Cargando…

Comparison of the proliferation, cytotoxic activity and cytokine secretion function of cascade primed immune cells and cytokine-induced killer cells in vitro

The present study aimed to compare the antitumor effects of cascade primed immune (CAPRI) cells and cytokine-induced killer (CIK) cells in vitro, through investigating cell morphology, proliferation, cytotoxic activity to tumor cells and the ability of these cells to secrete cytokines. Peripheral bl...

Descripción completa

Detalles Bibliográficos
Autores principales: LI, GUI-XIN, ZHAO, SHU-SHU, ZHANG, XU-GUANG, WANG, WEN-HAO, LIU, JIN, XUE, KE-WEI, LI, XIAO-YAN, GUO, YING-XUE, WANG, LI-HUA
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4464195/
https://www.ncbi.nlm.nih.gov/pubmed/25955083
http://dx.doi.org/10.3892/mmr.2015.3765
_version_ 1782375912133623808
author LI, GUI-XIN
ZHAO, SHU-SHU
ZHANG, XU-GUANG
WANG, WEN-HAO
LIU, JIN
XUE, KE-WEI
LI, XIAO-YAN
GUO, YING-XUE
WANG, LI-HUA
author_facet LI, GUI-XIN
ZHAO, SHU-SHU
ZHANG, XU-GUANG
WANG, WEN-HAO
LIU, JIN
XUE, KE-WEI
LI, XIAO-YAN
GUO, YING-XUE
WANG, LI-HUA
author_sort LI, GUI-XIN
collection PubMed
description The present study aimed to compare the antitumor effects of cascade primed immune (CAPRI) cells and cytokine-induced killer (CIK) cells in vitro, through investigating cell morphology, proliferation, cytotoxic activity to tumor cells and the ability of these cells to secrete cytokines. Peripheral blood samples (50 ml) were obtained from three healthy volunteers and peripheral blood mononuclear cells (PBMCs) were obtained from each via Ficoll-Conray density gradient centrifugation. Each suspension of PBMCs (1×10(6)/ml) was divided into two parts; CAPRI cells were obtained from one part through a series of induction, amplification and cytokine cultures, while CIK cells were obtained from the other part through induction with different cytokines. During the culture process, the proliferation and morphological changes were observed for the two cell types using Trypan blue staining. At day 14, the cytotoxic activity of the two cell types was examined through determining lactate dehydrogenase release in the presence of K562 leukemia cells and MCF-7 breast cancer cells. In addition, secretory levels of interferon (IFN)-γ and interleukin (IL)-2 were detected using enzyme-linked immunospot (ELISPOT) technology. The results revealed that at day 5 and 14 of culture, there were significantly fewer CAPRI cells compared with CIK cells (P<0.001), although the survival rate of each cell type was >95%. The cytotoxic activity of CAPRI cells towards the K562 cell line was effector-target ratio-dependent (40:1 and 20:1) with values of 55.1±3.25 and 35.0±2.65%, respectively, which were significantly reduced compared with the corresponding data in CIK cells, 60.0±3.03 and 39.7±3.42% (P=0.004 and 0.005, respectively). Furthermore, the cytotoxic activity of CAPRI cells towards MCF-7 cells were 71.5±3.06, 56.0±3.76 and 40.2±2.90% at effector-target ratios 40:1, 20:1 and 10:1, respectively. These data were significantly higher than the corresponding values in CIK cells, 65.4±3.86, 49.5±3.91 and 36.1±3.73% (P=0.002, 0.003 and 0.02, respectively). As determined using ELISPOT technology at different cell concentrations (1×10(6)/ml and 5×10(5)/ml), IFN-γ secretion levels, determined by the number of spot-forming cells, of CAPRI cells were 126.2±10.31 and 48.8±10.99, respectively, which were significantly reduced compared with those of CIK cells, 409.3±7.76 and 159.3±15.45, respectively (P<0.001). IL-2 secretion levels in CAPRI cells were 325.1±16.24 and 113.8±11.29 at 1×10(6)/ml and 5×10(5)/ml, respectively, which were significantly increased compared with CIK cells, 212.0±16.58 and 70.7±10.57, respectively (P<0.001). In conclusion, the present study demonstrated that CAPRI cells had a reduced proliferation rate compared with CIK cells as well as a less potent cytotoxic effect on K562 cells; however, the two cell types had potent cytotoxic activity towards solid tumor MCF-7 cells. In addition, CAPRI cells secreted lower levels of IFN-γ and increased levels of IL-2 compared with CIK cells. These results indicated that antitumor activities of CAPRI and CIK cells proceeded via different mechanisms.
format Online
Article
Text
id pubmed-4464195
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher D.A. Spandidos
record_format MEDLINE/PubMed
spelling pubmed-44641952015-06-26 Comparison of the proliferation, cytotoxic activity and cytokine secretion function of cascade primed immune cells and cytokine-induced killer cells in vitro LI, GUI-XIN ZHAO, SHU-SHU ZHANG, XU-GUANG WANG, WEN-HAO LIU, JIN XUE, KE-WEI LI, XIAO-YAN GUO, YING-XUE WANG, LI-HUA Mol Med Rep Articles The present study aimed to compare the antitumor effects of cascade primed immune (CAPRI) cells and cytokine-induced killer (CIK) cells in vitro, through investigating cell morphology, proliferation, cytotoxic activity to tumor cells and the ability of these cells to secrete cytokines. Peripheral blood samples (50 ml) were obtained from three healthy volunteers and peripheral blood mononuclear cells (PBMCs) were obtained from each via Ficoll-Conray density gradient centrifugation. Each suspension of PBMCs (1×10(6)/ml) was divided into two parts; CAPRI cells were obtained from one part through a series of induction, amplification and cytokine cultures, while CIK cells were obtained from the other part through induction with different cytokines. During the culture process, the proliferation and morphological changes were observed for the two cell types using Trypan blue staining. At day 14, the cytotoxic activity of the two cell types was examined through determining lactate dehydrogenase release in the presence of K562 leukemia cells and MCF-7 breast cancer cells. In addition, secretory levels of interferon (IFN)-γ and interleukin (IL)-2 were detected using enzyme-linked immunospot (ELISPOT) technology. The results revealed that at day 5 and 14 of culture, there were significantly fewer CAPRI cells compared with CIK cells (P<0.001), although the survival rate of each cell type was >95%. The cytotoxic activity of CAPRI cells towards the K562 cell line was effector-target ratio-dependent (40:1 and 20:1) with values of 55.1±3.25 and 35.0±2.65%, respectively, which were significantly reduced compared with the corresponding data in CIK cells, 60.0±3.03 and 39.7±3.42% (P=0.004 and 0.005, respectively). Furthermore, the cytotoxic activity of CAPRI cells towards MCF-7 cells were 71.5±3.06, 56.0±3.76 and 40.2±2.90% at effector-target ratios 40:1, 20:1 and 10:1, respectively. These data were significantly higher than the corresponding values in CIK cells, 65.4±3.86, 49.5±3.91 and 36.1±3.73% (P=0.002, 0.003 and 0.02, respectively). As determined using ELISPOT technology at different cell concentrations (1×10(6)/ml and 5×10(5)/ml), IFN-γ secretion levels, determined by the number of spot-forming cells, of CAPRI cells were 126.2±10.31 and 48.8±10.99, respectively, which were significantly reduced compared with those of CIK cells, 409.3±7.76 and 159.3±15.45, respectively (P<0.001). IL-2 secretion levels in CAPRI cells were 325.1±16.24 and 113.8±11.29 at 1×10(6)/ml and 5×10(5)/ml, respectively, which were significantly increased compared with CIK cells, 212.0±16.58 and 70.7±10.57, respectively (P<0.001). In conclusion, the present study demonstrated that CAPRI cells had a reduced proliferation rate compared with CIK cells as well as a less potent cytotoxic effect on K562 cells; however, the two cell types had potent cytotoxic activity towards solid tumor MCF-7 cells. In addition, CAPRI cells secreted lower levels of IFN-γ and increased levels of IL-2 compared with CIK cells. These results indicated that antitumor activities of CAPRI and CIK cells proceeded via different mechanisms. D.A. Spandidos 2015-08 2015-05-08 /pmc/articles/PMC4464195/ /pubmed/25955083 http://dx.doi.org/10.3892/mmr.2015.3765 Text en Copyright © 2015, Spandidos Publications http://creativecommons.org/licenses/by/3.0 This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Articles
LI, GUI-XIN
ZHAO, SHU-SHU
ZHANG, XU-GUANG
WANG, WEN-HAO
LIU, JIN
XUE, KE-WEI
LI, XIAO-YAN
GUO, YING-XUE
WANG, LI-HUA
Comparison of the proliferation, cytotoxic activity and cytokine secretion function of cascade primed immune cells and cytokine-induced killer cells in vitro
title Comparison of the proliferation, cytotoxic activity and cytokine secretion function of cascade primed immune cells and cytokine-induced killer cells in vitro
title_full Comparison of the proliferation, cytotoxic activity and cytokine secretion function of cascade primed immune cells and cytokine-induced killer cells in vitro
title_fullStr Comparison of the proliferation, cytotoxic activity and cytokine secretion function of cascade primed immune cells and cytokine-induced killer cells in vitro
title_full_unstemmed Comparison of the proliferation, cytotoxic activity and cytokine secretion function of cascade primed immune cells and cytokine-induced killer cells in vitro
title_short Comparison of the proliferation, cytotoxic activity and cytokine secretion function of cascade primed immune cells and cytokine-induced killer cells in vitro
title_sort comparison of the proliferation, cytotoxic activity and cytokine secretion function of cascade primed immune cells and cytokine-induced killer cells in vitro
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4464195/
https://www.ncbi.nlm.nih.gov/pubmed/25955083
http://dx.doi.org/10.3892/mmr.2015.3765
work_keys_str_mv AT liguixin comparisonoftheproliferationcytotoxicactivityandcytokinesecretionfunctionofcascadeprimedimmunecellsandcytokineinducedkillercellsinvitro
AT zhaoshushu comparisonoftheproliferationcytotoxicactivityandcytokinesecretionfunctionofcascadeprimedimmunecellsandcytokineinducedkillercellsinvitro
AT zhangxuguang comparisonoftheproliferationcytotoxicactivityandcytokinesecretionfunctionofcascadeprimedimmunecellsandcytokineinducedkillercellsinvitro
AT wangwenhao comparisonoftheproliferationcytotoxicactivityandcytokinesecretionfunctionofcascadeprimedimmunecellsandcytokineinducedkillercellsinvitro
AT liujin comparisonoftheproliferationcytotoxicactivityandcytokinesecretionfunctionofcascadeprimedimmunecellsandcytokineinducedkillercellsinvitro
AT xuekewei comparisonoftheproliferationcytotoxicactivityandcytokinesecretionfunctionofcascadeprimedimmunecellsandcytokineinducedkillercellsinvitro
AT lixiaoyan comparisonoftheproliferationcytotoxicactivityandcytokinesecretionfunctionofcascadeprimedimmunecellsandcytokineinducedkillercellsinvitro
AT guoyingxue comparisonoftheproliferationcytotoxicactivityandcytokinesecretionfunctionofcascadeprimedimmunecellsandcytokineinducedkillercellsinvitro
AT wanglihua comparisonoftheproliferationcytotoxicactivityandcytokinesecretionfunctionofcascadeprimedimmunecellsandcytokineinducedkillercellsinvitro