Trifunctional fluorescent manganese ferrite nanoparticles for hyperthermia therapy, cell probing and drug delivery

Here we have reported a new protocol for drug delivery from hollow sphere manganese ferrite nanoparticles (HMF NPs). The crystalline structure of HMF NPs is obtained from XRD measurement and the morphological and elemental analysis are obtained from FESEM & TEM measurements. Here the HMF NPs are...

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Main Authors: Mandal Goswami Madhuri, De Debarati
Format: Article
Language:English
Published: EDP Sciences 2022-01-01
Series:4 open
Subjects:
Online Access:https://www.4open-sciences.org/articles/fopen/full_html/2022/01/fopen220016/fopen220016.html
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author Mandal Goswami Madhuri
De Debarati
author_facet Mandal Goswami Madhuri
De Debarati
author_sort Mandal Goswami Madhuri
collection DOAJ
description Here we have reported a new protocol for drug delivery from hollow sphere manganese ferrite nanoparticles (HMF NPs). The crystalline structure of HMF NPs is obtained from XRD measurement and the morphological and elemental analysis are obtained from FESEM & TEM measurements. Here the HMF NPs are properly designed for delivery of dopamine (DA) as anticancer drug to cancer site. The DA polymerizes to a giant molecule polydopamine (PDA) inside hollow HMF in presence of TRIS buffer at pH (8.5) and a composite, HMF-PDA is formed. Being giant molecule polydopamine remain stable inside the hollow particles, but when these HMF-PDA come in contact of low pH i.e. pH 5 (cancer cells pH), free DA starts to be released. At hyperthermic temperature (45 °C) release enhances compare to physiological temperature (37 °C). The DA release studies are monitored by UV-visible absorption spectroscopy with progress of time at different temperatures and pH. It has been observed that HMF-PDA has fluorescent property whereas DA has no such effects. So, incorporation of PDA inside HMF and tagging of HMF-PDA with cancer cells can also be monitored by fluorescence imaging. Hence, we have successfully synthesized trifunctional HMF-PDA composite which can serve three purposes like cancer cell probing by fluorescence imaging, hyperthermia therapy and drug delivery by magnetic field and pH trigger method.
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spelling doaj.art-45f465a985164b0abe1571fbd92596482022-12-22T04:29:33ZengEDP Sciences4 open2557-02502022-01-0151710.1051/fopen/2022018fopen220016Trifunctional fluorescent manganese ferrite nanoparticles for hyperthermia therapy, cell probing and drug deliveryMandal Goswami Madhuri0https://orcid.org/0000-0002-4955-7219De Debarati1Centre for Biomedical Research, Bharat Sevashram Sangha HospitalCRNN, Calcutta UniversityHere we have reported a new protocol for drug delivery from hollow sphere manganese ferrite nanoparticles (HMF NPs). The crystalline structure of HMF NPs is obtained from XRD measurement and the morphological and elemental analysis are obtained from FESEM & TEM measurements. Here the HMF NPs are properly designed for delivery of dopamine (DA) as anticancer drug to cancer site. The DA polymerizes to a giant molecule polydopamine (PDA) inside hollow HMF in presence of TRIS buffer at pH (8.5) and a composite, HMF-PDA is formed. Being giant molecule polydopamine remain stable inside the hollow particles, but when these HMF-PDA come in contact of low pH i.e. pH 5 (cancer cells pH), free DA starts to be released. At hyperthermic temperature (45 °C) release enhances compare to physiological temperature (37 °C). The DA release studies are monitored by UV-visible absorption spectroscopy with progress of time at different temperatures and pH. It has been observed that HMF-PDA has fluorescent property whereas DA has no such effects. So, incorporation of PDA inside HMF and tagging of HMF-PDA with cancer cells can also be monitored by fluorescence imaging. Hence, we have successfully synthesized trifunctional HMF-PDA composite which can serve three purposes like cancer cell probing by fluorescence imaging, hyperthermia therapy and drug delivery by magnetic field and pH trigger method.https://www.4open-sciences.org/articles/fopen/full_html/2022/01/fopen220016/fopen220016.htmlhollow manganese ferrite nanoparticlesdrug deliverydopamineph and temperature responsive
spellingShingle Mandal Goswami Madhuri
De Debarati
Trifunctional fluorescent manganese ferrite nanoparticles for hyperthermia therapy, cell probing and drug delivery
4 open
hollow manganese ferrite nanoparticles
drug delivery
dopamine
ph and temperature responsive
title Trifunctional fluorescent manganese ferrite nanoparticles for hyperthermia therapy, cell probing and drug delivery
title_full Trifunctional fluorescent manganese ferrite nanoparticles for hyperthermia therapy, cell probing and drug delivery
title_fullStr Trifunctional fluorescent manganese ferrite nanoparticles for hyperthermia therapy, cell probing and drug delivery
title_full_unstemmed Trifunctional fluorescent manganese ferrite nanoparticles for hyperthermia therapy, cell probing and drug delivery
title_short Trifunctional fluorescent manganese ferrite nanoparticles for hyperthermia therapy, cell probing and drug delivery
title_sort trifunctional fluorescent manganese ferrite nanoparticles for hyperthermia therapy cell probing and drug delivery
topic hollow manganese ferrite nanoparticles
drug delivery
dopamine
ph and temperature responsive
url https://www.4open-sciences.org/articles/fopen/full_html/2022/01/fopen220016/fopen220016.html
work_keys_str_mv AT mandalgoswamimadhuri trifunctionalfluorescentmanganeseferritenanoparticlesforhyperthermiatherapycellprobinganddrugdelivery
AT dedebarati trifunctionalfluorescentmanganeseferritenanoparticlesforhyperthermiatherapycellprobinganddrugdelivery