 2014. Improving the lactic acid production of Actinobacillus succinogenes by using a novel fermentation and separation integration system. Process Biochem.2014,49:1245-1250.(第三作者,IF=3.883)
2013年:
[22] 王丹, 王洪辉, 王競, 汪楠, 张杰, 邢建民. 2013. 糠醛和5-羟甲基糠醛对大肠杆菌产丁二酸的影响. 中国生物工程学报, 2013,29(10): 1463-1472, (第一作者)
[21] Jie Zhang, Xiaohua Zhou*, Dan Wang*, Luyan Sang, Yuanhong peng, Shiyu Tan&Qiang Li. 2013. High selective separation of flavonoids based on crosslinked chitosan resin grafted by quercetin. Sep. Sci. Technol.2013,48:2825-2833 (*共通讯作者,IF=1.354)
[20] Jie Zhang, Xiaohua Zhou*, Dan Wang*, Yingli Wang, Xing Zhou, Honghui Wang, Qiang Li, Shiyu Tan. Studies on the co-immobilized GOD/CAT on cross-linked chitosan microsphere modified by lysine. J. of Mol. Catal. B: Enzym.2013,97: 80-86 (*通讯作者, IF=2.82)
[19] Jie Zhang, Xiaohua Zhou*, Zhen Zhou, Yu Su, Ruiya Zuo, Dan Wang*, Shiyu Tan. 2013. Preparation and characterization of a novel Ala-Gln dipeptide-Zn2+ complex. Asian J. Chem. 2013,25(08): 4461-4466 (*共通讯作者,IF=0.27)
[18] Jie Zhang, Xiaohua Zhou*, Dan Wang*, Yonghong Wang, Lin Chen, Shiyu Tan. 2013. Selective separation of L-aromatic amino acid by L-phenylalanine-crosslinked chitosan resin. Asian J. Chem.2013,25(16): 9050-9054 (*共通讯作者,IF=0.27)
[17] Dexi Wu, Qiang Li, Dan Wang, Yugang Dong. 2013. Enzymatic hydrolysis and succinic acid fermentation from steam-exploded corn stalk at high solid concentration by recombinant Escherichia coli. Appl. Biochem. Biotechnol.2013,170: 1942-1949 (第三作者,IF=2.14)
[16] Qiang Li, Jiandu Lei, Rongyue Zhang, Juan Li, Jianmin Xing, Fei Gao, Fangling Gong*, Xaofeng Yan, Dan Wang, Zhiguo Su, Guanghui Ma*. 2013. Efficient decolorization and deproteinization using uniform polymer microspheres in the succinic acid biorefinery from bio-waste cotton (Gossypium hirsutum L.) stalks. Bioresour. Technol.2013,135: 604-609 (IF=11.889)
2012年:
[15]Ziyu Song, Qiang Li, Dan Wang, Jie Zhang, and Jianmin Xing. 2012. A novel up-flow inner-cycle anoxic bioreactor (UIAB) system for the treatment of sulfide wastewater from purification of biogas. Water Sci. Technol.2012,65(06): 1033-1040 (第三作者,IF=1.624)
[14] YunjianZhang, Qiang Li, Yuxiu Zhang, Dan Wang, Jianmin Xing*. 2012. Optimization of succinic acid fermentation with Actinobacillus succinogenes by response surface methodology (RSM). J. Zhejiang Univ. Sci. B. 2012,13(02): 103–110 (第四作者,IF=1.879)
2011年:
[13] Dan Wang, Qiang Li, Maohua Yang, Yunjian Zhang, Zhiguo Su, Jianmin Xing*. 2011. Efficient production of succinic acid from corn stalk hydrolysates by a recombinant Escherichia coli with ptsG mutation. Process Biochem.2011,46: 365-371 (第一作者,IF=2.883)
[12] Dan Wang, Qiang Li, Ziyu Song, Wei Zhou, Zhiguo Su, Jianmin Xing*.2011. High cell density fermentation via a metabolically engineered Escherichia coli for the enhanced production of succinic acid. J. Chem. Technol. Biotechnol.2011,86(04): 512-518 (第一作者,IF=2.659)
[11] Qiang Li#, Dan Wang#, Guangyu Hu*, Jianmin Xing, Zhiguo Su. 2011. Integrated bioprocess for high-efficiency production of succinic acid in an expanded-bed adsoption system. Biochem. Eng. J.2011,56(06): 150-157 (#共同一作,IF=4.446)
[10] Zelong Wang, Dan Wang, Qiang Li, Wangliang Li, Huang Tang and Jianmin Xing. 2011. Enhanced biodesulfurization by expression of dibenzothiophene uptake genes in Rhodococcus erythropolis. World J. Microb. Biot.2011,27: 1965-1970 (第二作者,IF=2.652)
2010年及以前:
[9] Qiang Li, Dan Wang, Ziyu Song, Wei Zhou, Yong Wu, Jianmin Xing*, Zhiguo Su. 2010. Dual-phase fermentation enables Actinobacillus succinogenes 130Z(T) to be a potential role for high-level lactate production from the bioresource. Bioresour. Technol, 2010,101(04): 7665-7667(第二作者,IF=9.539)
[8] Dan Wang, Qiang Li, Yu Mao, Jianmin Xing*, Zhiguo Su. High-level succinic acid production and yield by lactose-induced expression of phosphoenolpyruvate carboxylase in ptsG mutant Escherichia coli. Appl. Microbiol. Biotechnol. 2010,87 2025-2035(第一作者IF=4.813)
[7] Qiang Li, Dan Wang, Yong Wu, Maohua Yang, Wangliang Li, Jianmin Xing*, Zhiguo Su. 2010. Kinetic evaluation of products inhibition to succinic acid producers Escherichia coli NZN111, AFP111, BL21, and Actinobacillus succinogenes 130Z(T). J. Microbiol. 2010,48(03): 290-296(第二作者,IF=2.319)
[6] Qiang Li, Dan Wang, Yong Wu, Wangliang Li, Yunjian Zhang, Jianmin Xing*, Zhiguo Su. 2010. One step recovery of succinic acid from fermentation broths by crystallization. Sep. Purif. Technol. 2010,72:294-300(第二作者,IF=5.107)
[5] Qiang Li, Maohua Yang, Dan Wang, Wangliang Li, Yong Wu, Yunjian Zhang, Jianmin Xing*, Zhiguo Su. 2010. Efficient conversion of crop stalk wastes into succinic acid production by Actinobacillus succinogenes. Bioresour. Technol. 2010,101: 3292-3294(第三作者,IF=11.889)
[4] Qiang Li, Wangliang Li, Dan Wang, Binbin Liu, Huang Tang, Maohua Yang, Jianming Xing*, Zhiguo Su. 2010. pH Neutralization while Succinic Acid Adsorption onto Anion-Exchange Resins. Appl. Biochem. Biotechnol.2010,160: 438-445 (第三作者,IF=3.059)
[3] Dan Wang, Qiang Li, Wangliang Li, Jianming Xing*, Zhiguo Su. 2009. Improvement of succinate production by overexpression of a cyanobacterial carbonic anhydrase in Escherichia coli. Enzyme Microb. Technol.2009,45: 491-497(第一作者,IF=3.553)
[2] Dan Wang, Qiang Li, Wangliang Li, Qingfen Liu, Jianming Xing*, Zhiguo Su. 2008. Overexpression of a cyanobacterial carbonic anhydrase in Escherichia coli enhances succinic acid production. J. Biotech. 2008,136(07): S26-27 (第一作者,IF=3.163)
[1] 王丹,毛雨,马兰,李强,李望良,邢建民,苏志国. 2009. 乳糖诱导丙酮酸羧化酶基因在大肠杆菌中的表达及对丁二酸产量的影响.生物工程学报.2009,25(9): 1338-1344(第一作者)
代表性专利
已公开且授权
1.生产己二胺的重组质粒及其应用. 王丹,罗若诗,周丹,秦钊. 2021年,中国,专利申请号202111014720.X(第一发明人,已授权)
2.甲烷氧化菌-多孔吸附剂复合物及其应用. 王丹, 李廷兰, 夏雪, 秦钊, 林凡祯. 2021年,中国,专利申请号:202111530186.8(第一发明人,已授权)
3. 一种溶解废旧铂铑热电偶中铂铑合金的装置及系统. 王丹,秦钊,徐彦芹, 罗若诗, 周丹, 吴洪, 李廷兰, 曹渊. 2020年,中国,专利申请号:202011134892.6(第一发明人,已授权)
4. 重组大肠杆菌发酵产物中 L 哌啶酸的分离提纯方法. 王丹, 张雨, 陈坤, 孙誉州. 2017年,中国,专利申请号:201710287534.0(第一发明人,已授权)
5. 重组大肠杆菌发酵产物中 L 哌啶酸的萃取分离方法. 王丹, 陈坤, 张雨, 孙誉州. 2017年,中国,专利申请号: 201710288291.2(第一发明人,已授权)
6. 一种用于生产哌啶甲酸的重组质粒、基因工程菌株及方法. 王丹, 米乐, 陈五九. 2017年,中国,专利申请号:201710287538.9(第一发明人,已授权)
7. 生产丁二酸的重组质粒、基因工程菌的构建及用途. 王丹, 王竸,王洪辉,汪楠,周小华. 2013年,中国,专利申请号:201310312492.3(第一发明人,已授权)
8. 一种制备多孔交联壳聚糖微球的新方法. 王丹, 周茂祥, 李茹, 蔡锦华, 颜李秀, 周小华. 2013年,中国,专利申请号:201310223533.1(第一发明人,已授权)
9. 一种处理木糖母液的方法. 王丹, 黄小栩, 卢浩, 王孟, 周小华. 2011年,中国,专利申请号:201110420250.7(第一发明人,已授权)
10. 一种连续结晶生物制造丁二酸的装置及方法. 李强; 邢建民; 王丹; 宋子煜; 张云剑. 2014年,中国,专利申请号:201110035318.X(第三发明人,已授权)
11. 一种基于全膜分离系统的丁二酸分离装置及方法. 邢建民; 王彩霞; 李强; 王丹; 张云剑; 唐煌; 万印华; 苏仪. 2014年,中国,专利申请号:201010574166.6(第四发明人,已授权)
12. 一种用于生产生物天然气的生物脱硫与二氧化碳回收耦合的方法及装置. 邢建民; 宋子煜; 李强; 王丹. 2011年,中国,专利申请号:201110155482.4(第四发明人,已授权)
13. 一种基于生物脱硫的酸性硫酸盐有机废水综合处理装置及方法. 邢建民; 宋子煜; 李强; 王丹. 2014年,中国,专利申请号:201110141078.1(第四发明人,已授权)
14. 一种制备赖氨酸修饰两性大孔离子交换树脂的方法. 张杰, 周小华, 康宏宽, 王丹, 徐溢, 徐焕焕. 2011年,中国,专利申请号:201110410753.6(第四发明人,已授权)
15. 一种制备 R-扁桃酸的方法. 周小华, 张杰, 苏昱, 王丹, 徐焕焕. 2011年,中国,专利申请号:201110420247.5(第四发明人,已授权)
16. 一种制备固定化腈水解酶的方法. 周小华, 张杰, 康宏宽, 王丹, 徐溢, 王利颖. 2011年,中国,专利申请号:201110414276.0(第四发明人,已授权)
17. 固定化酶连续水解白藜芦醇苷制备白藜芦醇的方法. 苏昱, 周小华, 赵红波, 王丹, 徐溢, 徐焕焕. 2011年,中国,专利申请号: 201110410755.5(第四发明人,已授权)
18. 一种制备洛伐他汀的方法. 周小华, 王颖利, 冯涛, 王丹, 王永红. 2011年,中国,专利申请号:201110438842.1(第四发明人,已授权)
19. 一种制备羊胎盘素和羊胎盘水解胶原浓缩液的方法. 徐焕焕, 周小华, 王颖利, 周兴, 王丹, 王永红. 2011年,中国,专利申请号:201110438853.X(第五发明人,已授权)
20. 一种纯化腈水解酶的方法. 张杰, 周小华, 康宏宽, 徐溢, 王丹, 周兴, 王永红. 2011年,中国,专利申请号:201110389274.0(第五发明人,已授权)
21. ALPHA OMEGA BIFUNCTIONAL FATTY ACIDS. Ka-Yiu SAN; Dan WANG, 2018年,美国,专利公开号:20180119183A1,申请号US15572099(第二发明人,已授权)
22. KAS-III FREE FA SYNTHESIS. Ka-Yiu SAN; Xian ZHANG; Hui WU; Dan WANG, 2018年,美国,专利公开号:20180148746A1,申请号US15553129(第四发明人,已授权)
已公开
1.高产红景天苷的酿酒酵母基因工程菌、方法及应用. 王丹, 李汶蔚, 周小洁, 罗若诗, 林凡祯, 王卫富, 闫军军, 田利明. 2024年,中国,专利申请号:202410290490.7(第一发明人)
2.电催化装置、太阳能驱动的酶-电催化CO2还原装置及应用. 王丹, 方霞, 罗若诗, 肖开兴, 彭祉尧. 2024年,中国,专利申请号:202410990758.8(第一发明人)
3.磷酸烯醇式丙酮酸羧化酶突变体及酶活性提高方法与应用. 王丹, 李佳宁, 林凡祯, 李汶蔚, 罗若诗, 彭祉尧.2024年,中国,专利申请号:202411407669.2(第一发明人)
4.SERS光纤探头及微液滴高通量筛选系统和制备、检测、筛选方法. 王丹, 林凡祯, 李佳宁, 李汶蔚, 彭祉尧. 2024年,中国,专利申请号:202411022228.0(第一发明人)
5. 甲醇脱氢酶 MDHBs 突变体及其应用. 王丹, 王梦蝶,夏雪,胡舸,周桢,林凡祯. 2023年,中国,专利申请号:202311408103.7(第一发明人)
6. 固碳酶催化合成二羟基丙酮的方法. 王丹, 王梦蝶,夏雪,胡舸,周桢,林凡祯. 2023年,中国,专利申请号:202311407443.8(第一发明人)
7. 一种高产己二胺基因工程菌株及其构建方法与运用. 王丹, 肖开兴,罗若诗,刘雪梅,周桢,胡舸,林凡祯. 2023年,中国,专利申请号:202311432312.5(第一发明人)
8. 耐碱性的赖氨酸脱羧酶突变体及其应用. 王丹, 刘雪梅,罗若诗,肖开兴,林凡祯. 2023年,中国,专利申请号:202311479341.7(第一发明人)
9. 灭活乳酸菌制剂的应用及其应用方法. 王丹, 何亭静,罗筱,周小洁,翟力,宋嘉仪. 2023年,中国,专利申请号:202310688027.3(第一发明人)
10. 一种大米米糟中蛋白质的提取工艺及其产品. 王丹, 罗筱,何亭静,周小洁,宋嘉仪,翟力. 2023年,中国,专利申请号:202310687985.9(第一发明人)
11. 突变蛋白和羟基酪醇糖苷化衍生物的合成方法. 王丹, 周小洁,罗若诗. 2023年,中国,专利申请号:202310444342.1(第一发明人)
12. 煤矿瓦斯的消解方法和复合物载体、瓦斯消解液及其制备. 王丹, 夏雪,秦钊,李廷兰,陈强,梁运培. 2023年,中国,专利申请号:202310273739.9(第一发明人)
13. 生产羟基红景天苷的重组质粒和基因工程菌及其运用. 王丹,罗若诗,杨锡智,徐彦芹,秦钊,周丹,高鑫,张进许. 2020年,中国,专利申请号:202011466963.2(第一发明人)
14. 一种双功能融合蛋白及其生产D-苯乳酸的方法. 王丹, 陈朋, 吕欣怡, 熊小超, 周桢,周小华. 2018年,中国,专利申请号:201811631087.7(第一发明人)
15. 生产四氢叶酸的重组质粒、基因工程菌株构建及应用. 王丹, 王保升, 程杰,邹环泽, 周小华. 2015年,中国,专利申请号:201510976828.5(第一发明人)
16. 一种酯化修饰萝卜红色素的制备及纯化方法. 王丹, 程杰, 邹环泽, 周小华. 2015年,中国,专利申请号:201510976867.5(第一发明人)
17. 一种产耐高温β-半乳糖苷酶的菌株及其筛选方法. 王丹, 邹环泽, 包谢茹,周小华. 2015年,中国,专利申请号:201510976869.4(第一发明人)
18. 一种用于生物质水解的壳聚糖基固体酸催化剂的制备方法. 王丹, 汪楠, 魏顺安, 陈波, 司文青, 周小华. 2015年,中国,专利申请号:201510240650.8(第一发明人)
19. 一种发酵木质纤维素离子液体水解液制备脂肪酸的方法. 王丹, 秦丹丹, 邹环泽, 汪楠, 周小华. 2015年,中国,专利申请号:201510242685.5(第一发明人)
20. 一种利用木糖母液发酵生产丁二酸的方法. 王丹, 邹环泽, 王洪辉, 汪楠,周小华. 2015年,中国,专利申请号:201510240649.5(第一发明人)
21. 一种用于基因表达量调节的寡核苷酸片段库及其应用. 王丹, 米乐, 王競,周小华. 2015年,中国,专利申请号:201510240648.0(第一发明人)
22. 木糖醇结晶母液制备葡萄糖酸的反应分离耦合装置和工艺. 王丹, 王洪辉, 汪楠, 王競, 周小华. 2013年,中国,专利申请号:201310312420.9(第一发明人)
23. 一种降解木质纤维素生成还原糖的方法. 王丹, 汪楠, 魏顺安, 王洪辉, 王競,张杰, 周小华. 2013年,中国,专利申请号:201310374460.6(第一发明人)