Ultrastructure Microscopic Characterization of Apoptosis in Myelomoncytic Leukemia Cell Line Treated with Velogenic Viscerotropic Newcastle Disease Virus Strain AF 2240

Objective: Leukemia is a group of hematologic malignancies in the bonemarrow that arise from the dysfunctional proliferation of developing leukocytes. It is classified as either acute or chronic based on the rapidity of proliferation and as myelocytic or lymphocytic based on the cell of origin. Newc...

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Published in:Asian Pacific Journal of Cancer Prevention
Main Author: Ali-Saeed R.; Alabsi A.M.; Al-Garadi M.A.; Abdelwahab S.I.; Samrot A.V.; Subramaniyan V.; Fareez I.M.
Format: Article
Language:English
Published: Asian Pacific Organization for Cancer Prevention 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85205335084&doi=10.31557%2fAPJCP.2024.25.9.2991&partnerID=40&md5=15f7e914eba2d6c7487ce00e79141070
id 2-s2.0-85205335084
spelling 2-s2.0-85205335084
Ali-Saeed R.; Alabsi A.M.; Al-Garadi M.A.; Abdelwahab S.I.; Samrot A.V.; Subramaniyan V.; Fareez I.M.
Ultrastructure Microscopic Characterization of Apoptosis in Myelomoncytic Leukemia Cell Line Treated with Velogenic Viscerotropic Newcastle Disease Virus Strain AF 2240
2024
Asian Pacific Journal of Cancer Prevention
25
9
10.31557/APJCP.2024.25.9.2991
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85205335084&doi=10.31557%2fAPJCP.2024.25.9.2991&partnerID=40&md5=15f7e914eba2d6c7487ce00e79141070
Objective: Leukemia is a group of hematologic malignancies in the bonemarrow that arise from the dysfunctional proliferation of developing leukocytes. It is classified as either acute or chronic based on the rapidity of proliferation and as myelocytic or lymphocytic based on the cell of origin. Newcastle Disease Virus (NDV) is an avian paramyxovirus, which has been demonstrated to possess significant oncolytic activity against mammalian cancers because its ability to kill tumor cells with limited toxicity to normal cells. Methods: In this study, the morphophical changes and apoptosis induction of WEHI 3B leukemia cell line treated with NDV strain AF2240 were studied by scanning electron microscopes and transmission electron microscopes techniques. Result: Electron microscopy indicated that NDV strain AF 2240 significantly altered cell morphology and reduced cell viability. Furthermore, early apoptosis was observed 6 h post-inoculation by fluorescence microscope. Conclusion: Our results suggest that NDV has ability to induce significant apoptoic structural changes in WEHI 3B leukemia cell line. These findings provide new insights into the mechanism of action of NDV virotherapy and could lead to the development of more effective treatments for leukemia. © (2024), (Asian Pacific Organization for Cancer Prevention). All rights reserved.
Asian Pacific Organization for Cancer Prevention
15137368
English
Article
All Open Access; Gold Open Access
author Ali-Saeed R.; Alabsi A.M.; Al-Garadi M.A.; Abdelwahab S.I.; Samrot A.V.; Subramaniyan V.; Fareez I.M.
spellingShingle Ali-Saeed R.; Alabsi A.M.; Al-Garadi M.A.; Abdelwahab S.I.; Samrot A.V.; Subramaniyan V.; Fareez I.M.
Ultrastructure Microscopic Characterization of Apoptosis in Myelomoncytic Leukemia Cell Line Treated with Velogenic Viscerotropic Newcastle Disease Virus Strain AF 2240
author_facet Ali-Saeed R.; Alabsi A.M.; Al-Garadi M.A.; Abdelwahab S.I.; Samrot A.V.; Subramaniyan V.; Fareez I.M.
author_sort Ali-Saeed R.; Alabsi A.M.; Al-Garadi M.A.; Abdelwahab S.I.; Samrot A.V.; Subramaniyan V.; Fareez I.M.
title Ultrastructure Microscopic Characterization of Apoptosis in Myelomoncytic Leukemia Cell Line Treated with Velogenic Viscerotropic Newcastle Disease Virus Strain AF 2240
title_short Ultrastructure Microscopic Characterization of Apoptosis in Myelomoncytic Leukemia Cell Line Treated with Velogenic Viscerotropic Newcastle Disease Virus Strain AF 2240
title_full Ultrastructure Microscopic Characterization of Apoptosis in Myelomoncytic Leukemia Cell Line Treated with Velogenic Viscerotropic Newcastle Disease Virus Strain AF 2240
title_fullStr Ultrastructure Microscopic Characterization of Apoptosis in Myelomoncytic Leukemia Cell Line Treated with Velogenic Viscerotropic Newcastle Disease Virus Strain AF 2240
title_full_unstemmed Ultrastructure Microscopic Characterization of Apoptosis in Myelomoncytic Leukemia Cell Line Treated with Velogenic Viscerotropic Newcastle Disease Virus Strain AF 2240
title_sort Ultrastructure Microscopic Characterization of Apoptosis in Myelomoncytic Leukemia Cell Line Treated with Velogenic Viscerotropic Newcastle Disease Virus Strain AF 2240
publishDate 2024
container_title Asian Pacific Journal of Cancer Prevention
container_volume 25
container_issue 9
doi_str_mv 10.31557/APJCP.2024.25.9.2991
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85205335084&doi=10.31557%2fAPJCP.2024.25.9.2991&partnerID=40&md5=15f7e914eba2d6c7487ce00e79141070
description Objective: Leukemia is a group of hematologic malignancies in the bonemarrow that arise from the dysfunctional proliferation of developing leukocytes. It is classified as either acute or chronic based on the rapidity of proliferation and as myelocytic or lymphocytic based on the cell of origin. Newcastle Disease Virus (NDV) is an avian paramyxovirus, which has been demonstrated to possess significant oncolytic activity against mammalian cancers because its ability to kill tumor cells with limited toxicity to normal cells. Methods: In this study, the morphophical changes and apoptosis induction of WEHI 3B leukemia cell line treated with NDV strain AF2240 were studied by scanning electron microscopes and transmission electron microscopes techniques. Result: Electron microscopy indicated that NDV strain AF 2240 significantly altered cell morphology and reduced cell viability. Furthermore, early apoptosis was observed 6 h post-inoculation by fluorescence microscope. Conclusion: Our results suggest that NDV has ability to induce significant apoptoic structural changes in WEHI 3B leukemia cell line. These findings provide new insights into the mechanism of action of NDV virotherapy and could lead to the development of more effective treatments for leukemia. © (2024), (Asian Pacific Organization for Cancer Prevention). All rights reserved.
publisher Asian Pacific Organization for Cancer Prevention
issn 15137368
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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