An in vitro investigation into the protective and genotoxic effects of myricetin bulk and nano forms in lymphocytes of MGUS patients and healthy individuals

Yes === The present study investigated the genoprotective and genotoxic effects of myricetin bulk (10 μM) and nano forms (20 μM) in the lymphocytes from pre-cancerous, monoclonal gammopathy of unknown significance (MGUS) patients and healthy individuals using the Comet and micronucleus assays. The s...

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Main Authors: Akhtar, Shabana, Najafzadeh, Mojgan, Isreb, Mohammad, Newton, L., Gopalan, Rajendran C., Anderson, Diana
Language:en
Published: 2020
Subjects:
P53
ATM
Online Access:http://hdl.handle.net/10454/17914
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spelling ndltd-BRADFORD-oai-bradscholars.brad.ac.uk-10454-179142021-03-26T05:01:09Z An in vitro investigation into the protective and genotoxic effects of myricetin bulk and nano forms in lymphocytes of MGUS patients and healthy individuals Akhtar, Shabana Najafzadeh, Mojgan Isreb, Mohammad Newton, L. Gopalan, Rajendran C. Anderson, Diana Myricetin Bulk and nano forms Lymphocytes Pre-cancerous patients Healthy individuals Genoprotective P53 ATM Comet and micronucleus assays Yes The present study investigated the genoprotective and genotoxic effects of myricetin bulk (10 μM) and nano forms (20 μM) in the lymphocytes from pre-cancerous, monoclonal gammopathy of unknown significance (MGUS) patients and healthy individuals using the Comet and micronucleus assays. The study also evaluated the effect of myricetin on P53 expression levels, using the Western blot technique. Results showed that throughout the in-vitro treatment, lymphocytes from the patients group had higher levels of baseline DNA damage compared to the healthy group. Myricetin in both forms induced significant DNA damage, only at higher concentrations (>40 μM). The micronucleus assay showed a significant reduction (P < 0.01) in the frequency of micronuclei in mono-nucleated cells in the patient group treated with the nano form of myricetin at the non-toxic dose of 20 μM. There was a significant increase in both gene and protein P53 levels in lymphocytes isolated from healthy individuals and pre-cancerous patients. These results suggested a protective effect of myricetin and indicated its nutritional supplement potential for protection against cancer development among patients suffering from MGUS. This study was kindly funded by Mr Nasir Qayyum, Bradford, UK. 2020-06-15T17:08:08Z 2020-07-09T08:29:35Z 2020-06-15T17:08:08Z 2020-07-09T08:29:35Z 2020-07 2020-03-17 2020-03-24 2020-06-15T16:08:09Z Article Accepted Manuscript Akhtar S, Najafzadeh M, Isreb M et al (2020) An in vitro investigation into the protective and genotoxic effects of myricetin bulk and nano forms in lymphocytes of MGUS patients and healthy individuals. Toxicology Letters. 327: 33-40. http://hdl.handle.net/10454/17914 en https://doi.org/10.1016/j.toxlet.2020.03.012 © 2020 Elsevier B.V. Reproduced in accordance with the publisher's self-archiving policy. This manuscript version is made available under the CC-BY-NC-ND 4.0 license.
collection NDLTD
language en
sources NDLTD
topic Myricetin
Bulk and nano forms
Lymphocytes
Pre-cancerous patients
Healthy individuals
Genoprotective
P53
ATM
Comet and micronucleus assays
spellingShingle Myricetin
Bulk and nano forms
Lymphocytes
Pre-cancerous patients
Healthy individuals
Genoprotective
P53
ATM
Comet and micronucleus assays
Akhtar, Shabana
Najafzadeh, Mojgan
Isreb, Mohammad
Newton, L.
Gopalan, Rajendran C.
Anderson, Diana
An in vitro investigation into the protective and genotoxic effects of myricetin bulk and nano forms in lymphocytes of MGUS patients and healthy individuals
description Yes === The present study investigated the genoprotective and genotoxic effects of myricetin bulk (10 μM) and nano forms (20 μM) in the lymphocytes from pre-cancerous, monoclonal gammopathy of unknown significance (MGUS) patients and healthy individuals using the Comet and micronucleus assays. The study also evaluated the effect of myricetin on P53 expression levels, using the Western blot technique. Results showed that throughout the in-vitro treatment, lymphocytes from the patients group had higher levels of baseline DNA damage compared to the healthy group. Myricetin in both forms induced significant DNA damage, only at higher concentrations (>40 μM). The micronucleus assay showed a significant reduction (P < 0.01) in the frequency of micronuclei in mono-nucleated cells in the patient group treated with the nano form of myricetin at the non-toxic dose of 20 μM. There was a significant increase in both gene and protein P53 levels in lymphocytes isolated from healthy individuals and pre-cancerous patients. These results suggested a protective effect of myricetin and indicated its nutritional supplement potential for protection against cancer development among patients suffering from MGUS. === This study was kindly funded by Mr Nasir Qayyum, Bradford, UK.
author Akhtar, Shabana
Najafzadeh, Mojgan
Isreb, Mohammad
Newton, L.
Gopalan, Rajendran C.
Anderson, Diana
author_facet Akhtar, Shabana
Najafzadeh, Mojgan
Isreb, Mohammad
Newton, L.
Gopalan, Rajendran C.
Anderson, Diana
author_sort Akhtar, Shabana
title An in vitro investigation into the protective and genotoxic effects of myricetin bulk and nano forms in lymphocytes of MGUS patients and healthy individuals
title_short An in vitro investigation into the protective and genotoxic effects of myricetin bulk and nano forms in lymphocytes of MGUS patients and healthy individuals
title_full An in vitro investigation into the protective and genotoxic effects of myricetin bulk and nano forms in lymphocytes of MGUS patients and healthy individuals
title_fullStr An in vitro investigation into the protective and genotoxic effects of myricetin bulk and nano forms in lymphocytes of MGUS patients and healthy individuals
title_full_unstemmed An in vitro investigation into the protective and genotoxic effects of myricetin bulk and nano forms in lymphocytes of MGUS patients and healthy individuals
title_sort in vitro investigation into the protective and genotoxic effects of myricetin bulk and nano forms in lymphocytes of mgus patients and healthy individuals
publishDate 2020
url http://hdl.handle.net/10454/17914
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