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2000
Volume 17, Issue 31
  • ISSN: 0929-8673
  • E-ISSN: 1875-533X

Abstract

Low molecular weight and high molecular weight metal ion binders present in blood plasma are shortly described. The binding of vanadium and ruthenium complexes by these components has received much attention, namely their interactions with human serum albumin and transferrin, and these studies are critically reviewed. The influence of the protein binding on the bioavailability of the prospective drugs, namely on the transport by blood plasma and uptake by cells is also discussed. It is concluded that vanadium compounds are mainly transported in blood by transferrin, but that no study has properly addressed the influence of albumin and transferrin in the vanadium uptake by cells. Ruthenium complexes bind strongly to HSA, most likely at the level of His residues, leading to the formation of stable adducts. If the kinetics of binding to this protein is fast enough, probably they are mainly transported by this serum protein. Nevertheless, at least for a few RuIII-complexes, hTf seems to play an active role in the uptake of ruthenium, while HSA may provide selectivity and higher activity for the compounds due to an enhanced permeability effect.

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/content/journals/cmc/10.2174/092986710793213742
2010-11-01
2025-06-27
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  • Article Type:
    Research Article
Keyword(s): 1-acid glycoprotein; abscess tissues; albumin; albumin (HSA); amino-thiazole complexes; anion-exchange column; anti-arthritics; anti-bacterials; anti-hypertensive agent; anti-inflammatory agent; anti-parasitics; anti-trypanocidal agents; anti-virals; ascorbate; BCM-EPR; bismuth compounds; bismuth subsalicylate; Blood Plasma Components; Blood Serum Conditions; blood stream complex; Bovine serum albumin (BSA); capillary zone electrophoresis (CZE); catecholamines; Chemotherapy; Circular dichroism; Cisplatin pharmaceuticals; clotrimazole; cysteine; D-binding protein; detect protein-bound; electron paramagnetic resonance (EPR); electrophoresis; emission spectroscopy (AES); enzymatic glycosylation; Erythrocytes; ESI-MS hyphenation; fetoprotein; fibrinogen; gastrointestinal disorders; Gel electrophoresis techniques; globulins; gold complexes; heterometal-hTf complexes; HPLC-ICP-MS techniques; human serum albumin; human serum transferrin; Human serum transferrin; hydrolytic processes; immunoglobulin G; Inductively Coupled Plasma - MS (ICP-MS); insulin-enhancers; insulin-enhancing activity; insulin-mimetics; ketoconazole; KP1019; lactate; lactoferrin; low hydrosolubility; lymphatic drainage sys-tem; metal-containing drugs; metal-mediated antibiotics; metallodrugs; monoferric C-lobe; multi-task protein; NAMI; NAMI-A; NAMI-A type complexes; organometallic complexes; Osmium(II) analogue; ovotransferrin; oxalate; passive selective delivery; pharmacodynamics; pharmacokinetics; phosphate; picolinic acid; promote coagulation; prospective drugs; protein:complex ratios; radio-sensitizing agents; radiopharmaceuticals; RAPTA complexes; RAPTA-T; RuIII-complexes; ruthe-nium-HSA systems; Ruthenium; ruthenium bioavailability; Ruthenium complexes; Ruthenium Complexes; ruthenium complexes; ruthenium radioisotopes; Ruthenium-Protein Interactions; semicarbazone derivative; serum protein binding; sodium nitroprusside; strongly binding drugs; Synchrotron based techniques; therapeutic agents; therapeutic compound; Therapeutic Vanadium; transferrin receptor (TfR); transport in blood serum; tryptophan residue; Vanadium; vanadium bioavailability; vanadium speciation research; VIVO-HSA-Carrier; VIVO-hTf-lactate; XANES spectroscopy
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