Hemoglobin-albumin cluster incorporating a Pt nanoparticle: artificial O2 carrier with antioxidant activities.

A covalent core-shell structured protein cluster composed of hemoglobin (Hb) at the center and human serum albumins (HSA) at the periphery, Hb-HSAm, is an artificial O2 carrier that can function as a red blood cell substitute. Here we described the preparation of a novel Hb-HSA3 cluster with antioxi...

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Main Authors: Hitomi Hosaka, Risa Haruki, Kana Yamada, Christoph Böttcher, Teruyuki Komatsu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4195732?pdf=render
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spelling doaj-deb646ed6ffc4a53be6c02258f24abe92020-11-24T21:32:48ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01910e11054110.1371/journal.pone.0110541Hemoglobin-albumin cluster incorporating a Pt nanoparticle: artificial O2 carrier with antioxidant activities.Hitomi HosakaRisa HarukiKana YamadaChristoph BöttcherTeruyuki KomatsuA covalent core-shell structured protein cluster composed of hemoglobin (Hb) at the center and human serum albumins (HSA) at the periphery, Hb-HSAm, is an artificial O2 carrier that can function as a red blood cell substitute. Here we described the preparation of a novel Hb-HSA3 cluster with antioxidant activities and its O2 complex stable in aqueous H2O2 solution. We used an approach of incorporating a Pt nanoparticle (PtNP) into the exterior HSA unit of the cluster. A citrate reduced PtNP (1.8 nm diameter) was bound tightly within the cleft of free HSA with a binding constant (K) of 1.1×10(7) M(-1), generating a stable HSA-PtNP complex. This platinated protein showed high catalytic activities for dismutations of superoxide radical anions (O2•-) and hydrogen peroxide (H2O2), i.e., superoxide dismutase and catalase activities. Also, Hb-HSA3 captured PtNP into the external albumin unit (K = 1.1×10(7) M(-1)), yielding an Hb-HSA3(PtNP) cluster. The association of PtNP caused no alteration of the protein surface net charge and O2 binding affinity. The peripheral HSA-PtNP shell prevents oxidation of the core Hb, which enables the formation of an extremely stable O2 complex, even in H2O2 solution.http://europepmc.org/articles/PMC4195732?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Hitomi Hosaka
Risa Haruki
Kana Yamada
Christoph Böttcher
Teruyuki Komatsu
spellingShingle Hitomi Hosaka
Risa Haruki
Kana Yamada
Christoph Böttcher
Teruyuki Komatsu
Hemoglobin-albumin cluster incorporating a Pt nanoparticle: artificial O2 carrier with antioxidant activities.
PLoS ONE
author_facet Hitomi Hosaka
Risa Haruki
Kana Yamada
Christoph Böttcher
Teruyuki Komatsu
author_sort Hitomi Hosaka
title Hemoglobin-albumin cluster incorporating a Pt nanoparticle: artificial O2 carrier with antioxidant activities.
title_short Hemoglobin-albumin cluster incorporating a Pt nanoparticle: artificial O2 carrier with antioxidant activities.
title_full Hemoglobin-albumin cluster incorporating a Pt nanoparticle: artificial O2 carrier with antioxidant activities.
title_fullStr Hemoglobin-albumin cluster incorporating a Pt nanoparticle: artificial O2 carrier with antioxidant activities.
title_full_unstemmed Hemoglobin-albumin cluster incorporating a Pt nanoparticle: artificial O2 carrier with antioxidant activities.
title_sort hemoglobin-albumin cluster incorporating a pt nanoparticle: artificial o2 carrier with antioxidant activities.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description A covalent core-shell structured protein cluster composed of hemoglobin (Hb) at the center and human serum albumins (HSA) at the periphery, Hb-HSAm, is an artificial O2 carrier that can function as a red blood cell substitute. Here we described the preparation of a novel Hb-HSA3 cluster with antioxidant activities and its O2 complex stable in aqueous H2O2 solution. We used an approach of incorporating a Pt nanoparticle (PtNP) into the exterior HSA unit of the cluster. A citrate reduced PtNP (1.8 nm diameter) was bound tightly within the cleft of free HSA with a binding constant (K) of 1.1×10(7) M(-1), generating a stable HSA-PtNP complex. This platinated protein showed high catalytic activities for dismutations of superoxide radical anions (O2•-) and hydrogen peroxide (H2O2), i.e., superoxide dismutase and catalase activities. Also, Hb-HSA3 captured PtNP into the external albumin unit (K = 1.1×10(7) M(-1)), yielding an Hb-HSA3(PtNP) cluster. The association of PtNP caused no alteration of the protein surface net charge and O2 binding affinity. The peripheral HSA-PtNP shell prevents oxidation of the core Hb, which enables the formation of an extremely stable O2 complex, even in H2O2 solution.
url http://europepmc.org/articles/PMC4195732?pdf=render
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AT kanayamada hemoglobinalbuminclusterincorporatingaptnanoparticleartificialo2carrierwithantioxidantactivities
AT christophbottcher hemoglobinalbuminclusterincorporatingaptnanoparticleartificialo2carrierwithantioxidantactivities
AT teruyukikomatsu hemoglobinalbuminclusterincorporatingaptnanoparticleartificialo2carrierwithantioxidantactivities
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