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Review
. 2012 Oct;27(4):322-32.
doi: 10.1007/s12291-012-0250-7. Epub 2012 Aug 31.

Non transferrin bound iron: nature, manifestations and analytical approaches for estimation

Affiliations
Review

Non transferrin bound iron: nature, manifestations and analytical approaches for estimation

Meghna Patel et al. Indian J Clin Biochem. 2012 Oct.

Abstract

Iron is an essential trace element and plays a number of vital roles in biological system. It also leads the chains of pathological actions if present in excess and/or present in free form. Major portion of iron in circulation is associated with transferrin, a classical iron transporter, which prevent the existence of free iron. The fraction of iron which is free of transferrin is known as "non transferrin bound iron". Along with the incidence in iron over loaded patient non transferrin bound iron has been indicated in patients without iron overload. It has been suggested as cause as well as consequence in a number of pathological conditions. The major organs influenced by iron toxicity are heart, pancreas, kidney, organs involved in hematopoiesis etc. The most commonly suggested way for iron mediated pathogenesis is through increased oxidative stress and their secondary effects. Generation of free oxygen radicals by iron has been well documented in Fenton chemistry and Haber-Weiss reaction. Non transferrin bound iron has obvious chance to generate the free reactive radicals as it is not been shielded by the protective carrier protein apo transferrin. The nature of non transferrin bound iron is not clear at present time but it is definitely a group of heterogenous iron forms free from transferrin and ferritin. A variety of analytical approaches like colorimetry, chromatography, fluorimetry etc. have been experimented in different research laboratories for estimation of non transferrin bound iron. However the universally accepted gold standard method which can be operated in pathological laboratories is still to be developed.

Keywords: Apo transferrin; Fenton chemistry; Haber–Weiss reaction; Non transferrin bound iron; Oxidative stress; Transferrin.

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Figures

Fig. 1
Fig. 1
NTBI induced cardiac damage through various routs
Fig. 2
Fig. 2
Role of iron in diabetes mellitus
Fig. 3
Fig. 3
NTBI induced renal damage and its progression

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