Magnetophoretic and spectral characterization of oxyhemoglobin and deoxyhemoglobin: Chemical versus enzymatic processes

Author:

Weigand Mitchell R. H.ORCID,Gómez-Pastora Jenifer,Kim James,Kurek Matthew T.,Hickey Richard J.,Irwin David C.,Buehler Paul W.,Zborowski Maciej,Palmer Andre F.,Chalmers Jeffrey J.ORCID

Abstract

A new method for hemoglobin (Hb) deoxygenation, in suspension or within red blood cells (RBCs) is described using the commercial enzyme product, EC-Oxyrase®. The enzymatic deoxygenation method has several advantages over established deoxygenation methodologies, such as avoiding side reactions that produce methemoglobin (metHb), thus eliminating the need for an inert deoxygenation gas and airtight vessel, and facilitates easy re-oxygenation of Hb/RBCs by washing with a buffer that contains dissolved oxygen (DO). The UV-visible spectra of deoxyHb and metHb purified from human RBCs using three different preparation methods (sodium dithionite [to produce deoxyHb], sodium nitrite [to produce metHb], and EC-Oxyrase® [to produce deoxyHb]) show the high purity of deoxyHb prepared using EC-Oxyrase® (with little to no metHb or hemichrome production from side reactions). The oxyHb deoxygenation time course of EC-Oxyrase® follows first order reaction kinetics. The paramagnetic characteristics of intracellular Hb in RBCs were compared using Cell Tracking Velocimetry (CTV) for healthy and sickle cell disease (SCD) donors and oxygen equilibrium curves show that the function of healthy RBCs is unchanged after EC-Oxyrase® treatment. The results confirm that this enzymatic approach to deoxygenation produces pure deoxyHb, can be re-oxygenated easily, prepared aerobically and has similar paramagnetic mobility to existing methods of producing deoxyHb and metHb.

Funder

National Heart, Lung, and Blood Institute

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference53 articles.

1. The magnetic properties and structure of hemoglobin, oxyhemoglobin and carbonmonoxyhemoglobin;L Pauling;PNAS,1936

2. The magnetic properties and structure of the hemochromogens and related substance;L Pauling;PNAS,1936

3. A model for blood cell transport and separation in a magnetophoretic microsystem;EP Furlani,2007

4. Magnetophoretic separation of blood cells at the microscale;EP Furlani;J Phys D Appl Phys,2007

5. Paramagnetic capture mode magnetophoretic microseparator for blood cells;KH Han;IEE Proc Nanobiotechnology,2006

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