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Clinical Features

Original Research: A Patented Strain of Bacillus coagulans Increased Immune Response to Viral Challenge

, MD
Pages 114-118 | Published online: 13 Mar 2015

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Chiou-Yeong Saw, Tsai-Ju Chang, Po-Ya Chen, Fan-Jhen Dai, Yie-Qie Lau, Ting-Yu Chen & Chi-Fai Chau. (2019) Presence of Bacillus coagulans spores and vegetative cells in rat intestine and feces and their physiological effects. Bioscience, Biotechnology, and Biochemistry 83:12, pages 2327-2333.
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Aziz Homayoni Rad, Elnaz Vaghef Mehrabany, Beitullah Alipoor & Leila Vaghef Mehrabany. (2016) The Comparison of Food and Supplement as Probiotic Delivery Vehicles. Critical Reviews in Food Science and Nutrition 56:6, pages 896-909.
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Masao GOTO, Kohji YAMAKI, Hiroshi SHINMOTO & Yuko TAKANO-ISHIKAWA. (2009) Continuous Orally Administered Coffee Enhanced the Antigen-Specific Th1 Response and Reduced Allergic Development in a TCR-Transgenic Mice Model. Bioscience, Biotechnology, and Biochemistry 73:11, pages 2439-2444.
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Articles from other publishers (43)

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Aysha Jebin A & Aparnna Suresh. (2023) Oral microbial shift induced by probiotic Bacillus coagualans along with its clinical perspectives. Journal of Oral Biology and Craniofacial Research 13:3, pages 398-402.
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Eunbyul Cho, Ju Young Kim, Belong Cho, Joong Su Lee, Yeo Cho Yoon, Yong Chul Shin, Hyerim Kim, Siye Gil & Sohye Kim. (2023) Efficacy of fermented grain using Bacillus coagulans in reducing visceral fat among people with obesity: a randomized controlled trial. Frontiers in Nutrition 10.
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Gaurav KaushikMruduka Patel. (2023) Draft Genome Sequence of Weizmannia coagulans MB BCM9, a Stable Spore-Forming Probiotic. Microbiology Resource Announcements 12:3.
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Shiqi Zhang, Pinglan Li, Suwon Lee, Yu Wang, Chunming Tan & Nan Shang. (2023) Weizmannia coagulans : an Ideal Probiotic for Gut Health . Food Science and Human Wellness, pages 1-20.
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Mojtaba Zaghari, Mahdi Zhandi & soodabeh parhizkar. (2022) Evaluation of the Effects of Bacillus Coagulans on Functional Traits and Microbial Flora of the Gastrointestinal Tract of Broilers. Research on Animal Production 13:38, pages 19-27.
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Madapati Sreenadh, Kallur Ranjith Kumar & Soumitra Nath. (2022) In Vitro Evaluation of Weizmannia coagulans Strain LMG S-31876 Isolated from Fermented Rice for Potential Probiotic Properties, Safety Assessment and Technological Properties. Life 12:9, pages 1388.
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Filipp V. Lavrentev, Mariia S. Ashikhmina, Sviatlana A. Ulasevich, Olga V. Morozova, Olga Yu Orlova, Ekaterina V. Skorb & Natalia V. Iakovchenko. (2021) Perspectives of Bacillus coagulans MTCC 5856 in the production of fermented dairy products. LWT 148, pages 111623.
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Zahra Heidari, Amir Tajbakhsh, Seyed M. Gheibihayat, Afagh Moattari, Vahid Razban, Aydin Berenjian, Amir Savardashtaki & Manica Negahdaripour. (2021) Probiotics/Prebiotics in Viral Respiratory Infections: Implication for Emerging Pathogens. Recent Patents on Biotechnology 15:2, pages 112-136.
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L. Yin, M.X. Chen, T.H. Zeng, X.M. Liu, F. Zhu & R.Q. Huang. (2020) Improving probiotic spore yield using rice straw hydrolysate. Letters in Applied Microbiology 72:2, pages 149-156.
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Mahtab Noorifard, Elahe Ebrahimi, Arasb Dabbagh Moghaddam, Zatollah Asemi, Ramin Hamidi Farahani & Seyed Milad Mousavi Jazayeri. (2020) Effects of Probiotic Supplementation on Immune Response in Soldiers: A Randomized, Double-Blinded, Placebo-Controlled Trial. Annals of Military and Health Sciences Research 18:3.
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Tanvi Shinde, Philip M Hansbro, Sukhwinder Singh Sohal, Peter Dingle, Rajaraman Eri & Roger Stanley. (2020) Microbiota Modulating Nutritional Approaches to Countering the Effects of Viral Respiratory Infections Including SARS-CoV-2 through Promoting Metabolic and Immune Fitness with Probiotics and Plant Bioactives. Microorganisms 8:6, pages 921.
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Jay R. HoffmanMattan W. HoffmanHila ZelichaYftach GepnerDarryn S. Willoughby, Uri Feinstein & Ishay Ostfeld. (2019) The Effect of 2 Weeks of Inactivated Probiotic Bacillus coagulans on Endocrine, Inflammatory, and Performance Responses During Self-Defense Training in Soldiers. Journal of Strength and Conditioning Research 33:9, pages 2330-2337.
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D. KellerS. VerbruggenH. CashS. FarmerK. Venema. (2019) Spores of Bacillus coagulans GBI-30, 6086 show high germination, survival and enzyme activity in a dynamic, computer-controlled in vitro model of the gastrointestinal tract . Beneficial Microbes 10:1, pages 77-87.
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Tanvi Shinde, Ravichandra Vemuri, Madhur D. Shastri, Agampodi Promoda Perera, Stephen Tristram, Roger Stanley & Rajaraman Eri. (2019) Probiotic Bacillus coagulans MTCC 5856 spores exhibit excellent in-vitro functional efficacy in simulated gastric survival, mucosal adhesion and immunomodulation. Journal of Functional Foods 52, pages 100-108.
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Tao Wu, Yue Zhang, Yang Lv, Peng Li, Dan Yi, Lei Wang, Di Zhao, Hongbo Chen, Joshua Gong & Yongqing Hou. (2018) Beneficial Impact and Molecular Mechanism of Bacillus coagulans on Piglets’ Intestine. International Journal of Molecular Sciences 19:7, pages 2084.
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