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Akkermansia muciniphila

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Turck, Dominique; Bohn, Torsten; Castenmiller, Jacqueline; De Henauw, Stefaan; Hirsch-Ernst, Karen Ildico; Maciuk, Alexandre; Mangelsdorf, Inge; McArdle, Harry J; Naska, Androniki; Pelaez, Carmen; Pentieva, Kristina; Siani, Alfonso; Thies, Frank; Tsabouri, Sophia; Vinceti, Marco; Cubadda, Francesco;
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Shuoker, Bashar; Pichler, Michael J.; Jin, Chunsheng; Sakanaka, Hiroka; Wu, Haiyang; Gascueña, Ana Martínez; Liu, Jining; Nielsen, Tine Sofie; Holgersson, Jan; Nordberg Karlsson, Eva; Juge, Nathalie; Meier, Sebastian; Morth, Jens Preben; Karlsson, Niclas G.; Abou Hachem, Maher (2023-04-01).
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can then get access to the de-capped O-glycans and the mucin peptide chain, both of which it can utilize as an energy source. The released monosaccharides are distributed to the environment where other mucus-associated gut bacteria can utilize them. This way
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Frenzel, Thomas; Heinonen, Marina; Marchelli, Rosangela; Neuhäuser-Berthold, Monika; Poulsen, Morten; Prieto Maradona, Miguel; Schlatter, Josef Rudolf; van Loveren, Henk; Ackerl, Reinhard; Knutsen, Helle Katrine (September 2021).
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van Passel, Mark W. J.; Kant, Ravi; Zoetendal, Erwin G.; Plugge, Caroline M.; Derrien, Muriel; Malfatti, Stephanie A.; Chain, Patrick S. G.; Woyke, Tanja; Palva, Airi; de Vos, Willem M.; Smidt, Hauke (3 March 2011).
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is found in about 90% of healthy humans, makes up about 1% to 3% of the fecal microbiota and colonizes the gut during the first year of life. Its prevalence can decrease with age or in disease states.
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which aid in growth of other bacteria and maintain healthy mucus turnover. It also maintains microbial balance by competing with and inhibiting the over-growth of other mucin degrading bacteria.
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Ouwerkerk, Janneke P.; van der Ark, Kees C. H.; Davids, Mark; Claassens, Nico J.; Finestra, Teresa Robert; de Vos, Willem M.; Belzer, Clara; Schloss, P. D. (1 December 2016).
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contributes to nutrient-sharing in gut associated microbial communities. Mucin degradation can also lead to the production of beneficial products such as
387:, "are safe and well tolerated in overweight and obese individuals." However, its safety for use as a treatment during disease states is unestablished. 1404: 1417: 1052:
Caputo, Aurélia; Dubourg, Grégory; Croce, Olivier; Gupta, Sushim; Robert, Catherine; Papazian, Laurent; Rolain, Jean-Marc; Raoult, Didier (2015).
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is culturable under anaerobic conditions on medium containing porcine gastric mucin or synthetic medium containing protein source with glucose,
941:"Sialidases and fucosidases of Akkermansia muciniphila are crucial for growth on mucin and nutrient sharing with mucus-associated gut bacteria" 257:
as its sole source of carbon, nitrogen and energy, and is hence considered a specialist. It starts the mucin degradation process by removing
1489: 778:"Disease-associated dysbiosis and potential therapeutic role of Akkermansia muciniphila, a mucus degrading bacteria of gut microbiome" 32: 1494: 660:
and improved metabolic health during a dietary intervention in obesity: relationship with gut microbiome richness and ecology"
1422: 1155:"Effect of inulin, galacto-oligosaccharides, and polyphenols on the gut microbiota, with a focus on Akkermansia muciniphila" 1292: 354: 40: 1356: 1484: 1448: 414: 351:
about antibiotic resistance genes -- Urmite article makes reference to type-strain resistance genes; need a source.
232: 185: 1318: 716:"Rational consideration of Akkermansia muciniphila targeting intestinal health: advantages and challenges" 410: 283: 295: 192:
is Muc (=ATCC BAA-835 =CIP 107961). It is under preliminary research for its potential association with
146: 98: 86: 1391: 1266: 1217: 1106:"Safety of pasteurised Akkermansia muciniphila as a novel food pursuant to Regulation (EU) 2015/2283" 1006: 846: 608: 110: 1204:
Derrien, Muriel; Collado, M. Carmen; Ben-Amor, Kaouther; Salminen, Seppo; de Vos, Willem M. (2008).
597:"Cross-talk between Akkermansia muciniphila and intestinal epithelium controls diet-induced obesity" 291: 1277: 1206:"The Mucin Degrader Akkermansia muciniphila Is an Abundant Resident of the Human Intestinal Tract" 893:
Iwaza, Rim; Wasfy, Reham Magdy; Dubourg, Grégory; Raoult, Didier; Lagier, Jean-Christophe (2022).
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It colonizes the gastrointestinal tract of humans and other animals and can be found within the
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at Wageningen University of the Netherlands. It belongs to the phylum Verrucomicrobiota and its
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Tian, Ruocen; Yu, Leilei; Tian, Fengwei; Zhao, Jianxin; Chen, Wei; Zhai, Qixiao (2024-05-07).
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Dao, Maria Carlota; Everard, Amandine; Aron-Wisnewsky, Judith; et al. (March 2016).
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Please expand the section to include this information. Further details may exist on the
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Zhang, Ting; Li, Qianqian; Cheng, Lei; Buch, Heena; Zhang, Faming (November 2019).
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Muc as a novel food, provided the cells are killed beyond the limit of detection.
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Proceedings of the National Academy of Sciences of the United States of America
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Everard, Amandine; Belzer, Clara; Geurts, Lucie; et al. (28 May 2013).
556:: a conserved intestinal symbiont that acts as the gatekeeper of our mucosa" 455: 311: 270: 1247: 1186: 1139: 1089: 1038: 876: 819: 757: 695: 686: 640: 581: 533: 481: 339: 524: 503: 1335: 1229: 858: 572: 551: 315: 266: 62: 1409: 1370: 1365: 1170: 776:
Aggarwal, Vidushi; Sunder, Sushant; Verma, Smita Rastogi (2022-12-01).
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is a human intestinal symbiont, isolated from human feces. It is a
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gen. nov., sp. nov., a human intestinal mucin-degrading bacterium"
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International Journal of Systematic and Evolutionary Microbiology
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Luo, Yuheng; Lan, Cong; Li, Hua; et al. (2022-10-17).
1290: 1325: 440:"Akkermansia muciniphila is a promising probiotic" 327:Urmite was sequenced in its entirety from a human 545: 543: 497: 495: 493: 491: 8: 178:-degrading bacterium belonging to the genus 235:of the epithelial crypts as well as in the 184:, discovered in 2004 by Muriel Derrien and 1313: 1270: 31: 20: 1237: 1129: 1079: 1069: 1028: 1018: 972: 914: 866: 809: 747: 685: 675: 630: 620: 571: 523: 471: 265:capping sugars from the end of the mucin 1297: 1286:- the Bacterial Diversity Metadatabase 430: 1210:Applied and Environmental Microbiology 839:Applied and Environmental Microbiology 310:of the type strain contains 2,664,102 7: 888: 886: 771: 769: 767: 709: 707: 705: 14: 239:. It specifically resides at the 223:-forming, oval-shaped bacterium. 1300: 338: 318:contains 5,644 unique proteins. 1: 903:Frontiers in Gastroenterology 1020:10.1371/journal.pone.0016876 720:npj Biofilms and Microbiomes 41:Scanning electron micrograph 269:chain with fucosidases and 1511: 1490:Bacteria described in 2004 957:10.1038/s41467-023-37533-6 916:10.3389/fgstr.2022.1024393 794:10.1007/s12223-022-00973-6 732:10.1038/s41522-022-00338-4 677:10.1136/gutjnl-2014-308778 1262:"Akkermansia muciniphila" 1071:10.1186/s13062-015-0041-1 152: 145: 52:Scientific classification 50: 39: 30: 23: 1122:10.2903/j.efsa.2021.6780 411:galacto-oligosaccharides 233:intestinal mucosal layer 1436:akkermansia-muciniphila 1357:Akkermansia muciniphila 1327:Akkermansia muciniphila 1280:Akkermansia muciniphila 993:Akkermansia muciniphila 897:Akkermansia muciniphila 658:Akkermansia muciniphila 622:10.1073/pnas.1219451110 554:Akkermansia muciniphila 506:Akkermansia muciniphila 456:10.1111/1751-7915.13410 444:Microbial Biotechnology 419:Akkermansia muciniphila 399:Akkermansia muciniphila 381:Akkermansia muciniphila 284:short chain fatty acids 171:Akkermansia muciniphila 156:Akkermansia muciniphila 45:Akkermansia muciniphila 25:Akkermansia muciniphila 1495:Gram-negative bacteria 349:is missing information 227:Ecology and metabolism 945:Nature Communications 550:de Vos, W.M. (2017). 525:10.1099/ijs.0.02873-0 296:N-acetylgalactosamine 1267:Encyclopedia of Life 1230:10.1128/AEM.01226-07 859:10.1128/AEM.01641-16 782:Folia Microbiologica 573:10.1099/mic.0.000444 502:Derrien, M. (2004). 16:Species of bacterium 1222:2008ApEnM..74.1646D 1159:Food & Function 1011:2011PLoSO...616876V 851:2016ApEnM..82.6983O 613:2013PNAS..110.9066E 292:N-acetylglucosamine 243:-anoxic interface. 194:metabolic disorders 162:Derrien et al. 2004 138:A. muciniphila 1171:10.1039/d4fo00428k 552:"Microbe Profile: 421:in the human gut. 415:relative abundance 99:Verrucomicrobiales 1485:Verrucomicrobiota 1472: 1471: 1457:Open Tree of Life 1319:Taxon identifiers 845:(23): 6983–6993. 607:(22): 9066–9071. 383:, either live or 375:Human consumption 372: 371: 167: 166: 75:Verrucomicrobiota 1502: 1465: 1464: 1452: 1451: 1439: 1438: 1426: 1425: 1413: 1412: 1400: 1399: 1387: 1386: 1374: 1373: 1361: 1360: 1359: 1346: 1345: 1344: 1314: 1305: 1304: 1296: 1274: 1251: 1241: 1216:(5): 1646–1648. 1191: 1190: 1165:(9): 4763–4772. 1150: 1144: 1143: 1133: 1100: 1094: 1093: 1083: 1073: 1049: 1043: 1042: 1032: 1022: 985: 979: 978: 976: 935: 929: 928: 918: 890: 881: 880: 870: 830: 824: 823: 813: 773: 762: 761: 751: 711: 700: 699: 689: 679: 651: 645: 644: 634: 624: 592: 586: 585: 575: 547: 538: 537: 527: 518:(5): 1469–1476. 499: 486: 485: 475: 450:(6): 1109–1125. 435: 367: 364: 358: 342: 334: 273:, respectively. 158: 87:Verrucomicrobiae 35: 21: 1510: 1509: 1505: 1504: 1503: 1501: 1500: 1499: 1475: 1474: 1473: 1468: 1460: 1455: 1447: 1442: 1434: 1429: 1421: 1416: 1408: 1403: 1395: 1390: 1382: 1377: 1369: 1364: 1355: 1354: 1349: 1340: 1339: 1334: 1321: 1311: 1299: 1291: 1278:Type strain of 1258: 1203: 1200: 1198:Further reading 1195: 1194: 1152: 1151: 1147: 1102: 1101: 1097: 1051: 1050: 1046: 991:"The Genome of 987: 986: 982: 937: 936: 932: 892: 891: 884: 832: 831: 827: 775: 774: 765: 713: 712: 703: 653: 652: 648: 594: 593: 589: 549: 548: 541: 501: 500: 489: 437: 436: 432: 427: 409:Consumption of 407: 394:has recognized 377: 368: 362: 359: 352: 343: 304: 253:is able to use 229: 202: 163: 160: 154: 141: 127: 113: 111:Akkermansiaceae 101: 89: 77: 65: 17: 12: 11: 5: 1508: 1506: 1498: 1497: 1492: 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267:O-glycan 106:Family: 70:Phylum: 63:Bacteria 58:Domain: 1410:3229029 1366:BacDive 1307:Biology 1264:at the 1239:2258631 1218:Bibcode 1131:8409316 1081:4333879 1030:3048395 1007:Bibcode 868:5103097 847:Bibcode 811:9122250 749:9576740 632:3670398 609:Bibcode 473:6801136 118:Genus: 94:Order: 82:Class: 1449:239935 1423:959114 1397:973598 1293:Portal 1282:at Bac 1246:  1236:  1185:  1177:  1138:  1128:  1088:  1078:  1037:  1027:  971:  963:  923:  875:  865:  818:  808:  800:  756:  746:  738:  694:  639:  629:  580:  532:  480:  470:  462:  325:strain 259:fucose 237:caecum 219:, non- 217:motile 215:, non- 1462:39156 1384:65V7S 1371:17849 379:Oral 329:feces 255:mucin 221:spore 207:is a 176:mucin 1444:NCBI 1431:LPSN 1418:ITIS 1405:GBIF 1284:Dive 1244:PMID 1183:PMID 1175:ISSN 1136:PMID 1086:PMID 1035:PMID 961:ISSN 921:ISSN 873:PMID 816:PMID 798:ISSN 754:PMID 736:ISSN 692:PMID 637:PMID 578:PMID 564:1635 530:PMID 478:PMID 460:ISSN 405:Diet 390:The 294:and 261:and 241:oxic 1392:EoL 1379:CoL 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Index


Scanning electron micrograph
Scientific classification
Bacteria
Verrucomicrobiota
Verrucomicrobiae
Verrucomicrobiales
Akkermansiaceae
Akkermansia
Binomial name
mucin
Akkermansia
Willem de Vos
type strain
metabolic disorders
gram-negative
anaerobic
motile
spore
intestinal mucosal layer
caecum
oxic
mucin
fucose
sialic acid
O-glycan
sialidases
short chain fatty acids
N-acetylglucosamine
N-acetylgalactosamine

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