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Summary Expression Gene Literature (11969) GO Terms (0) Nucleotides (8) Proteins (2) Interactants (1441) Wiki
ECB--23018802

Papers associated with LOC100887844 (and fat4)



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Long-Chain Bases from Sea Cucumber Alleviate Obesity by Modulating Gut Microbiota., Hu S, Xu Y, Gao X, Li S, Jiang W, Liu Y, Su L, Yang H., Mar Drugs. August 1, 2019; 17 (8):             


Synergistic effect of sea cucumber saponins and EPA-enriched phospholipids on insulin resistance in high-fat diet-induced obese mice., Han XQ, Zhang LY, Ding L, Shi HH, Xue CH, Zhang TT, Wang YM., Food Funct. July 17, 2019; 10 (7): 3955-3964.


Saponin-enriched extracts from body wall and Cuvierian tubule of Holothuria leucospilota reduce fat accumulation and suppress lipogenesis in Caenorhabditis elegans., Chumphoochai K, Chalorak P, Suphamungmee W, Sobhon P, Meemon K., J Sci Food Agric. June 1, 2019; 99 (8): 4158-4166.


The effect of sex, season and gametogenic cycle on gonad yield, biochemical composition and quality traits of Paracentrotus lividus along the North Atlantic coast of Portugal., Rocha F, Baião LF, Moutinho S, Reis B, Oliveira A, Arenas F, Maia MRG, Fonseca AJM, Pintado M, Valente LMP., Sci Rep. February 28, 2019; 9 (1): 2994.          


Fucosylated chondroitin sulfate oligosaccharides from Isostichopus badionotus regulates lipid disorder in C57BL/6 mice fed a high-fat diet., Li S, Li J, Mao G, Hu Y, Ye X, Tian D, Linhardt RJ, Chen S., Carbohydr Polym. December 1, 2018; 201 634-642.


Sulfated Polysaccharide from Sea Cucumber and its Depolymerized Derivative Prevent Obesity in Association with Modification of Gut Microbiota in High-Fat Diet-Fed Mice., Zhu Z, Zhu B, Sun Y, Ai C, Wang L, Wen C, Yang J, Song S, Liu X., Mol Nutr Food Res. December 1, 2018; 62 (23): e1800446.


A fucoidan from sea cucumber Pearsonothuria graeffei with well-repeated structure alleviates gut microbiota dysbiosis and metabolic syndromes in HFD-fed mice., Li S, Li J, Mao G, Wu T, Hu Y, Ye X, Tian D, Linhardt RJ, Chen S., Food Funct. October 17, 2018; 9 (10): 5371-5380.


The changes in chemical composition of Holothuria tubulosa (Gmelin, 1788) with ambient-drying and oven-drying methods., Bilgin Ş, Öztürk Tanrikulu H., Food Sci Nutr. September 1, 2018; 6 (6): 1456-1461.


Saponins from Sea Cucumber and Their Biological Activities., Zhao YC, Xue CH, Zhang TT, Wang YM., J Agric Food Chem. July 18, 2018; 66 (28): 7222-7237.


Effects of processing on proximate and fatty acid compositions of six commercial sea cucumber species of Sri Lanka., Nishanthan G, Kumara PADA, de Croos MDST, Prasada DVP, Dissanayake DCT., J Food Sci Technol. May 1, 2018; 55 (5): 1933-1941.


Saponin from sea cucumber exhibited more significant effects than ginsenoside on ameliorating high fat diet-induced obesity in C57BL/6 mice., Meng J, Hu X, Zhang T, Dong P, Li Z, Xue C, Chang Y, Wang Y., Medchemcomm. April 1, 2018; 9 (4): 725-734.


Sea cucumber saponin liposomes ameliorate obesity-induced inflammation and insulin resistance in high-fat-diet-fed mice., Chen C, Han X, Dong P, Li Z, Yanagita T, Xue C, Zhang T, Wang Y., Food Funct. February 21, 2018; 9 (2): 861-870.


Non-destructive geographical traceability of sea cucumber (Apostichopus japonicus) using near infrared spectroscopy combined with chemometric methods., Guo X, Cai R, Wang S, Tang B, Li Y, Zhao W., R Soc Open Sci. January 1, 2018; 5 (1): 170714.          


Macromolecular properties and hypolipidemic effects of four sulfated polysaccharides from sea cucumbers., Li S, Li J, Zhi Z, Wei C, Wang W, Ding T, Ye X, Hu Y, Linhardt RJ, Chen S., Carbohydr Polym. October 1, 2017; 173 330-337.


Identification, expression analysis, and the regulating function on C/EBPs of KLF10 in Dalian purple sea urchin, Strongylocentrotus nudus., Wu K, Jia Z, Wang Q, Wei Z, Zhou Z, Liu X., Genome. October 1, 2017; 60 (10): 837-849.


A high fat diet enriched with sea cucumber gut powder provides cardio-protective and anti-obesity effects in C57BL/6 mice., Gangadaran S, Cheema SK., Food Res Int. September 1, 2017; 99 (Pt 1): 799-806.


Proximate composition and mineral contents in the body wall of two species of sea cucumber from Oman Sea., Barzkar N, Attaran Fariman G, Taheri A., Environ Sci Pollut Res Int. August 1, 2017; 24 (23): 18907-18911.


Long-chain bases from sea cucumber mitigate endoplasmic reticulum stress and inflammation in obesity mice., Hu S, Wang J, Wang J, Xue C, Wang Y., J Food Drug Anal. July 1, 2017; 25 (3): 628-636.        


Sulfation pattern of fucose branches affects the anti-hyperlipidemic activities of fucosylated chondroitin sulfate., Wu N, Zhang Y, Ye X, Hu Y, Ding T, Chen S., Carbohydr Polym. August 20, 2016; 147 1-7.


Saponin-enriched sea cucumber extracts exhibit an antiobesity effect through inhibition of pancreatic lipase activity and upregulation of LXR-β signaling., Guo L, Gao Z, Zhang L, Guo F, Chen Y, Li Y, Huang C., Pharm Biol. August 1, 2016; 54 (8): 1312-25.


Proximate composition and nutritional quality of deep sea growth sea cucumbers (Stichopus japonicus) from different origins., Gao Y, Li Z, Qi Y, Guo Z, Lin Y, Li W, Hu Y, Zhao Q., J Sci Food Agric. May 1, 2016; 96 (7): 2378-83.


Enrichment, Distribution of Vanadium-Containing Protein in Vanadium-Enriched Sea Cucumber Apostichopus japonicus and the Ameliorative Effect on Insulin Resistance., Liu Y, Zhou Q, Zhao Y, Wang Y, Wang Y, Wang J, Xu J, Xue C., Biol Trace Elem Res. May 1, 2016; 171 (1): 167-75.


Mechanisms of echinochrome potency in modulating diabetic complications in liver., Mohamed AS, Soliman AM, Marie MAS., Life Sci. April 15, 2016; 151 41-49.


Fucoidan from sea cucumber Cucumaria frondosa exhibits anti-hyperglycemic effects in insulin resistant mice via activating the PI3K/PKB pathway and GLUT4., Wang Y, Wang J, Zhao Y, Hu S, Shi D, Xue C., J Biosci Bioeng. January 1, 2016; 121 (1): 36-42.


Simple analysis of total mercury and methylmercury in seafood using heating vaporization atomic absorption spectrometry., Yoshimoto K, Anh HT, Yamamoto A, Koriyama C, Ishibashi Y, Tabata M, Nakano A, Yamamoto M., J Toxicol Sci. January 1, 2016; 41 (4): 489-500.


Sea cucumber cerebrosides and long-chain bases from Acaudina molpadioides protect against high fat diet-induced metabolic disorders in mice., Liu X, Xu J, Xue Y, Gao Z, Li Z, Leng K, Wang J, Xue C, Wang Y., Food Funct. November 1, 2015; 6 (11): 3428-36.


Inhibitory effect of fucosylated chondroitin sulfate from the sea cucumber Acaudina molpadioides on adipogenesis is dependent on Wnt/β-catenin pathway., Xu H, Wang J, Zhang X, Li Z, Wang Y, Xue C., J Biosci Bioeng. January 1, 2015; 119 (1): 85-91.


[Anti-radical activity of products of processing of holothurian Cucumaria japonica and their practical application for lipid stabilization]., Tabakaeva OV, Kalenik TK, Tabakaev AV., Vopr Pitan. January 1, 2015; 84 (1): 66-72.


Sea cucumber and blue mussel: new sources of phospholipid enriched omega-3 fatty acids with a potential role in 3T3-L1 adipocyte metabolism., Vaidya H, Cheema SK., Food Funct. December 1, 2014; 5 (12): 3287-95.


Fucoidan from the sea cucumber Acaudina molpadioides exhibits anti-adipogenic activity by modulating the Wnt/β-catenin pathway and down-regulating the SREBP-1c expression., Xu H, Wang J, Chang Y, Xu J, Wang Y, Long T, Xue C., Food Funct. July 25, 2014; 5 (7): 1547-55.


Fucosylated chondroitin sulfate from sea cucumber improves glucose metabolism and activates insulin signaling in the liver of insulin-resistant mice., Hu SW, Tian YY, Chang YG, Li ZJ, Xue CH, Wang YM., J Med Food. July 1, 2014; 17 (7): 749-57.


Fucosylated chondroitin sulfate from sea cucumber improves insulin sensitivity via activation of PI3K/PKB pathway., Hu S, Chang Y, He M, Wang J, Wang Y, Xue C., J Food Sci. July 1, 2014; 79 (7): H1424-9.


Fucosylated chondroitin sulfate from sea cucumber in combination with rosiglitazone improved glucose metabolism in the liver of the insulin-resistant mice., Hu S, Chang Y, Wang J, Xue C, Li Z, Wang Y., Biosci Biotechnol Biochem. January 1, 2013; 77 (11): 2263-8.


Dietary saponins of sea cucumber ameliorate obesity, hepatic steatosis, and glucose intolerance in high-fat diet-fed mice., Hu X, Li Z, Xue Y, Xu J, Xue C, Wang J, Wang Y., J Med Food. October 1, 2012; 15 (10): 909-16.


[Effects of sea cucumber cerebroside and its long-chain base on lipid and glucose metabolism in obese mice]., Gao Z, Zhou X, Hu XQ, Xue CH, Xu J, Wang YM., Zhejiang Da Xue Xue Bao Yi Xue Ban. January 1, 2012; 41 (1): 60-4.


[Medical and prophylactic properties lipids and antioxidants derived from sea hydrobionts]., Krivoshapko OA, Popov AM., Vopr Pitan. January 1, 2011; 80 (2): 4-8.


Chemical composition and nutritional quality of sea cucumbers., Wen J, Hu C, Fan S., J Sci Food Agric. November 1, 2010; 90 (14): 2469-74.


Inhibitory effects of Fucoidan in 3T3-L1 adipocyte differentiation., Kim MJ, Chang UJ, Lee JS., Mar Biotechnol (NY). January 1, 2009; 11 (5): 557-62.


Validation and interpretation of CALUX as a tool for the estimation of dioxin-like activity in marine biological matrixes., Windal I, Van Wouwe N, Eppe G, Xhrouet C, Debacker V, Baeyens W, De Pauw E, Goeyens L., Environ Sci Technol. March 15, 2005; 39 (6): 1741-8.


cDNA cloning, purification, properties, and function of a beta-1,3-glucan recognition protein from a pyralid moth, Plodia interpunctella., Fabrick JA, Baker JE, Kanost MR., Insect Biochem Mol Biol. June 1, 2003; 33 (6): 579-94.


Tolerance to biodegraded crude oil in marine invertebrate embryos and larvae is associated with expression of a multixenobiotic resistance transporter., Hamdoun AM, Griffin FJ, Cherr GN., Aquat Toxicol. November 13, 2002; 61 (1-2): 127-40.


Structural and functional analysis of the Xestia c-nigrum granulovirus matrix metalloproteinase., Ko R, Okano K, Maeda S., J Virol. December 1, 2000; 74 (23): 11240-6.


Basic and clinical study on the antithrombotic mechanism of glycosaminoglycan extracted from sea cucumber., Li Z, Wang H, Li J, Zhang G, Gao C., Chin Med J (Engl). August 1, 2000; 113 (8): 706-11.


Analyses of glycolipids from fish, shellfish, and sea snake lipids by high-performance liquid chromatography., Lim SY, Park WK, Suzuki H., J Agric Food Chem. March 1, 1999; 47 (3): 960-3.


Molecular analyses of gene expression during sea star spermatogenesis., Boom JD, Smith MJ., J Exp Zool. June 1, 1989; 250 (3): 312-20.

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