| Description | iNeu™ is a neural progenitor cell derived from human iPSC. They are derived from a non-integrated induced pluripotent stem cell (iPSC) line under fully defined proprietary neural induction conditions. iNeu™ cells are polarized when plated in culture as a monolayer and express markers iNeu™ is a neural progenitor cell derived from human iPSC. They are derived from a non-integrated induced pluripotent stem cell (iPSC) line under fully defined proprietary neural induction conditions. iNeu™ cells are polarized when plated in culture as a monolayer and express markers such as Vimentin. We have verified that iNeu™ cells are pluripotent neural and glial progenitor cells, because they can be further differentiated into neural and glial cell types under specific in vitro serum-free/non-integrated reprogramming conditions.... Read More | iNeu™ human keratinocytes are derived from human dermal fibroblasts, using a feeder-free, serum-free, genetic-free, virus-free induced pluripotent stem cell (iPSC) line, and have fully defined proprietary induction and maturation conditions. iNeu™ cells can be cultured in a monolayer andiNeu™ human keratinocytes are derived from human dermal fibroblasts, using a feeder-free, serum-free, genetic-free, virus-free induced pluripotent stem cell (iPSC) line, and have fully defined proprietary induction and maturation conditions. iNeu™ cells can be cultured in a monolayer and can express different biomarkers, such as Cytokeratin-18. iNeu™ can be used under mature conditions, co-culture conditions (used with fibroblasts, melanocytes or other epidermal subtypes), and short-term functional characterization studies.... Read More | Creative Biolabs offers the overexpression HEK293 cells stably expressing additional TLR or NOD genes. | Lactobacillus species are normal flora of the human mouth, gastrointestinal tract, and female genital tract, where they produce lactic acid and competitively inhibit pathogenic organisms. Lactobacillus are small, slender, nonmotile, Gram-positive bacilli in chains. Immature colonies appear smooth, Lactobacillus species are normal flora of the human mouth, gastrointestinal tract, and female genital tract, where they produce lactic acid and competitively inhibit pathogenic organisms. Lactobacillus are small, slender, nonmotile, Gram-positive bacilli in chains. Immature colonies appear smooth, convex, and translucent. Some species of Lactobacillus used commonly as probiotics. They are most commonly used for diarrhea, including infectious diarrhea and diarrhea in people taking antibiotics. Some people also use lactobacillus for general digestion problems, irritable bowel syndrome; IBS, colic in infants, and many other conditions that involve the stomach and bowel.... Read More | Lactobacillus species are normal flora of the human mouth, gastrointestinal tract, and female genital tract, where they produce lactic acid and competitively inhibit pathogenic organisms. Lactobacillus are small, slender, nonmotile, Gram-positive bacilli in chains. Immature colonies appear smooth, Lactobacillus species are normal flora of the human mouth, gastrointestinal tract, and female genital tract, where they produce lactic acid and competitively inhibit pathogenic organisms. Lactobacillus are small, slender, nonmotile, Gram-positive bacilli in chains. Immature colonies appear smooth, convex, and translucent. Some species of Lactobacillus used commonly as probiotics. They are most commonly used for diarrhea, including infectious diarrhea and diarrhea in people taking antibiotics. Some people also use lactobacillus for general digestion problems, irritable bowel syndrome; IBS, colic in infants, and many other conditions that involve the stomach and bowel.... Read More |