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Macrophage-like THP-1 Cells Derived from High-Density Cell Culture Are Resistant to TRAIL-Induced Cell Death via Down-Regulation of Death-Receptors DR4 and DR5

SIMPLE SUMMARY: The mechanisms of leukemic cell resistance to antitumor immunity remains a topical issue. In this work, we found an increase in TRAIL-resistance of human acute myeloid leukemia cells THP-1 in high-density populations in vitro. The results obtained show that a macrophage-like phenotyp...

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Autores principales: Lomovskaya, Yana Vladimirovna, Kobyakova, Margarita Igorevna, Senotov, Anatoly Sergeevich, Lomovsky, Alexey Igorevich, Minaychev, Vladislav Valentinovich, Fadeeva, Irina Sergeevna, Shtatnova, Daria Yuryevna, Krasnov, Kirill Sergeevich, Zvyagina, Alena Igorevna, Akatov, Vladimir Semenovich, Fadeev, Roman Sergeevich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8961584/
https://www.ncbi.nlm.nih.gov/pubmed/35204655
http://dx.doi.org/10.3390/biom12020150
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author Lomovskaya, Yana Vladimirovna
Kobyakova, Margarita Igorevna
Senotov, Anatoly Sergeevich
Lomovsky, Alexey Igorevich
Minaychev, Vladislav Valentinovich
Fadeeva, Irina Sergeevna
Shtatnova, Daria Yuryevna
Krasnov, Kirill Sergeevich
Zvyagina, Alena Igorevna
Akatov, Vladimir Semenovich
Fadeev, Roman Sergeevich
author_facet Lomovskaya, Yana Vladimirovna
Kobyakova, Margarita Igorevna
Senotov, Anatoly Sergeevich
Lomovsky, Alexey Igorevich
Minaychev, Vladislav Valentinovich
Fadeeva, Irina Sergeevna
Shtatnova, Daria Yuryevna
Krasnov, Kirill Sergeevich
Zvyagina, Alena Igorevna
Akatov, Vladimir Semenovich
Fadeev, Roman Sergeevich
author_sort Lomovskaya, Yana Vladimirovna
collection PubMed
description SIMPLE SUMMARY: The mechanisms of leukemic cell resistance to antitumor immunity remains a topical issue. In this work, we found an increase in TRAIL-resistance of human acute myeloid leukemia cells THP-1 in high-density populations in vitro. The results obtained show that a macrophage-like phenotype of the acute myeloid leukemia cells, caused by stressful conditions in high-density culture, can increaser resistance to TRAIL-induced apoptosis, while retaining proliferative potential. The mechanism of the increase in TRAIL-resistance can be related to a decrease in the expression of death receptors DR4 and DR5. The possible realization of these events in vivo may be the reason for tumor progression. ABSTRACT: Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL/Apo2L) is a highly selective and promising anticancer agent due to its specific apoptosis-inducing effect on tumor cells, rather than most normal cells. TRAIL is currently under investigation for use in the treatment of leukemia. However, the resistance of leukemic cells to TRAIL-induced apoptosis may limit its efficacy. The mechanisms of leukemic cell resistance to antitumor immunity remains a topical issue. In this work, we have found an increase in the resistance to TRAIL-induced cell death in human leukemia THP-1 cells, which was caused by differentiation into a macrophage-like phenotype in high-density culture in vitro. Stressful conditions, manifested by the inhibition of cell growth and the activation of cell death in high-density culture of THP-1 cells, induced the appearance of cells adhered to culture dishes. The THP-1ad cell line was derived by selection of these adhered cells. The genetic study, using STR and aCGH assays, has shown that THP-1ad cells were derived from THP-1 cells due to mutagenesis. The THP-1ad cells possessed high proliferative potential and a macrophage-like immunophenotype. The adhesion of THP-1ad cells to the extracellular matrix was mediated by αVβ5 integrin. The cytokine production, as well as the rise of intracellular ROS and NO activities by LPS in THP-1ad cell culture, were characteristic of macrophage-like cells. The THP-1ad cells were found to appear to increase in resistance to TRAIL-induced cell death in comparison with THP-1 cells. The mechanism of the increase in TRAIL-resistance can be related to a decrease in the expression of death receptors DR4 and DR5 on the THP-1ad cells. Thus, the macrophage-like phenotype formation with the maintenance of a high proliferative potential of leukemic cells, caused by stress conditions in high-density cell cultures in vitro, can induce an increase in resistance to TRAIL-induced cell death due to the loss of DR4 and DR5 receptors. The possible realization of these events in vivo may be the reason for tumor progression.
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spelling pubmed-89615842022-03-30 Macrophage-like THP-1 Cells Derived from High-Density Cell Culture Are Resistant to TRAIL-Induced Cell Death via Down-Regulation of Death-Receptors DR4 and DR5 Lomovskaya, Yana Vladimirovna Kobyakova, Margarita Igorevna Senotov, Anatoly Sergeevich Lomovsky, Alexey Igorevich Minaychev, Vladislav Valentinovich Fadeeva, Irina Sergeevna Shtatnova, Daria Yuryevna Krasnov, Kirill Sergeevich Zvyagina, Alena Igorevna Akatov, Vladimir Semenovich Fadeev, Roman Sergeevich Biomolecules Article SIMPLE SUMMARY: The mechanisms of leukemic cell resistance to antitumor immunity remains a topical issue. In this work, we found an increase in TRAIL-resistance of human acute myeloid leukemia cells THP-1 in high-density populations in vitro. The results obtained show that a macrophage-like phenotype of the acute myeloid leukemia cells, caused by stressful conditions in high-density culture, can increaser resistance to TRAIL-induced apoptosis, while retaining proliferative potential. The mechanism of the increase in TRAIL-resistance can be related to a decrease in the expression of death receptors DR4 and DR5. The possible realization of these events in vivo may be the reason for tumor progression. ABSTRACT: Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL/Apo2L) is a highly selective and promising anticancer agent due to its specific apoptosis-inducing effect on tumor cells, rather than most normal cells. TRAIL is currently under investigation for use in the treatment of leukemia. However, the resistance of leukemic cells to TRAIL-induced apoptosis may limit its efficacy. The mechanisms of leukemic cell resistance to antitumor immunity remains a topical issue. In this work, we have found an increase in the resistance to TRAIL-induced cell death in human leukemia THP-1 cells, which was caused by differentiation into a macrophage-like phenotype in high-density culture in vitro. Stressful conditions, manifested by the inhibition of cell growth and the activation of cell death in high-density culture of THP-1 cells, induced the appearance of cells adhered to culture dishes. The THP-1ad cell line was derived by selection of these adhered cells. The genetic study, using STR and aCGH assays, has shown that THP-1ad cells were derived from THP-1 cells due to mutagenesis. The THP-1ad cells possessed high proliferative potential and a macrophage-like immunophenotype. The adhesion of THP-1ad cells to the extracellular matrix was mediated by αVβ5 integrin. The cytokine production, as well as the rise of intracellular ROS and NO activities by LPS in THP-1ad cell culture, were characteristic of macrophage-like cells. The THP-1ad cells were found to appear to increase in resistance to TRAIL-induced cell death in comparison with THP-1 cells. The mechanism of the increase in TRAIL-resistance can be related to a decrease in the expression of death receptors DR4 and DR5 on the THP-1ad cells. Thus, the macrophage-like phenotype formation with the maintenance of a high proliferative potential of leukemic cells, caused by stress conditions in high-density cell cultures in vitro, can induce an increase in resistance to TRAIL-induced cell death due to the loss of DR4 and DR5 receptors. The possible realization of these events in vivo may be the reason for tumor progression. MDPI 2022-01-18 /pmc/articles/PMC8961584/ /pubmed/35204655 http://dx.doi.org/10.3390/biom12020150 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lomovskaya, Yana Vladimirovna
Kobyakova, Margarita Igorevna
Senotov, Anatoly Sergeevich
Lomovsky, Alexey Igorevich
Minaychev, Vladislav Valentinovich
Fadeeva, Irina Sergeevna
Shtatnova, Daria Yuryevna
Krasnov, Kirill Sergeevich
Zvyagina, Alena Igorevna
Akatov, Vladimir Semenovich
Fadeev, Roman Sergeevich
Macrophage-like THP-1 Cells Derived from High-Density Cell Culture Are Resistant to TRAIL-Induced Cell Death via Down-Regulation of Death-Receptors DR4 and DR5
title Macrophage-like THP-1 Cells Derived from High-Density Cell Culture Are Resistant to TRAIL-Induced Cell Death via Down-Regulation of Death-Receptors DR4 and DR5
title_full Macrophage-like THP-1 Cells Derived from High-Density Cell Culture Are Resistant to TRAIL-Induced Cell Death via Down-Regulation of Death-Receptors DR4 and DR5
title_fullStr Macrophage-like THP-1 Cells Derived from High-Density Cell Culture Are Resistant to TRAIL-Induced Cell Death via Down-Regulation of Death-Receptors DR4 and DR5
title_full_unstemmed Macrophage-like THP-1 Cells Derived from High-Density Cell Culture Are Resistant to TRAIL-Induced Cell Death via Down-Regulation of Death-Receptors DR4 and DR5
title_short Macrophage-like THP-1 Cells Derived from High-Density Cell Culture Are Resistant to TRAIL-Induced Cell Death via Down-Regulation of Death-Receptors DR4 and DR5
title_sort macrophage-like thp-1 cells derived from high-density cell culture are resistant to trail-induced cell death via down-regulation of death-receptors dr4 and dr5
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8961584/
https://www.ncbi.nlm.nih.gov/pubmed/35204655
http://dx.doi.org/10.3390/biom12020150
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