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Nature Communications, ISSN 2041-1723, 12/2019, Volume 10, Issue 1, pp. 1029 - 13
Enteroendocrine cells are specialised sensory cells located in the intestinal epithelium and generate signals in response to food ingestion. Whilst... 
P2Y RECEPTORS | CELLS | NUCLEOTIDES | ACTIVATION | GLP-1 | STIMULATION | FOOD-INTAKE | MULTIDISCIPLINARY SCIENCES | IDENTIFICATION | CHLORIDE SECRETION | ATP | Peptides | Glucagon | Brain stem | Epithelium | Neuromodulation | Modulators | Ingestion | Receptors | Enterocytes | Transmitters | Intestine | Nodose ganglion | Sensory neurons | Vagus nerve | Glucagon-like peptide 1 | Adenosine triphosphate
Journal Article
MOLECULAR AUTISM, ISSN 2040-2392, 01/2019, Volume 10, Issue 1, pp. 3 - 15
Journal Article
Cell and Tissue Research, ISSN 0302-766X, 12/2019, Volume 378, Issue 3, pp. 471 - 483
Regulation of gut function depends on the detection and response to luminal contents. Luminal l-amino acids (l-AA) are detected by several receptors including... 
Human Genetics | Taste receptors | Biomedicine | Proteomics | Molecular Medicine | STC-1 cells | l -Amino acid receptors | Neurohumoral peptides | Enteroendocrine cells | Taste | Peptides | Phenylalanine | RNA | Analysis | Glucagon | Umami | Mucosa | Amino acids | mRNA | siRNA | Glutamic acid receptors | Receptor mechanisms | Glucagon-like peptide 1 | Glutamic acid receptors (metabotropic) | Calcium-sensing receptors
Journal Article
International Journal of Food Science & Technology, ISSN 0950-5423, 12/2019, Volume 54, Issue 12, pp. 3149 - 3155
Summary This study aims at identifying food ingredients that have potential to enhance satiety and therefore potentially can be used for preventing and... 
glucagon‐like peptide‐1 | food ingredients | Enteroendocrine cells | Soybeans | Hesperetin | Peptides | Glucagon | Secretion | Ingredients | Whey | Palmitic acid | Proteins | Tea | Acids | Satiety | Rosemary | In vivo methods and tests | Stearic acid | Whey protein | Green tea | Viability | Food
Journal Article
NATURE COMMUNICATIONS, ISSN 2041-1723, 09/2019, Volume 10, Issue 1, pp. 4123 - 13
In adult epithelial stem cell lineages, the precise differentiation of daughter cells is critical to maintain tissue homeostasis. Notch signaling controls the... 
PRONEURAL PROTEINS | STEM-CELLS | HOMEOSTASIS | ACTIVATION | GENE | MULTIDISCIPLINARY SCIENCES | ENTEROENDOCRINE CELLS | MIDGUT | DIFFERENTIATION | SPECIFICATION | PLASTICITY | Repressing | Transcription factors | Profiling | Midgut | Drosophila | Differentiation (biology) | Homeostasis | Absorptivity | Cell differentiation | Small intestine | Cell fate | Insects | Initial specifications | Stem cells
Journal Article
by Ma, QQ and Xing, CS and Long, WY and Wang, HY and Liu, Q and Wang, RF
JOURNAL OF NEUROINFLAMMATION, ISSN 1742-2094, 03/2019, Volume 16, Issue 1, pp. 53 - 53
Journal Article
Cell Metabolism, ISSN 1550-4131, 11/2019, Volume 30, Issue 5, pp. 976 - 986.e3
The importance of pancreatic versus intestinal-derived GLP-1 for glucose homeostasis is controversial. We detected active GLP-1 in the mouse and human... 
GLP-1 | intestine | insulin | incretin | pancreas | glucagon | enteroendocrine cell | islet | diabetes | GIP | PHYSIOLOGY | RAT INTESTINE | GLUCAGON-LIKE PEPTIDE-1 | INSULIN-SECRETION | ENDOCRINOLOGY & METABOLISM | GENE-EXPRESSION | INTERLEUKIN-6 | PANCREATIC ALPHA-CELLS | PREPROGLUCAGON | HORMONES | CELL BIOLOGY
Journal Article
Trends in Microbiology, ISSN 0966-842X, 11/2019
Journal Article
European Journal of Pharmaceutics and Biopharmaceutics, ISSN 0939-6411, 11/2019, Volume 144, pp. 132 - 138
Novel treatment methods for obesity are urgently needed due to the increasing global severity of the problem. Gastrointestinal hormones, such as GLP-1 and PYY,... 
Controlled delivery | GLP-1 | Food intake | α-linolenic acid | Nutrients | Porous silicon | Enteroendocrine cells | BIOCOMPATIBILITY | alpha-linolenic acid | PROTEIN | RAT | RELEASE | GLUCAGON-LIKE PEPTIDE-1 | ORAL-DRUG DELIVERY | SYSTEMS | DEGRADATION | PHARMACOLOGY & PHARMACY | HORMONES
Journal Article