Magnetoferritin: A Novel Magnetic Protein Cage Nanocarrier

dc.contributor.authorBobade, Sumedha
dc.contributor.authorVijayarani, K
dc.contributor.authorThirumurugaan, KG
dc.contributor.authorThangavelu, A
dc.contributor.authorVairamuthu, S
dc.contributor.authorKalaiselvi, G
dc.contributor.authorTANUVAS
dc.date.accessioned2019-03-14T07:09:23Z
dc.date.available2019-03-14T07:09:23Z
dc.date.issued2019-02
dc.descriptionTNV_IJCMAS_2019_8(2)182-186en_US
dc.description.abstractNanotechnology is the rapidly expanding field and nanoparticles are omnipresent. Biological nanoparticles are assembled from molecules or atoms synthesized in a biological system. They include magnetosomes, lipoproteins, viruses, exosomes and ferritins.. A typical instance of a protein cage possessing this native biological function is ferritin. This engineered ferritin, which has the same architecture as natural H-ferritin, is termed magnetoferritin. The iron storage protein ferritin consists of a spherical polypeptide shell (apoferritin) and accommodates various metal ions. During the last two decades, the manipulation of protein cages for the encapsulation of single inorganic nanoparticles into their core to design novel hybrid bioinspired nanoparticles Such hybrid nanoparticles represent an opportunity for advanced nanotechnology applications in the nanodevices, disease diagnosis and therapy, drug delivery, vaccine development and bioassay.en_US
dc.identifier.urihttp://krishikosh.egranth.ac.in/handle/1/5810098478
dc.keywordsAppoferritn, Ferritin, Fenobody Magnetoferritin, Nanotechnologyen_US
dc.language.isoenen_US
dc.pages182-186en_US
dc.publisherExcellent Publishersen_US
dc.relation.ispartofseries;2
dc.subjectVeterinary Scienceen_US
dc.titleMagnetoferritin: A Novel Magnetic Protein Cage Nanocarrieren_US
dc.title.alternativeInternational Journal of Current Microbiology and Applied Sciencesen_US
dc.typeArticleen_US
dc.volume8en_US
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