Furan (BioDeep_00000009803)

 

Secondary id: BioDeep_00001871667

human metabolite Endogenous blood metabolite


代谢物信息卡片


1,4-Epoxy-1,3-butadiene

化学式: C4H4O (68.0262134)
中文名称: 呋喃
谱图信息: 最多检出来源 () 0%

分子结构信息

SMILES: C1=COC=C1
InChI: InChI=1S/C4H4O/c1-2-4-5-3-1/h1-4H

描述信息

Furan is a member of the class of compounds known as furans. These are molecules containing a heterocyclic organic group consisting of a five-membered aromatic ring with four carbon atoms and one oxygen. Furan is aromatic because one of the lone pairs of electrons on the oxygen atom is delocalized into the ring, creating a 4n+2 aromatic system similar to benzene. Because of the aromaticity, furan is flat and lacks discrete double bonds. Furan is a colourless, flammable, highly volatile liquid with a boiling point close to room temperature (31 °C). It is soluble in common organic solvents, including alcohol, ether, and acetone, but is insoluble in water. It has a strong ethereal odour. Furan is found in heat-treated (e.g. cooked, roasted, baked, pasteurized, and sterilized) commercial foods and is produced through thermal degradation of natural food constituents (PMID:22641279). It can be found in roasted coffee, instant coffee, and processed baby foods (PMID:22641279). In particular, the highest furan levels can be detected in coffee, with mean values between 42 and 3 660 ng/g for brewed coffee and roasted coffee beans. Furan can also be detected at levels between 0.2 and 3.2 ng/g in infant formula, from 22 to 24 ng/g in baked beans, from 13 to 17 ng/g in meat products, and from 23 to 24 ng/g in soups. In soy sauce, furan is detectable at 27 ng/g (PMID:26483883). Research has indicated that coffee made in espresso makers and, above all, coffee made from capsules, contains more furan than that made in traditional drip coffee makers, although the levels are still within safe health limits. Various pathways have been reported for the formation of furan: (1) thermal degradation and/or thermal rearrangement of carbohydrates in the presence of amino acids, (2) thermal degradation of certain amino acids (aspartic acid, threonine, alpha-alanine, serine, and cysteine), (3) oxidation of ascorbic acid at higher temperatures, and (4) oxidation of polyunsaturated fatty acids and carotenoids (PMID:26483883). Several studies have reported that furan formation occurs to a large extent during the Maillard reaction. The Maillard reaction involves the thermal degradation and rearrangement of carbohydrates (i.e. non-enzymatic browning reactions during food processing and cooking). Reducing hexoses often go through the Maillard reaction in the presence of amino acids and produce reactive intermediates such as 1-deoxy- and 3-deoxyosones, aldotetrose, and 2-deoxy-3-keto-aldotetrose. 2-Deoxy-3-keto-aldotetrose typically goes through retro-aldol cleavage leading to 3-deoxyosone which undergoes alpha-dicarbonyl cleavage, followed by oxidation and decarboxylation to form 2-deoxyaldotetrose, which is a direct precursor of furan. In addition to the formation of furan via carbohydrate degradation, furan can also be formed through thermal degradation of certain amino acids. Specifically, the amino acids that can form acetaldehyde and glycolaldehyde can produce furan by aldol condensation and cyclization (PMID:26483883). Furan is toxic and may be carcinogenic. In particular, furan is a potent hepatotoxin and hepatocarcinogen in rodents, causing hepatocellular adenomas and carcinomas in rats and mice, and high incidences of cholangiocarcinomas in rats at doses ≥ 2 mg/kg (PMID:22641279).

同义名列表

9 个代谢物同义名

1,4-Epoxy-1,3-butadiene; Oxacyclopentadiene; Divinylene oxide; Furfurane; Furfuran; Tetrole; Furane; Oxole; FURAN



数据库引用编号

13 个数据库交叉引用编号

分类词条

相关代谢途径

Reactome(0)

BioCyc(0)

PlantCyc(0)

代谢反应

0 个相关的代谢反应过程信息。

Reactome(0)

BioCyc(0)

WikiPathways(0)

Plant Reactome(0)

INOH(0)

PlantCyc(0)

COVID-19 Disease Map(0)

PathBank(0)

PharmGKB(0)

3 个相关的物种来源信息

在这里通过桑基图来展示出与当前的这个代谢物在我们的BioDeep知识库中具有相关联信息的其他代谢物。在这里进行关联的信息来源主要有:

  • PubMed: 来源于PubMed文献库中的文献信息,我们通过自然语言数据挖掘得到的在同一篇文献中被同时提及的相关代谢物列表,这个列表按照代谢物同时出现的文献数量降序排序,取前10个代谢物作为相关研究中关联性很高的代谢物集合展示在桑基图中。
  • NCBI Taxonomy: 通过文献数据挖掘,得到的代谢物物种来源信息关联。这个关联信息同样按照出现的次数降序排序,取前10个代谢物作为高关联度的代谢物集合展示在桑吉图上。
  • Chemical Taxonomy: 在物质分类上处于同一个分类集合中的其他代谢物
  • Chemical Reaction: 在化学反应过程中,存在为当前代谢物相关联的生化反应过程中的反应底物或者反应产物的关联代谢物信息。

点击图上的相关代谢物的名称,可以跳转到相关代谢物的信息页面。



文献列表

  • Yang Li, Jing Xu, Fuwei Sun, Yanan Guo, Daoying Wang, Tianfu Cheng, Minwei Xu, Zhongjiang Wang, Zengwang Guo. Spectroscopy combined with spatiotemporal multiscale strategy to study the adsorption mechanism of soybean protein isolate with meat flavor compounds (furan): Differences in position and quantity of the methyl. Food chemistry. 2024 Sep; 451(?):139415. doi: 10.1016/j.foodchem.2024.139415. [PMID: 38670020]
  • Waseem Ali, Uzma Khatyan, Jian Sun, Abdulrahman Alasmari, Mohammad Y Alshahrani, Izhar Hyder Qazi, Tao Wang, Zongping Liu, Hui Zou. Mitigating effect of pomegranate peel extract against the furan induced testicular injury by apoptosis, steroidogenic enzymes and oxidative stress. Chemosphere. 2024 Jun; 358(?):142086. doi: 10.1016/j.chemosphere.2024.142086. [PMID: 38670510]
  • Wei Li, Zixia Hu, Chen Sun, Yuwei Wang, Weiwei Li, Ying Peng, Jiang Zheng. A Metabolic Activation-Based Chemoproteomic Platform to Profile Adducted Proteins Derived from Furan-Containing Compounds. ACS chemical biology. 2022 04; 17(4):873-882. doi: 10.1021/acschembio.1c00917. [PMID: 35353477]
  • Shubhajit Dhara, Kajal Chakraborty. Novel Furanyl-Substituted Isochromanyl Class of Anti-Inflammatory Turbinochromanone from Brown Seaweed Turbinaria conoides. Chemistry & biodiversity. 2022 Jan; 19(1):e202100723. doi: 10.1002/cbdv.202100723. [PMID: 34762766]
  • E H El-Mossalamy, Mervette E L Batouti, H A Fetouh. The role of natural biological macromolecules: Deoxyribonucleic and ribonucleic acids in the formulation of new stable charge transfer complexes of thiophene Schiff bases for various life applications. International journal of biological macromolecules. 2021 Dec; 193(Pt B):1572-1586. doi: 10.1016/j.ijbiomac.2021.10.220. [PMID: 34743030]
  • Mariano Ezequiel Vera, María Laura Mariani, Cristina Aguilera, Alicia Beatriz Penissi. Effect of a Cytoprotective Dose of Dehydroleucodine, Xanthatin, and 3-Benzyloxymethyl-5H-furan-2-one on Gastric Mucosal Lesions Induced by Mast Cell Activation. International journal of molecular sciences. 2021 Jun; 22(11):. doi: 10.3390/ijms22115983. [PMID: 34205991]
  • Chuanqin Hu, Ren Li, Jiahui Wang, Yingli Liu, Jing Wang, Baoguo Sun. Untargeted metabolite profiling of liver in mice exposed to 2-methylfuran. Journal of food science. 2021 Jan; 86(1):242-250. doi: 10.1111/1750-3841.15549. [PMID: 33319365]
  • Simone Stegmüller, Nadine Beißmann, Jonathan Isaak Kremer, Denise Mehl, Christian Baumann, Elke Richling. A New UPLC-qTOF Approach for Elucidating Furan and 2-Methylfuran Metabolites in Human Urine Samples after Coffee Consumption. Molecules (Basel, Switzerland). 2020 Nov; 25(21):. doi: 10.3390/molecules25215104. [PMID: 33153167]
  • Nada O F Kassem, Lisa A Peterson, Sandy Liles, Noura O Kassem, Flora K Zaki, Kung-Jong Lui, Karin R Vevang, Nathan G Dodder, Eunha Hoh, Melbourne F Hovell. Urinary metabolites of furan in waterpipe tobacco smokers compared to non-smokers in home settings in the US. Toxicology letters. 2020 Oct; 333(?):202-210. doi: 10.1016/j.toxlet.2020.08.002. [PMID: 32814080]
  • Huiying Li, Huaigu Yang, Peng Li, Ming Li, Qianqian Yao, Li Min, Yangdong Zhang, Jiaqi Wang, Nan Zheng. Maillard reaction products with furan ring, like furosine, cause kidney injury through triggering ferroptosis pathway. Food chemistry. 2020 Jul; 319(?):126368. doi: 10.1016/j.foodchem.2020.126368. [PMID: 32155537]
  • Jeonghwan Lee, Sohee Oh, Habyeong Kang, Sunmi Kim, Gowoon Lee, Lilin Li, Clara Tammy Kim, Jung Nam An, Yun Kyu Oh, Chun Soo Lim, Dong Ki Kim, Yon Su Kim, Kyungho Choi, Jung Pyo Lee. Environment-Wide Association Study of CKD. Clinical journal of the American Society of Nephrology : CJASN. 2020 06; 15(6):766-775. doi: 10.2215/cjn.06780619. [PMID: 32628126]
  • Wei Li, Hye Jin Yang. Isolation and Identification of Lignans and Other Phenolic Constituents from the Stem Bark of Albizia julibrissin Durazz and Evaluation of Their Nitric Oxide Inhibitory Activity. Molecules (Basel, Switzerland). 2020 Apr; 25(9):. doi: 10.3390/molecules25092065. [PMID: 32354185]
  • Samah R Khalil, Hoda F A Salem, Mohamed M M Metwally, Rasha M Emad, Khlood M Elbohi, Sozan A Ali. Protective effect of Spirulina platensis against physiological, ultrastructural and cell proliferation damage induced by furan in kidney and liver of rat. Ecotoxicology and environmental safety. 2020 Apr; 192(?):110256. doi: 10.1016/j.ecoenv.2020.110256. [PMID: 32014724]
  • Haiyan Wang, Xu Cheng, Yuqing Liu, Shanshan Li, Yanyan Zhang, Xiangjing Wang, Wensheng Xiang. Improved milbemycin production by engineering two Cytochromes P450 in Streptomyces bingchenggensis. Applied microbiology and biotechnology. 2020 Apr; 104(7):2935-2946. doi: 10.1007/s00253-020-10410-8. [PMID: 32043186]
  • Rong Wang, Run-Zhu Fan, Fu-Qiang Ni, Jun Sang, Xing-Lin Xie, Si-Yuan Luo, Gui-Hua Tang, Sheng Yin. 19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius. Journal of natural products. 2020 02; 83(2):255-267. doi: 10.1021/acs.jnatprod.9b00634. [PMID: 32003565]
  • Zi-Tian Wu, Zhuo-Qing Li, Wei Shi, Ling-Li Wang, Yan Jiang, Ping Li, Hui-Jun Li. The crucial role of metabolic regulation in differential hepatotoxicity induced by furanoids in Dioscorea bulbifera. Chinese journal of natural medicines. 2020 Jan; 18(1):57-69. doi: 10.1016/s1875-5364(20)30005-4. [PMID: 31955824]
  • Renata Zawirska-Wojtasiak, Beata Jankowska, Paulina Piechowska, Sylwia Mildner-Szkudlarz. Vitamin C and aroma composition of fresh leaves from Kalanchoe pinnata and Kalanchoe daigremontiana. Scientific reports. 2019 12; 9(1):19786. doi: 10.1038/s41598-019-56359-1. [PMID: 31875020]
  • Yong Zhao, Louise Kjaerulff, Kenneth T Kongstad, Allison M Heskes, Birger Lindberg Møller, Dan Staerk. 2(5H)-Furanone sesquiterpenes from Eremophila bignoniiflora: High-resolution inhibition profiling and PTP1B inhibitory activity. Phytochemistry. 2019 Oct; 166(?):112054. doi: 10.1016/j.phytochem.2019.112054. [PMID: 31284174]
  • Humaira Rehman, Sarwat Jahan, Imdad Ullah, Svante Winberg. Toxicological effects of furan on the reproductive system of male rats: An 'in vitro' and 'in vivo'-based endocrinological and spermatogonial study. Chemosphere. 2019 Sep; 230(?):327-336. doi: 10.1016/j.chemosphere.2019.05.063. [PMID: 31108444]
  • Jun Guo, Runmin Zhao, Jiaqi Li, Dongyan Wu, Qiyue Yang, Yan Zhang, Shuo Wang. Furan formation from ingredient interactions and furan mitigation by sugar alcohols and antioxidants of bamboo leaves in milk beverage model systems. Journal of the science of food and agriculture. 2019 Aug; 99(11):4993-4999. doi: 10.1002/jsfa.9739. [PMID: 30977142]
  • Humaira Rehman, Imdad Ullah, Mehwish David, Asad Ullah, Sarwat Jahan. Neonatal exposure to furan alters the development of reproductive systems in adult male Sprague Dawley rats. Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association. 2019 Aug; 130(?):231-241. doi: 10.1016/j.fct.2019.05.020. [PMID: 31121209]
  • Judith Lauvai, Anna-Karina Becker, Katja Lehnert, Monika Schumacher, Bettina Hieronimus, Walter Vetter, Lutz Graeve. The Furan Fatty Acid 9M5 Acts as a Partial Ligand to Peroxisome Proliferator-Activated Receptor gamma and Enhances Adipogenesis in 3T3-L1 Preadipocytes. Lipids. 2019 05; 54(5):277-288. doi: 10.1002/lipd.12152. [PMID: 31087413]
  • Yuan Yuan, Xuan Wu, Xu Zhang, Yilin Hong, Haiyang Yan. Ameliorative effect of salidroside from Rhodiola Rosea L. on the gut microbiota subject to furan-induced liver injury in a mouse model. Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association. 2019 Mar; 125(?):333-340. doi: 10.1016/j.fct.2019.01.007. [PMID: 30654097]
  • Ye Zhou, Wei Fan, Fuxiang Chu, Chengzhang Wang, Dong Pei. Identification of Volatile Oxidation Compounds as Potential Markers of Walnut Oil Quality. Journal of food science. 2018 Nov; 83(11):2745-2752. doi: 10.1111/1750-3841.14342. [PMID: 30370923]
  • Ashraf Awad, Samah R Khalil, Mayada Ragab Farag, Mohamed Abdo Nassan. Differential susceptibility of kidneys and livers to proliferative processes and transcriptional level of the genes encoding desmin, vimentin, connexin 43, and nestin in rats exposed to furan. Ecotoxicology and environmental safety. 2018 Oct; 162(?):235-244. doi: 10.1016/j.ecoenv.2018.07.003. [PMID: 29990736]
  • H Meglouli, A Lounès-Hadj Sahraoui, M Magnin-Robert, B Tisserant, M Hijri, J Fontaine. Arbuscular mycorrhizal inoculum sources influence bacterial, archaeal, and fungal communities' structures of historically dioxin/furan-contaminated soil but not the pollutant dissipation rate. Mycorrhiza. 2018 Oct; 28(7):635-650. doi: 10.1007/s00572-018-0852-x. [PMID: 29987429]
  • Antonio Jiménez-Pacheco, María Salinero-Bachiller, María C Iribar, Alfonso López-Luque, José L Miján-Ortiz, Jose M Peinado. Furan and p-xylene as candidate biomarkers for prostate cancer. Urologic oncology. 2018 May; 36(5):243.e21-243.e27. doi: 10.1016/j.urolonc.2017.12.026. [PMID: 29395956]
  • Linda G Kahn, Xiaoxia Han, Tony T Koshy, Yongzhao Shao, Dinh Binh Chu, Kurunthachalam Kannan, Leonardo Trasande. Adolescents exposed to the World Trade Center collapse have elevated serum dioxin and furan concentrations more than 12years later. Environment international. 2018 02; 111(?):268-278. doi: 10.1016/j.envint.2017.11.026. [PMID: 29246432]
  • Naoki Mori. Synthetic studies on optically active furofuran and diarylbutane lignans. Bioscience, biotechnology, and biochemistry. 2018 Jan; 82(1):1-8. doi: 10.1080/09168451.2017.1407235. [PMID: 29207906]
  • Ivonne M C M Rietjens, P Dussort, Helmut Günther, Paul Hanlon, Hiroshi Honda, Angela Mally, Sue O'Hagan, Gabriele Scholz, Albrecht Seidel, James Swenberg, Justin Teeguarden, Gerhard Eisenbrand. Exposure assessment of process-related contaminants in food by biomarker monitoring. Archives of toxicology. 2018 Jan; 92(1):15-40. doi: 10.1007/s00204-017-2143-2. [PMID: 29302712]
  • Shengjuan Dong, Baocai Li, Weifeng Dai, Dong Wang, Yi Qin, Mi Zhang. Sesqui- and Diterpenoids from the Radix of Curcuma aromatica. Journal of natural products. 2017 12; 80(12):3093-3102. doi: 10.1021/acs.jnatprod.6b01100. [PMID: 29236488]
  • Tomas Corcoran, Sonya Ting, Emilie Mas, Michael Phillips, Edmond O'Loughlin, Anne Barden, Trevor A Mori. Hyperbaric oxygen therapy is not associated with oxidative stress assessed using plasma F2-isoprostanes and isofurans. Prostaglandins, leukotrienes, and essential fatty acids. 2017 Dec; 127(?):16-19. doi: 10.1016/j.plefa.2017.10.003. [PMID: 29156153]
  • M Pinciroli, R Domínguez-Perles, A Abellán, A Guy, T Durand, C Oger, J M Galano, F Ferreres, A Gil-Izquierdo. Comparative Study of the Phytoprostane and Phytofuran Content of indica and japonica Rice (Oryza sativa L.) Flours. Journal of agricultural and food chemistry. 2017 Oct; 65(40):8938-8947. doi: 10.1021/acs.jafc.7b03482. [PMID: 28931281]
  • Marco Müller, Melanie Hogg, Kerstin Ulms, Walter Vetter. Concentrations, Stability, and Isolation of the Furan Fatty Acid 9-(3-Methyl-5-pentylfuran-2-yl)-nonanoic Acid from Disposable Latex Gloves. Journal of agricultural and food chemistry. 2017 Sep; 65(36):7919-7925. doi: 10.1021/acs.jafc.7b02444. [PMID: 28817932]
  • Rasha T Alam, Ehsan H Abu Zeid, Tamer S Imam. Protective role of quercetin against hematotoxic and immunotoxic effects of furan in rats. Environmental science and pollution research international. 2017 Feb; 24(4):3780-3789. doi: 10.1007/s11356-016-8108-9. [PMID: 27889890]
  • Antoine Petrelli, Eric Samain, Stéphanie Pradeau, Sami Halila, Sébastien Fort. Efficient Conjugation of Oligosaccharides to Polymer Particles through Furan/Maleimide Diels-Alder Reaction: Application to the Capture of Carbohydrate-Binding Proteins. Chembiochem : a European journal of chemical biology. 2017 Jan; 18(2):206-212. doi: 10.1002/cbic.201600509. [PMID: 27862786]
  • María S Mariotti-Celis, Rommy N Zúñiga, Pablo Cortés, Franco Pedreschi. A Kinetic Study of Furan Formation in Wheat Flour-Based Model Systems during Frying. Journal of food science. 2017 Jan; 82(1):232-239. doi: 10.1111/1750-3841.13552. [PMID: 27886377]
  • Tamao Ishida, Kurumi Kume, Kota Kinjo, Tetsuo Honma, Kengo Nakada, Hironori Ohashi, Takushi Yokoyama, Akiyuki Hamasaki, Haruno Murayama, Yusuke Izawa, Masaru Utsunomiya, Makoto Tokunaga. Efficient Decarbonylation of Furfural to Furan Catalyzed by Zirconia-Supported Palladium Clusters with Low Atomicity. ChemSusChem. 2016 Dec; 9(24):3441-3447. doi: 10.1002/cssc.201601232. [PMID: 27813287]
  • Sang Mi Lee, Jieun Oh, Byung-Serk Hurh, Gwi-Hwa Jeong, Young-Keum Shin, Young-Suk Kim. Volatile Compounds Produced by Lactobacillus paracasei During Oat Fermentation. Journal of food science. 2016 Dec; 81(12):C2915-C2922. doi: 10.1111/1750-3841.13547. [PMID: 27925257]
  • Alice Thürer, Michael Granvogl. Generation of Desired Aroma-Active as Well as Undesired Toxicologically Relevant Compounds during Deep-Frying of Potatoes with Different Edible Vegetable Fats and Oils. Journal of agricultural and food chemistry. 2016 Nov; 64(47):9107-9115. doi: 10.1021/acs.jafc.6b04749. [PMID: 27806575]
  • Hatice Baş, Dilek Pandır, Suna Kalender. Furan-induced hepatotoxic and hematologic changes in diabetic rats: the protective role of lycopene. Arhiv za higijenu rada i toksikologiju. 2016 Sep; 67(3):194-203. doi: 10.1515/aiht-2016-67-2762. [PMID: 27749258]
  • Yuan Yuan, Dongyan Chen, Huangyou Liu, Sijia Wu, Haiyang Yan. A Comparison Study of Frying Conditions on Furan Formation in 3 Potato Varieties. Journal of food science. 2016 Aug; 81(8):T2114-21. doi: 10.1111/1750-3841.13386. [PMID: 27376628]
  • Tomas B Corcoran, Emilie Mas, Anne E Barden, L Jackson Roberts, Trevor A Mori, Edmond O'Loughlin. Controlled moderate hypovolaemia in healthy volunteers is not associated with the development of oxidative stress assessed by plasma F2-isoprostanes and isofurans. Prostaglandins & other lipid mediators. 2016 07; 124(?):34-8. doi: 10.1016/j.prostaglandins.2016.07.001. [PMID: 27381810]
  • Yi-Ru Wang, Lei Feng, Liang Xu, Yan Li, Dan-Dan Wang, Jie Hou, Kun Zhou, Qiang Jin, Guang-Bo Ge, Jing-Nan Cui, Ling Yang. A rapid-response fluorescent probe for the sensitive and selective detection of human albumin in plasma and cell culture supernatants. Chemical communications (Cambridge, England). 2016 05; 52(36):6064-7. doi: 10.1039/c6cc00119j. [PMID: 26971859]
  • Bei Zhang, Yan-Hong Li, Yang Liu, Yu-Rong Chen, En-Shan Pan, Wen-Wei You, Pei-Liang Zhao. Design, synthesis and biological evaluation of novel 1,2,4-triazolo [3,4-b][1,3,4] thiadiazines bearing furan and thiophene nucleus. European journal of medicinal chemistry. 2015 Oct; 103(?):335-42. doi: 10.1016/j.ejmech.2015.08.053. [PMID: 26363869]
  • Alex E Grill, Thaddeus Schmitt, Leah A Gates, Ding Lu, Dipankar Bandyopadhyay, Jian-Min Yuan, Sharon E Murphy, Lisa A Peterson. Abundant Rodent Furan-Derived Urinary Metabolites Are Associated with Tobacco Smoke Exposure in Humans. Chemical research in toxicology. 2015 Jul; 28(7):1508-16. doi: 10.1021/acs.chemrestox.5b00189. [PMID: 26114498]
  • Rajan Maheswaran, Savarimuthu Ignacimuthu. Effect of confertifolin from Polygonum hydropiper L. against dengue vector mosquitoes Aedes aegypti L. Environmental science and pollution research international. 2015 Jun; 22(11):8280-7. doi: 10.1007/s11356-014-3936-y. [PMID: 25523289]
  • Tzong-Huei Lee, Ming-Shian Lee, Horng-Huey Ko, Jih-Jung Chen, Hsun-Shuo Chang, Mei-Hwei Tseng, Sheng-Yang Wang, Chien-Chih Chen, Yueh-Hsiung Kuo. New Furanone and Sesquiterpene from the Pericarp of Calocedrus formosana. Natural product communications. 2015 Jun; 10(6):845-6. doi: ". [PMID: 26197496]
  • Kyeong-Hwa Seo, Dae-Young Lee, Rak-Hun Jeong, Dong-Sung Lee, Young-Eon Kim, Eock-Kee Hong, Youn-Chul Kim, Nam-In Baek. Neuroprotective effect of prenylated arylbenzofuran and flavonoids from morus alba fruits on glutamate-induced oxidative injury in HT22 hippocampal cells. Journal of medicinal food. 2015 Apr; 18(4):403-8. doi: 10.1089/jmf.2014.3196. [PMID: 25514545]
  • Mitsuo Miyazawa, Hiroshi Nakahashi, Yusei Kashima, Ryota Motooka, Nobuyuki Hara, Hiroki Nakagawa, Takashi Yoshii, Atsushi Usami, Shinsuke Marumoto. Chemical Composition and Aroma Evaluation of Essential Oils from Skunk Cabbage (Symplocarpus foetidus). Journal of oleo science. 2015; 64(12):1329-36. doi: 10.5650/jos.ess15161. [PMID: 26632948]
  • Christine Wendlinger, Walter Vetter. High concentrations of furan fatty acids in organic butter samples from the German market. Journal of agricultural and food chemistry. 2014 Aug; 62(34):8740-4. doi: 10.1021/jf502975b. [PMID: 25098958]
  • Constantina Nasopoulou, Johanna Pohjanen, Janne J Koskimäki, Ioannis Zabetakis, Anna Maria Pirttilä. Localization of strawberry (Fragaria x ananassa) and Methylobacterium extorquens genes of strawberry flavor biosynthesis in strawberry tissue by in situ hybridization. Journal of plant physiology. 2014 Aug; 171(13):1099-105. doi: 10.1016/j.jplph.2014.03.018. [PMID: 24973582]
  • Enting Wang, Fang Chen, Xiaosong Hu, Yuan Yuan. Protective effects of apigenin against furan-induced toxicity in mice. Food & function. 2014 Aug; 5(8):1804-12. doi: 10.1039/c4fo00038b. [PMID: 24914499]
  • Gerard M Cooke, Marnie Taylor, Christine Bourque, Ivan Curran, Susan Gurofsky, Santokh Gill. Effects of furan on male rat reproduction parameters in a 90-day gavage study. Reproductive toxicology (Elmsford, N.Y.). 2014 Jul; 46(?):85-90. doi: 10.1016/j.reprotox.2014.02.003. [PMID: 24632374]
  • Sherry L Spinelli, Katie L Lannan, Ann E Casey, Amanda Croasdell, Timothy M Curran, Kelly F Henrichs, Stephen J Pollock, Ginger A Milne, Majed A Refaai, Charles W Francis, Richard P Phipps, Neil Blumberg. Isoprostane and isofuran lipid mediators accumulate in stored red blood cells and influence platelet function in vitro. Transfusion. 2014 Jun; 54(6):1569-79. doi: 10.1111/trf.12485. [PMID: 24192515]
  • Rialet Pieters, Jean-François Focant. Dioxin, furan and PCB serum levels in a South African Tswana population: comparing the polluting effects of using different cooking and heating fuels. Environment international. 2014 May; 66(?):71-8. doi: 10.1016/j.envint.2014.01.019. [PMID: 24531408]
  • Joseph Salamoun, Shelby Anderson, James C Burnett, Rick Gussio, Peter Wipf. Synthesis of heterocyclic triads by Pd-catalyzed cross-couplings and evaluation of their cell-specific toxicity profile. Organic letters. 2014 Apr; 16(7):2034-7. doi: 10.1021/ol500620m. [PMID: 24641272]
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