Probiotic Lactobacillus and Promotion of Tumor Growth: Difference between revisions
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<br>Logan Gusmano</br> | <br>Logan Gusmano</br> | ||
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Lactobacillus, a Gram-Positive, non spore forming firmicute, rod-shaped Bacilli bacterium inhabits the digestive tract of mammalian organism as a significant probiotic required for the digestion and breakdown of lactose in | Lactobacillus, a Gram-Positive, non spore forming firmicute, rod-shaped Bacilli bacterium inhabits the digestive tract of mammalian organism as a significant probiotic required for the digestion and breakdown of lactose in stable gut microbiome. Lactobacillus is classified into 3 distinct groups based on metabolic pathways, Obligately Facultatively homofermentative, and Obligately heterofermentative, each are significantly different in the products produced by the metabolic pathways of each species. Lactobacillus is a lactic acid bacteria (LAB) capable of proliferating in environments of low pH, tolerating the pH level in mammalians gut microbiome, and break down lactose present in the environment, promoting a health gut microbiome. However, in novel research, it has been discovered that lactobacillus has detrimental effects lessening the efficiency of anticancer medications. | ||
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Revision as of 15:54, 2 March 2022
Logan Gusmano
Section
Lactobacillus, a Gram-Positive, non spore forming firmicute, rod-shaped Bacilli bacterium inhabits the digestive tract of mammalian organism as a significant probiotic required for the digestion and breakdown of lactose in stable gut microbiome. Lactobacillus is classified into 3 distinct groups based on metabolic pathways, Obligately Facultatively homofermentative, and Obligately heterofermentative, each are significantly different in the products produced by the metabolic pathways of each species. Lactobacillus is a lactic acid bacteria (LAB) capable of proliferating in environments of low pH, tolerating the pH level in mammalians gut microbiome, and break down lactose present in the environment, promoting a health gut microbiome. However, in novel research, it has been discovered that lactobacillus has detrimental effects lessening the efficiency of anticancer medications.
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Authored for BIOL 238 Microbiology, taught by Joan Slonczewski, 2022, Kenyon College