A new drug delivery system targeting ileal epithelial cells induced electrogenic sodium absorption: possible promotion of intestinal adaptation

scientific journal article

A new drug delivery system targeting ileal epithelial cells induced electrogenic sodium absorption: possible promotion of intestinal adaptation is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1007/S11605-007-0145-8
P698PubMed publication ID17468916

P50authorIwao SasakiQ110617312
P2093author name stringYasuhiko Tabata
Yuji Funayama
Sho Haneda
Kouhei Fukushima
Chikashi Shibata
Ken-Ichi Takahashi
P2860cites workMineralocorticoid receptor gene expression in the gastrointestinal tract: Distribution and ontogenyQ58434045
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Morphological adaptations to induced changes in transepithelial sodium transport in chicken lower intestine (coprodeum): a study of resalination, aldosterone stimulation, and epithelial turnoverQ74531835
Induction of epithelial Na+ channel in rat ileum after proctocolectomyQ77307119
New cytokine delivery system using gelatin microspheres containing interleukin-10 for experimental inflammatory bowel diseaseQ77801148
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Cytokine-dependent transcriptional down-regulation of epithelial sodium channel in ulcerative colitisQ44929872
Induction of 11beta-hydroxysteroid dehydrogenase type 2 and hyperaldosteronism are essential for enhanced sodium absorption after total colectomy in ratsQ45197999
Comparative study of epithelial gene expression in the small intestine among total proctocolectomized, dietary sodium-depleted, and aldosterone-infused ratsQ45253272
Renal expression of the essential genes associated with sodium transport following a total proctocolectomy in ratsQ46506167
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Decreased expression of apical Na+ channels and basolateral Na+, K+-ATPase in ulcerative colitis.Q47631066
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P433issue5
P921main subjectdrug deliveryQ1392806
P304page(s)568–577
P577publication date2007-05-01
P1433published inJournal of Gastrointestinal SurgeryQ15764393
P1476titleA new drug delivery system targeting ileal epithelial cells induced electrogenic sodium absorption: possible promotion of intestinal adaptation
P478volume11