The effect of theophylline on the accumulation of L-alanine (Ala) by the rat jejunum and the mechanism involved has been investigated. Ala is rapidly accumulated by the jejunal strips in vitro and saturation is reached between 10 and 15 min. An In/Out ratio of 2.55 reflects the presence of an active component in the overall transport mechanism. Ala accumulation shows a tendency toward saturation as cellular Ala concentration increases. In the absence of Na+, Ala accumulation is reduced and a direct relationship is observed between alanine concentration in the incubation medium and its intracellular concentration. Alanine accumulation is inhibited when theophylline (TH) concentration in the incubation medium is greater than 0.5 mM. A maximum inhibition of approximately 50% in the presence of 10 mM theophylline is observed. Further inhibition (57-65%) is observed when the jejunal strips are incubated in a Na+-free medium containing 10 mM theophylline. Single-pass perfusion of the rat jejunum shows that the presence of 0.5 mM TH in the perfusate, simulating therapeutic doses, did not affect Ala absorption. However, about 55% inhibition of Ala absorption was observed when 10 mM TH was included in the perfusate. In conclusion, it could be stated that in both in vitro and in vivo studies high toxic but not therapeutic doses of TH inhibit intestinal Ala uptake. The mechanism of inhibition may be attributed to a non-carrier mediated mechanism with a minor effect noticed on Ala carrier system.
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http://dx.doi.org/10.1016/j.fct.2004.07.012 | DOI Listing |
AAPS PharmSciTech
January 2025
School of Traditional Chinese Pharmacy, China Pharmaceutical University, Nanjing, 211198, China.
Albendazole serves as a broad-spectrum anthelmintic medication for treating hydatid cysts and neurocysticercosis. However, its therapeutic effectiveness is limited by poor solubility. Nanocrystals offer a promising technology to address this limitation by enhancing drug solubility.
View Article and Find Full Text PDFWorld J Gastroenterol
January 2025
Department of Gastroenterology, The Air Force Medical Center, Beijing 100142, China.
Background: Simulated microgravity environment can lead to gastrointestinal motility disturbance. The pathogenesis of gastrointestinal motility disorders is closely related to the stem cell factor (SCF)/c-kit signaling pathway associated with intestinal flora and Cajal stromal cells. Moreover, intestinal flora can also affect the regulation of SCF/c-kit signaling pathway, thus affecting the expression of Cajal stromal cells.
View Article and Find Full Text PDFFront Chem
December 2024
Laboratory of Bioresources, Biotechnology, Ethnopharmacology and Health, Faculty of Sciences, Mohammed First University, Oujda, Morocco.
Ethnopharmacological Relevance: In Moroccan traditional medicine, plants from the Apiaceae family are widely utilized in folk medicine to treat various diseases associated with the digestive system. plays an important role as an antispasmodic that has been traditionally used, especially to treat digestive tract diseases in children.
Aim Of The Study: The aim of this research was to verify the traditional use by assessing the relaxant and spasmolytic activities of essential oil (ALEO) and then comparing them to the effects and potency of the major constituent of ALEO, which is perillaldehyde.
Prev Nutr Food Sci
December 2024
Department of Biology, Faculty of Science, Firat University, Elazig 23100, Türkiye.
Magnesium (Mg) is a mineral necessary for many biological activities in mammals. Here, we compared the effect of two Mg compounds [Mg picolinate (MgPic) to Mg oxide (MgO)] on Mg bioavailability and intestinal Mg and calcium transporter protein levels. Three groups of 21 male Wistar-Albino rats were randomly allocated and fed a standard diet (control) or a 500 mg/kg Mg-supplemented (MgPic or MgO) diet for 8 weeks.
View Article and Find Full Text PDFZhonghua Yi Xue Za Zhi
December 2024
Basic Medical College, Hebei North University, Zhangjiakou075031, China Department of Nutrition, the Fourth Medical Center, Chinese PLA General Hospital, Beijing100037, China.
To explore the therapeutic efficacies of three different doses of human umbilical cord mesenchymal stem cell exosomes (hucMSC-EXO) on the injury of intestinal barrier structure and dysfunction in severely burned rats, and to identify the optimal dose of hucMSC-EXO for the repair of intestinal barrier injury. The hucMSC-EXO was isolated and identified by using an exosome extraction and purification kit. A total of 30 specific pathogen free (SPF) male Wistar rats (aged 6-8 weeks) were selected, and were randomly divided into five groups (=6) using a random number table: sham group, burn group, burn+100 μg hucMSC-EXO group (Burn+EXO100), burn+200 μg hucMSC-EXO group (Burn+EXO200), and burn+400 μg hucMSC-EXO group (Burn+EXO400).
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