Human organic anion transporter 1 mediates cellular uptake of cysteine-S conjugates of inorganic mercury.BackgroundThe epithelial cells lining the renal proximal tubule have been shown to be the primary cellular targets where mercuric ions gain entry, accumulate, and induce pathologic effects in vivo. Recent data have implicated at least one of the organic anion transport systems in the basolateral uptake of inorganic mercury (Hg2+).MethodsUsing a line of Madin-Darby canine kidney (MDCK) II cells transfected stably with the human organic anion transporter 1 (hOAT1), and oocytes from Xenopus laevis microinjected with cRNA for hOAT1, we tested the hypothesis that hOAT1 can transport biologically relevant mercuric conjugates of cysteine (Cys)....
In this study, the early nephrotoxic potential of mercuric chloride (HgCl(2)) has been evaluated in ...
Abstract: The underlying mechanism for the biological activity of inorganic mercury is believed to ...
AbstractBasolateral transport of organic anions (OAs) into mammalian renal proximal tubule cells is ...
Human organic anion transporter 1 mediates cellular uptake of cysteine-S conjugates of inorganic mer...
Handling of cysteine S-conjugates of methylmercury in MDCK cells expressing human OAT1.BackgroundThe...
Mercuric ions are highly reactive and form a variety of organic complexes or conjugates in vivo. The...
The kidney is the primary target organ in which inorganic mer-cury (Hg2) accumulates and expresses i...
The bath-to-cell transport, cytosolic concentration, and tubular content of methylmercury (Me203Hg+)...
Tubular epithelium represents the primary target of mercuric ions (Hg(2+)) nephrotoxicity. Although ...
Multidrug resistance-associated proteins (MRP) 2 and 4 are localized in proximal tubular epithelial ...
Mercury is a widespread pollutant. Mercuric ions uptake into tubular cells is supported by the Organ...
Glucuronidation is primarily a pathway of detoxification in most species, but many glucuronide conju...
Sulfate conjugating and transport functions of MDCK distal tubular cells.BackgroundTransfected Madin...
Contains fulltext : 183578.PDF (publisher's version ) (Open Access)Multidrug resis...
Heavy metal mediated inhibition of rBAT-induced amino acid transport. rBAT, a protein which is locat...
In this study, the early nephrotoxic potential of mercuric chloride (HgCl(2)) has been evaluated in ...
Abstract: The underlying mechanism for the biological activity of inorganic mercury is believed to ...
AbstractBasolateral transport of organic anions (OAs) into mammalian renal proximal tubule cells is ...
Human organic anion transporter 1 mediates cellular uptake of cysteine-S conjugates of inorganic mer...
Handling of cysteine S-conjugates of methylmercury in MDCK cells expressing human OAT1.BackgroundThe...
Mercuric ions are highly reactive and form a variety of organic complexes or conjugates in vivo. The...
The kidney is the primary target organ in which inorganic mer-cury (Hg2) accumulates and expresses i...
The bath-to-cell transport, cytosolic concentration, and tubular content of methylmercury (Me203Hg+)...
Tubular epithelium represents the primary target of mercuric ions (Hg(2+)) nephrotoxicity. Although ...
Multidrug resistance-associated proteins (MRP) 2 and 4 are localized in proximal tubular epithelial ...
Mercury is a widespread pollutant. Mercuric ions uptake into tubular cells is supported by the Organ...
Glucuronidation is primarily a pathway of detoxification in most species, but many glucuronide conju...
Sulfate conjugating and transport functions of MDCK distal tubular cells.BackgroundTransfected Madin...
Contains fulltext : 183578.PDF (publisher's version ) (Open Access)Multidrug resis...
Heavy metal mediated inhibition of rBAT-induced amino acid transport. rBAT, a protein which is locat...
In this study, the early nephrotoxic potential of mercuric chloride (HgCl(2)) has been evaluated in ...
Abstract: The underlying mechanism for the biological activity of inorganic mercury is believed to ...
AbstractBasolateral transport of organic anions (OAs) into mammalian renal proximal tubule cells is ...