Artigos de revistas sobre o tema "Bifidobacterium infantis"
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Sakurai, Takuma, Toshitaka Odamaki e Jin-zhong Xiao. "Production of Indole-3-Lactic Acid by Bifidobacterium Strains Isolated fromHuman Infants". Microorganisms 7, n.º 9 (11 de setembro de 2019): 340. http://dx.doi.org/10.3390/microorganisms7090340.
Texto completo da fonteChen, Yuan Yao, Xin Zhao, Wolfgang Moeder, Hein M. Tun, Elinor Simons, Piushkumar J. Mandhane, Theo J. Moraes et al. "Impact of Maternal Intrapartum Antibiotics, and Caesarean Section with and without Labour on Bifidobacterium and Other Infant Gut Microbiota". Microorganisms 9, n.º 9 (31 de agosto de 2021): 1847. http://dx.doi.org/10.3390/microorganisms9091847.
Texto completo da fonteYoung, Sarah L., Mary A. Simon, Margaret A. Baird, Gerald W. Tannock, Rodrigo Bibiloni, Kate Spencely, Juliette M. Lane et al. "Bifidobacterial Species Differentially Affect Expression of Cell Surface Markers and Cytokines of Dendritic Cells Harvested from Cord Blood". Clinical Diagnostic Laboratory Immunology 11, n.º 4 (julho de 2004): 686–90. http://dx.doi.org/10.1128/cdli.11.4.686-690.2004.
Texto completo da fonteSakurai, T., A. Yamada, N. Hashikura, T. Odamaki e J. Z. Xiao. "Degradation of food-derived opioid peptides by bifidobacteria". Beneficial Microbes 9, n.º 4 (15 de junho de 2018): 675–82. http://dx.doi.org/10.3920/bm2017.0165.
Texto completo da fonteHiraku, Akari, Setsuko Nakata, Mai Murata, Chendong Xu, Natsumi Mutoh, Satoshi Arai, Toshitaka Odamaki et al. "Early Probiotic Supplementation of Healthy Term Infants with Bifidobacterium longum subsp. infantis M-63 Is Safe and Leads to the Development of Bifidobacterium-Predominant Gut Microbiota: A Double-Blind, Placebo-Controlled Trial". Nutrients 15, n.º 6 (14 de março de 2023): 1402. http://dx.doi.org/10.3390/nu15061402.
Texto completo da fontePozo-Rubio, T., J. R. Mujico, A. Marcos, E. Puertollano, I. Nadal, Y. Sanz e E. Nova. "Immunostimulatory effect of faecal Bifidobacterium species of breast-fed and formula-fed infants in a peripheral blood mononuclear cell/Caco-2 co-culture system". British Journal of Nutrition 106, n.º 8 (31 de maio de 2011): 1216–23. http://dx.doi.org/10.1017/s0007114511001656.
Texto completo da fonteHilliard, Margaret A., e David A. Sela. "Transmission and Persistence of Infant Gut-Associated Bifidobacteria". Microorganisms 12, n.º 5 (27 de abril de 2024): 879. http://dx.doi.org/10.3390/microorganisms12050879.
Texto completo da fonteTaft, Diana H., Zachery T. Lewis, Nhu Nguyen, Steve Ho, Chad Masarweh, Vanessa Dunne-Castagna, Daniel J. Tancredi et al. "Bifidobacterium Species Colonization in Infancy: A Global Cross-Sectional Comparison by Population History of Breastfeeding". Nutrients 14, n.º 7 (29 de março de 2022): 1423. http://dx.doi.org/10.3390/nu14071423.
Texto completo da fontePeirotén, A., J. L. Arqués, M. Medina e E. Rodríguez-Mínguez. "Bifidobacterial strains shared by mother and child as source of probiotics". Beneficial Microbes 9, n.º 2 (27 de fevereiro de 2018): 231–38. http://dx.doi.org/10.3920/bm2017.0133.
Texto completo da fonteHaarman, Monique, e Jan Knol. "Quantitative Real-Time PCR Assays To Identify and Quantify Fecal Bifidobacterium Species in Infants Receiving a Prebiotic Infant Formula". Applied and Environmental Microbiology 71, n.º 5 (maio de 2005): 2318–24. http://dx.doi.org/10.1128/aem.71.5.2318-2324.2005.
Texto completo da fonteBozkurt, Hüseyin. "PROBIOTIC BIFIDOBACTERIUM AND A NEW GENERATION POSTBIOTIC: ALGINIC ACID". Inflammatory Bowel Diseases 29, Supplement_1 (26 de janeiro de 2023): S48. http://dx.doi.org/10.1093/ibd/izac247.091.
Texto completo da fonteWong, Chyn Boon, Huidong Huang, Yibing Ning e Jinzhong Xiao. "Probiotics in the New Era of Human Milk Oligosaccharides (HMOs): HMO Utilization and Beneficial Effects of Bifidobacterium longum subsp. infantis M-63 on Infant Health". Microorganisms 12, n.º 5 (17 de maio de 2024): 1014. http://dx.doi.org/10.3390/microorganisms12051014.
Texto completo da fonteYang, Bo, Yingqi Chen, Catherine Stanton, R. Paul Ross, Yuan-Kun Lee, Jianxin Zhao, Hao Zhang e Wei Chen. "Bifidobacterium and Lactobacillus Composition at Species Level and Gut Microbiota Diversity in Infants before 6 Weeks". International Journal of Molecular Sciences 20, n.º 13 (5 de julho de 2019): 3306. http://dx.doi.org/10.3390/ijms20133306.
Texto completo da fonteRoger, Laure C., Adele Costabile, Diane T. Holland, Lesley Hoyles e Anne L. McCartney. "Examination of faecal Bifidobacterium populations in breast- and formula-fed infants during the first 18 months of life". Microbiology 156, n.º 11 (1 de novembro de 2010): 3329–41. http://dx.doi.org/10.1099/mic.0.043224-0.
Texto completo da fonteAbdelazez, Amro, Zafarullah Muhammad, Qiu-Xue Zhang, Zong-Tao Zhu, Heba Abdelmotaal, Rokayya Sami e Xiang-Chen Meng. "Production of a Functional Frozen Yogurt Fortified with Bifidobacterium spp." BioMed Research International 2017 (2017): 1–10. http://dx.doi.org/10.1155/2017/6438528.
Texto completo da fonteQuinn, Erinn, Helen Slattery, Aoife Thompson, Michelle Kilcoyne, Lokesh Joshi e Rita Hickey. "Mining Milk for Factors which Increase the Adherence of Bifidobacterium longum subsp. infantis to Intestinal Cells". Foods 7, n.º 12 (3 de dezembro de 2018): 196. http://dx.doi.org/10.3390/foods7120196.
Texto completo da fonteSingh, Harsh Pratap, Pradip Kumar Sharma, Mahesh Kumar e Parul Sharma. "Measuring the Growth of Lactobacillus fermentum and Bifidobacterium infantis in the presence of N-Acetyl L-Cysteine Hydrochloric Acid". International Journal of Medical and Allied Health Sciences 1, n.º 02 (7 de julho de 2021): 49–55. http://dx.doi.org/10.54618/ijmahs.2021124.
Texto completo da fonteTsuji, H., R. Oozeer, K. Matsuda, T. Matsuki, T. Ohta, K. Nomoto, R. Tanaka et al. "Molecular monitoring of the development of intestinal microbiota in Japanese infants". Beneficial Microbes 3, n.º 2 (1 de junho de 2012): 113–25. http://dx.doi.org/10.3920/bm2011.0038.
Texto completo da fonteSakata, S. "Unification of Bifidobacterium infantis and Bifidobacterium suis as Bifidobacterium longum". INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY 52, n.º 6 (1 de novembro de 2002): 1945–51. http://dx.doi.org/10.1099/ijs.0.02221-0.
Texto completo da fonteSakata, Shinji, Maki Kitahara, Mitsuo Sakamoto, Hidenori Hayashi, Masafumi Fukuyama e Yoshimi Benno. "Unification of Bifidobacterium infantis and Bifidobacterium suis as Bifidobacterium longum." International Journal of Systematic and Evolutionary Microbiology 52, n.º 6 (1 de novembro de 2002): 1945–51. http://dx.doi.org/10.1099/00207713-52-6-1945.
Texto completo da fonteWoodmansey, Emma J., Marion E. T. McMurdo, George T. Macfarlane e Sandra Macfarlane. "Comparison of Compositions and Metabolic Activities of Fecal Microbiotas in Young Adults and in Antibiotic-Treated and Non-Antibiotic-Treated Elderly Subjects". Applied and Environmental Microbiology 70, n.º 10 (outubro de 2004): 6113–22. http://dx.doi.org/10.1128/aem.70.10.6113-6122.2004.
Texto completo da fonteTso, Lauren, Kevin S. Bonham, Alyssa Fishbein, Sophie Rowland e Vanja Klepac-Ceraj. "Targeted High-Resolution Taxonomic Identification of Bifidobacterium longum subsp. infantis Using Human Milk Oligosaccharide Metabolizing Genes". Nutrients 13, n.º 8 (18 de agosto de 2021): 2833. http://dx.doi.org/10.3390/nu13082833.
Texto completo da fonteChichlowski, Maciej, Neil Shah, Jennifer L. Wampler, Steven S. Wu e Jon A. Vanderhoof. "Bifidobacterium longum Subspecies infantis (B. infantis) in Pediatric Nutrition: Current State of Knowledge". Nutrients 12, n.º 6 (28 de maio de 2020): 1581. http://dx.doi.org/10.3390/nu12061581.
Texto completo da fonteBlanco, Guillermo, Lorena Ruiz, Hector Tamés, Patricia Ruas-Madiedo, Florentino Fdez-Riverola, Borja Sánchez, Anália Lourenço e Abelardo Margolles. "Revisiting the Metabolic Capabilities of Bifidobacterium longum susbp. longum and Bifidobacterium longum subsp. infantis from a Glycoside Hydrolase Perspective". Microorganisms 8, n.º 5 (13 de maio de 2020): 723. http://dx.doi.org/10.3390/microorganisms8050723.
Texto completo da fonteMennini, Maurizio, Sofia Reddel, Federica Del Chierico, Simone Gardini, Andrea Quagliariello, Pamela Vernocchi, Rocco Luigi Valluzzi et al. "Gut Microbiota Profile in Children with IgE-Mediated Cow’s Milk Allergy and Cow’s Milk Sensitization and Probiotic Intestinal Persistence Evaluation". International Journal of Molecular Sciences 22, n.º 4 (6 de fevereiro de 2021): 1649. http://dx.doi.org/10.3390/ijms22041649.
Texto completo da fonteDuar, Rebbeca M., David Kyle e Giorgio Casaburi. "Colonization Resistance in the Infant Gut: The Role of B. infantis in Reducing pH and Preventing Pathogen Growth". High-Throughput 9, n.º 2 (27 de março de 2020): 7. http://dx.doi.org/10.3390/ht9020007.
Texto completo da fonteNewton, Dorothy F., Sandra Macfarlane e George T. Macfarlane. "Effects of Antibiotics on Bacterial Species Composition and Metabolic Activities in Chemostats Containing Defined Populations of Human Gut Microorganisms". Antimicrobial Agents and Chemotherapy 57, n.º 5 (12 de fevereiro de 2013): 2016–25. http://dx.doi.org/10.1128/aac.00079-13.
Texto completo da fonteDo Thi, Men, Le Pham Thi, Tuan Tran Van, Tuyet Lan Ninh Thị e Minh Huyen Nguyen Thi. "Isolation and identification of Bifidobacterium spp. from infant intestinal tract". Heavy metals and arsenic concentrations in water, agricultural soil, and rice in Ngan Son district, Bac Kan province, Vietnam 3, n.º 2 (30 de junho de 2020): 125–32. http://dx.doi.org/10.47866/2615-9252/vjfc.104.
Texto completo da fonteBen-Amor, Kaouther, Hans Heilig, Hauke Smidt, Elaine E. Vaughan, Tjakko Abee e Willem M. de Vos. "Genetic Diversity of Viable, Injured, and Dead Fecal Bacteria Assessed by Fluorescence-Activated Cell Sorting and 16S rRNA Gene Analysis". Applied and Environmental Microbiology 71, n.º 8 (agosto de 2005): 4679–89. http://dx.doi.org/10.1128/aem.71.8.4679-4689.2005.
Texto completo da fonteBrunner-Weinzierl, Monika C., Mandy Pierau, Dirk Schlueter, Karin Lampe, Christoph Arens, Gerhard Jorch e Vogel Katrin. "CD4+ T cells from human neonates and infants respond variously against antigens of Staphylococcus aureus, but not against Bifidobacter longum ssp. infantis". Journal of Immunology 196, n.º 1_Supplement (1 de maio de 2016): 66.24. http://dx.doi.org/10.4049/jimmunol.196.supp.66.24.
Texto completo da fonteElden Babekir, Wala Salah, Abubakar Awad Siddig e Barka Mohammed Kabeir. "The Survival of Bifidobacterium infantis 20088 and Physicochemical Changes During Refrigeration Storage of Selected Fermented Traditional Sudanese Fruit Beverages". Turkish Journal of Agriculture - Food Science and Technology 3, n.º 11 (23 de outubro de 2015): 866. http://dx.doi.org/10.24925/turjaf.v3i11.866-868.437.
Texto completo da fonteMatsuki, Takahiro, Koichi Watanabe, Ryuichiro Tanaka, Masafumi Fukuda e Hiroshi Oyaizu. "Distribution of Bifidobacterial Species in Human Intestinal Microflora Examined with 16S rRNA-Gene-Targeted Species-Specific Primers". Applied and Environmental Microbiology 65, n.º 10 (1 de outubro de 1999): 4506–12. http://dx.doi.org/10.1128/aem.65.10.4506-4512.1999.
Texto completo da fonteFerro, Lynn, Kameron Sugino, Vanja Klepac-Ceraj e Sarah Comstock. "Human Milk Oligosaccharide (HMO) Metabolizing Gene Abundances in Human Infant Fecal Samples". Current Developments in Nutrition 5, Supplement_2 (junho de 2021): 741. http://dx.doi.org/10.1093/cdn/nzab046_038.
Texto completo da fonteLindner, Cordula, Ellen Looijesteijn, Helmie van Dijck, Ingeborg Bovee-Oudenhoven, Margreet Heerikhuisen, Tim J. van den Broek, Massimo Marzorati, Vassilis Triantis e Arjen Nauta. "Infant Fecal Fermentations with Galacto-Oligosaccharides and 2′-Fucosyllactose Show Differential Bifidobacterium longum Stimulation at Subspecies Level". Children 10, n.º 3 (23 de fevereiro de 2023): 430. http://dx.doi.org/10.3390/children10030430.
Texto completo da fonteLoCascio, Riccardo G., Prerak Desai, David A. Sela, Bart Weimer e David A. Mills. "Broad Conservation of Milk Utilization Genes in Bifidobacterium longum subsp. infantis as Revealed by Comparative Genomic Hybridization". Applied and Environmental Microbiology 76, n.º 22 (27 de agosto de 2010): 7373–81. http://dx.doi.org/10.1128/aem.00675-10.
Texto completo da fonteJena, Rajashree, Prasanta Kumar Choudhury, Anil Kumar Puniya e Sudhir Kumar Tomar. "Applicability of rpoB Gene for PCR-RFLP based Discrimination of Bifidobacterial Species Isolated from Human and Animal Sources". Journal of Pure and Applied Microbiology 16, n.º 1 (21 de fevereiro de 2022): 503–13. http://dx.doi.org/10.22207/jpam.16.1.48.
Texto completo da fonteQuinn, Erinn M., Helen Slattery, Dan Walsh, Lokesh Joshi e Rita M. Hickey. "Bifidobacterium longum subsp. infantis ATCC 15697 and Goat Milk Oligosaccharides Show Synergism In Vitro as Anti-Infectives against Campylobacter jejuni". Foods 9, n.º 3 (17 de março de 2020): 348. http://dx.doi.org/10.3390/foods9030348.
Texto completo da fonteManzano, S., J. De Andrés, I. Castro, J. M. Rodríguez, E. Jiménez e I. Espinosa-Martos. "Safety and tolerance of three probiotic strains in healthy infants: a multi-centre randomized, double-blind, placebo-controlled trial". Beneficial Microbes 8, n.º 4 (24 de agosto de 2017): 569–78. http://dx.doi.org/10.3920/bm2017.0009.
Texto completo da fonteLueschow, Shiloh R., Timothy J. Boly, Steven A. Frese, Giorgio Casaburi, Ryan D. Mitchell, Bethany M. Henrick e Steven J. McElroy. "Bifidobacterium longum Subspecies infantis Strain EVC001 Decreases Neonatal Murine Necrotizing Enterocolitis". Nutrients 14, n.º 3 (24 de janeiro de 2022): 495. http://dx.doi.org/10.3390/nu14030495.
Texto completo da fonteWard, Robert E., Milady Ni�onuevo, David A. Mills, Carlito B. Lebrilla e J. Bruce German. "In Vitro Fermentation of Breast Milk Oligosaccharides by Bifidobacterium infantis and Lactobacillus gasseri". Applied and Environmental Microbiology 72, n.º 6 (junho de 2006): 4497–99. http://dx.doi.org/10.1128/aem.02515-05.
Texto completo da fonteNogacka, Alicja M., Isabel Cuesta, Miguel Gueimonde e Clara G. de los Reyes-Gavilán. "2-Fucosyllactose Metabolism by Bifidobacteria Promotes Lactobacilli Growth in Co-Culture". Microorganisms 11, n.º 11 (29 de outubro de 2023): 2659. http://dx.doi.org/10.3390/microorganisms11112659.
Texto completo da fonteLamendella, Regina, Jorge W. Santo Domingo, Catherine Kelty e Daniel B. Oerther. "Bifidobacteria in Feces and Environmental Waters". Applied and Environmental Microbiology 74, n.º 3 (9 de novembro de 2007): 575–84. http://dx.doi.org/10.1128/aem.01221-07.
Texto completo da fonteAlbarracin, L., R. Komatsu, V. Garcia-Castillo, H. Aso, N. Iwabuchi, J. Z. Xiao, F. Abe, H. Takahashi, J. Villena e H. Kitazawa. "Deciphering the influence of paraimmunobiotic bifidobacteria on the innate antiviral immune response of bovine intestinal epitheliocytes by transcriptomic analysis". Beneficial Microbes 10, n.º 2 (13 de março de 2019): 199–209. http://dx.doi.org/10.3920/bm2018.0024.
Texto completo da fonteMelsaether, Cathrine, Diana Høtoft, Anja Wellejus, Gerben D. A. Hermes e Anders Damholt. "Seeding the Infant Gut in Early Life—Effects of Maternal and Infant Seeding with Probiotics on Strain Transfer, Microbiota, and Gastrointestinal Symptoms in Healthy Breastfed Infants". Nutrients 15, n.º 18 (15 de setembro de 2023): 4000. http://dx.doi.org/10.3390/nu15184000.
Texto completo da fonteSakanaka, Mikiyasu, Morten Ejby Hansen, Aina Gotoh, Toshihiko Katoh, Keisuke Yoshida, Toshitaka Odamaki, Hiroyuki Yachi et al. "Evolutionary adaptation in fucosyllactose uptake systems supports bifidobacteria-infant symbiosis". Science Advances 5, n.º 8 (agosto de 2019): eaaw7696. http://dx.doi.org/10.1126/sciadv.aaw7696.
Texto completo da fonteDing, Mengfan, Haiqin Chen, Renqiang Yu, Reynolds Paul Ross, Catherine Stanton, Hao Zhang, Bo Yang e Wei Chen. "Shared and Non-Shared sIgA-Coated and -Uncoated Bacteria in Intestine of Mother–Infant Pairs". International Journal of Molecular Sciences 23, n.º 17 (30 de agosto de 2022): 9873. http://dx.doi.org/10.3390/ijms23179873.
Texto completo da fonteMusilova, S., N. Modrackova, P. Hermanova, T. Hudcovic, R. Svejstil, V. Rada, V. Tejnecky e V. Bunesova. "Assessment of the synbiotic properites of human milk oligosaccharides and Bifidobacterium longum subsp. infantis in vitro and in humanised mice". Beneficial Microbes 8, n.º 2 (26 de abril de 2017): 281–89. http://dx.doi.org/10.3920/bm2016.0138.
Texto completo da fonteFortmann, Ingmar, Janina Marißen, Bastian Siller, Juliane Spiegler, Alexander Humberg, Kathrin Hanke, Kirstin Faust et al. "Lactobacillus Acidophilus/Bifidobacterium Infantis Probiotics Are Beneficial to Extremely Low Gestational Age Infants Fed Human Milk". Nutrients 12, n.º 3 (22 de março de 2020): 850. http://dx.doi.org/10.3390/nu12030850.
Texto completo da fonteĐỗ Thị, Mến, Tuyết Lan Ninh Thị, Lệ Phạm Thị, Tuấn Trần Văn e Minh Huyền Nguyễn Thị. "Phân lập và định danh Bifidobacterium spp. từ đường tiêu hóa của trẻ sơ sinh". Heavy metals and arsenic concentrations in water, agricultural soil, and rice in Ngan Son district, Bac Kan province, Vietnam 3, n.º 2 (30 de junho de 2020): 125–32. http://dx.doi.org/10.47866/2615-9252/vjfc.654.
Texto completo da fonteZhang, Gongsheng, Hui Sun, Zihe Xu, Ze Tan, Lihong Xiao, Mingxue He, Jiaqi Shang, Anna N. Tsapieva e Lili Zhang. "Screening of Bifidobacteria with Probiotic Potential from Healthy Infant Feces by Using 2′-Fucosyllactose". Foods 12, n.º 4 (17 de fevereiro de 2023): 858. http://dx.doi.org/10.3390/foods12040858.
Texto completo da fonte