Search results for "Human gastrointestinal tract"

showing 4 items of 4 documents

Unraveling the behavior of oral drug products inside the human gastrointestinal tract using the aspiration technique: History, methodology and applic…

2020

Fluid sampling from the gastrointestinal (GI) tract has been applied as a valuable tool to gain more insight into the fluids present in the human GI tract and to explore the dynamic interplay of drug release, dissolution, precipitation and absorption after drug product administration to healthy subjects. In the last twenty years, collaborative initiatives have led to a plethora of clinical aspiration studies that aimed to unravel the luminal drug behavior of an orally administered drug product. The obtained drug concentration-time profiles from different segments in the GI tract were a valuable source of information to optimize and/or validate predictive in vitro and in silico tools, freque…

Drugmedia_common.quotation_subjectGastric motilityAdministration OralPharmaceutical Science02 engineering and technologyBioinformatics030226 pharmacology & pharmacyIntestinal absorptionPharmaceutical Sciences03 medical and health sciences0302 clinical medicineHumansMedicinePharmaceutical sciencesmedia_commonIntraluminal drug and formulation behaviorGastrointestinal drug concentrationsAspiration studiesbusiness.industryIntestinal absorptionHuman gastrointestinal tractHealthy subjectsFarmaceutiska vetenskaper021001 nanoscience & nanotechnologySampling techniqueGastrointestinal TractDrug Liberationmedicine.anatomical_structureIntestinal AbsorptionPharmaceutical PreparationsSolubilityDrug product0210 nano-technologybusinessOral retinoidEuropean Journal of Pharmaceutical Sciences
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Functional consequences of microbial shifts in the human gastrointestinal tract linked to antibiotic treatment and obesity

2013

The microbiomes in the gastrointestinal tract (GIT) of individuals receiving antibiotics and those in obese subjects undergo compositional shifts, the metabolic effects and linkages of which are not clearly understood. Herein, we set to gain insight into these effects, particularly with regard to carbohydrate metabolism, and to contribute to unravel the underlying mechanisms and consequences for health conditions. We measured the activity level of GIT carbohydrate-active enzymes toward 23 distinct sugars in adults patients (n = 2) receiving 14-d β-lactam therapy and in obese (n = 7) and lean (n = 5) adolescents. We observed that both 14 d antibiotic-treated and obese subjects showed higher …

MaleobesityAnabolismAntibioticsBody Mass Indexmetabolic reconstructionantibiotic therapySystems and Synthetic Biology2. Zero hungerSysteem en Synthetische Biologie0303 health sciencesGastrointestinal tractMicrobiotaHuman gastrointestinal tractGastroenterologyBiotaAnti-Bacterial Agents3. Good healthInfectious Diseasesmedicine.anatomical_structureglycosidaseCarbohydrate MetabolismFemaleResearch PaperAdultMicrobiology (medical)medicine.medical_specialtyAdolescentmedicine.drug_classCarbohydrate metabolismBiologyMicrobiology03 medical and health sciencesInsulin resistanceInternal medicinemedicineHumansMicrobiomeObesityVLAGAged030304 developmental biologyMetabolic reconstruction030306 microbiologyAntibiotic therapymedicine.diseaseObesityGlycosidaseGastrointestinal TractDistal gutEndocrinologyHyperglycemiaInsulin Resistancedistal gut
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Impact of Oat-Based Products on Human Gastrointestinal Tract

2015

Abstract Oat is rich in valuable nutrients. In comparison to other cereals, oat contains more total proteins, carbohydrate, fat, non-starch fibre, as well as unique antioxidants (one of them - avenanthramides), vitamins, and minerals. One of the most often studied components of oats is β-glucan - a type of soluble dietary fibre located throughout the starch endosperm, but with highest concentration in the bran. Many studies have shown the beneficial health effects of oat β-glucan as a soluble dietary fibre. Until now, most of the studies on this nutrient have been conducted in the cardiovascular and diabetology field. This article aimed to review the literature on studies that investigated …

irritable bowel syndromemedicine.medical_specialtyMultidisciplinaryBranColorectal canceravena sativaScienceQHuman gastrointestinal tractfood and beveragesgastrointestinal microfloracolorectal cancermedicine.diseaseInflammatory bowel diseaseUlcerative colitisGastroenterologymedicine.anatomical_structureNutrientinflammatory bowel diseaseInternal medicinemedicineIn patientIrritable bowel syndromeProceedings of the Latvian Academy of Sciences. Section B. Natural, Exact, and Applied Sciences.
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Carboxyl nonsteroidal anti-inflammatory drugs are efficiently glucuronidated by microsomes of the human gastrointestinal tract.

2004

Limited studies have been carried out on the biotransformation of carboxyl nonsteroidal anti-inflammatory drugs (NSAIDs) in the liver. However, the role of the intestine in NSAID metabolism has not been investigated. In this report, the contribution of UDP-glucuronosyltransferases (UGTs) in the human gastrointestinal (GI) tract from five donors to the glucuronidation of the NSAIDs, RS-ketoprofen, S-naproxen, RS- and S-etodolac, was investigated. UGT activity and, for some donors, mRNA levels were evaluated. All NSAIDs were glucuronidated throughout the GI tract; however, glucuronidation was low in stomach and duodenum as compared to the remainder of the intestine. RT-PCR analysis demonstrat…

medicine.medical_specialtyBiophysicsGlucuronidationAdministration OralPharmacologydigestive systemBiochemistryGene Expression Regulation EnzymologicFirst pass effectGlucuronidesNaproxenInternal medicineMicrosomesmedicineHumansRNA MessengerGlucuronosyltransferaseMolecular BiologyChromatography High Pressure LiquidGastrointestinal tractChemistryReverse Transcriptase Polymerase Chain ReactionStomachHuman gastrointestinal tractAnti-Inflammatory Agents Non-SteroidalUGT2B7Gastrointestinal Tractmedicine.anatomical_structureEndocrinologyKetoprofenDuodenumMicrosomeEtodolacBiochimica et biophysica acta
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