Literature DB >> 18360052

Visualisation of the effects of dilazep on rat afferent and efferent arterioles in vivo.

Hiroshi Nakamoto1, Yasuo Ogasawara, Fumihiko Kajiya.   

Abstract

Although the effects of dilazep hydrochloride (dilazep), a nucleoside transport inhibitor, have been examined, there have been no visualisation studies on the physiological effects of dilazep on the glomerular arterioles. The purpose of this study was to visualise and evaluate the effects of dilazep and consequently the effects of adenosine, which dilazep augments by measuring glomelurar diameters, renal blood flow and resistance in rats in vivo. We time-sequentially examined afferent and efferent arteriolar diameter changes using an intravital videomicroscope and renal blood flow. We administered dilazep at a dose of 300 microg/kg intravenously. To further investigate the effects of dilazep, rats were pre-treated with 8-p-sulfophenyl theophylline (a nonselective adenosine receptor antagonist), 8-cyclopentyl-1,3-dipropylxanthine (an A1 receptor antagonist), or 3,7-dimethyl-1-propargylxanthine (an A2 receptor antagonist). Dilazep constricted the afferent and efferent arterioles at the early phase and dilated them at the later phase, with the same degree of vasoconstrictive and vasodilatory effect on both arterioles. A1 blockade abolished vasoconstriction and augmented vasodilatation at the later phase and A2 blockade abolished vasodilatation and augmented vasoconstriction at the early phase. Non-selective blockade abolished both early vasoconstriction and later vasodilatation. In conclusion, adenosine augmented by dilazep constricted the afferent and efferent arterioles of the cortical nephrons at the early phase and dilated both arterioles at the later phase via A1 and A2 adenosine receptor activation, respectively. That the ratio of afferent to efferent arteriolar diameter was fairly constant suggests that intraglomerular pressure is maintained in the acute phase by adenosine despite the biphasic flow change.

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Year:  2008        PMID: 18360052     DOI: 10.1291/hypres.31.315

Source DB:  PubMed          Journal:  Hypertens Res        ISSN: 0916-9636            Impact factor:   3.872


  5 in total

1.  Tubuloglomerular feedback and renal function in mice with targeted deletion of the type 1 equilibrative nucleoside transporter.

Authors:  Lingli Li; Diane Mizel; Yuning Huang; Christoph Eisner; Marion Hoerl; Manfred Thiel; Jurgen Schnermann
Journal:  Am J Physiol Renal Physiol       Date:  2012-12-26

2.  Equilibrative nucleoside transporter 1 (ENT1) regulates postischemic blood flow during acute kidney injury in mice.

Authors:  Almut Grenz; Jessica D Bauerle; Julee H Dalton; Douglas Ridyard; Alexander Badulak; Eunyoung Tak; Eóin N McNamee; Eric Clambey; Radu Moldovan; German Reyes; Jost Klawitter; Kelly Ambler; Kristann Magee; Uwe Christians; Kelley S Brodsky; Katya Ravid; Doo-Sup Choi; Jiaming Wen; Dmitriy Lukashev; Michael R Blackburn; Hartmut Osswald; Imogen R Coe; Bernd Nürnberg; Volker H Haase; Yang Xia; Michail Sitkovsky; Holger K Eltzschig
Journal:  J Clin Invest       Date:  2012-01-24       Impact factor: 14.808

3.  Super-Resolution Ultrasound Imaging Can Quantify Alterations in Microbubble Velocities in the Renal Vasculature of Rats.

Authors:  Sofie Bech Andersen; Iman Taghavi; Stinne Byrholdt Søgaard; Carlos Armando Villagómez Hoyos; Michael Bachmann Nielsen; Jørgen Arendt Jensen; Charlotte Mehlin Sørensen
Journal:  Diagnostics (Basel)       Date:  2022-04-28

4.  Dilazep synergistically reactivates latent HIV-1 in latently infected cells.

Authors:  Hanxian Zeng; Sijie Liu; Pengfei Wang; Xiying Qu; Haiyan Ji; Xiaohui Wang; Xiaoli Zhu; Zhishuo Song; Xinyi Yang; Zhongjun Ma; Huanzhang Zhu
Journal:  Mol Biol Rep       Date:  2014-08-05       Impact factor: 2.316

Review 5.  Therapeutic Potential of Highly Selective A3 Adenosine Receptor Ligands in the Central and Peripheral Nervous System.

Authors:  Elisabetta Coppi; Federica Cherchi; Martina Venturini; Elena Lucarini; Renato Corradetti; Lorenzo Di Cesare Mannelli; Carla Ghelardini; Felicita Pedata; Anna Maria Pugliese
Journal:  Molecules       Date:  2022-03-15       Impact factor: 4.411

  5 in total

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