Triterpene Acids from Rose Hip Powder Inhibit Self-antigen- and LPS-induced Cytokine Production and CD4(+) T-cell Proliferation in Human Mononuclear Cell Cultures

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Standard

Triterpene Acids from Rose Hip Powder Inhibit Self-antigen- and LPS-induced Cytokine Production and CD4(+) T-cell Proliferation in Human Mononuclear Cell Cultures. / Saaby, Lasse; Nielsen, Claus Henrik.

I: Phytotherapy Research, Bind 26, Nr. 8, 08.2012, s. 1142-1147.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Saaby, L & Nielsen, CH 2012, 'Triterpene Acids from Rose Hip Powder Inhibit Self-antigen- and LPS-induced Cytokine Production and CD4(+) T-cell Proliferation in Human Mononuclear Cell Cultures', Phytotherapy Research, bind 26, nr. 8, s. 1142-1147. https://doi.org/10.1002/ptr.3713

APA

Saaby, L., & Nielsen, C. H. (2012). Triterpene Acids from Rose Hip Powder Inhibit Self-antigen- and LPS-induced Cytokine Production and CD4(+) T-cell Proliferation in Human Mononuclear Cell Cultures. Phytotherapy Research, 26(8), 1142-1147. https://doi.org/10.1002/ptr.3713

Vancouver

Saaby L, Nielsen CH. Triterpene Acids from Rose Hip Powder Inhibit Self-antigen- and LPS-induced Cytokine Production and CD4(+) T-cell Proliferation in Human Mononuclear Cell Cultures. Phytotherapy Research. 2012 aug.;26(8):1142-1147. https://doi.org/10.1002/ptr.3713

Author

Saaby, Lasse ; Nielsen, Claus Henrik. / Triterpene Acids from Rose Hip Powder Inhibit Self-antigen- and LPS-induced Cytokine Production and CD4(+) T-cell Proliferation in Human Mononuclear Cell Cultures. I: Phytotherapy Research. 2012 ; Bind 26, Nr. 8. s. 1142-1147.

Bibtex

@article{e868b3c54c3141dbb1d080af9e8dbacd,
title = "Triterpene Acids from Rose Hip Powder Inhibit Self-antigen- and LPS-induced Cytokine Production and CD4(+) T-cell Proliferation in Human Mononuclear Cell Cultures",
abstract = "A triterpene acid mixture consisting of oleanolic, ursolic and betulinic acid isolated from a standardized rose hip powder (Rosa canina L.) has been shown to inhibit interleukin (IL)-6 release from Mono Mac 6 cells. The present study examined the effects of the triterpene acid mixture on the cytokine production and proliferation of CD4(+) T cells and CD19(+) B cells induced by a self-antigen, human thyroglobulin and by lipopolysaccharide in cultures of normal mononuclear cells. The triterpene acid mixture inhibited the production of tumor necrosis factor-a and IL-6 with estimated IC(50) values in the range 35-56¿µg/mL, the Th1 cytokines interferon-¿ and IL-2 (IC(50) values 10-20¿µg/mL) and the antiinflammatory cytokine IL-10 (IC(50) values 18-21¿µg/mL). Moreover, the mixture also inhibited CD4(+) T-cell and CD19(+) B-cell proliferation (IC(50) value 22 and 12¿µg/mL, respectively). Together, these data demonstrate that oleanolic, ursolic and betulinic acid are active immunomodulatory constituents of the standardized rose hip powder. However, since the estimated IC(50) values are in the µg/mL range, it is questionable whether the content of the triterpene acids in the standardized rose hip powder, alone, can explain the reported clinical effects. Copyright {\textcopyright} 2011 John Wiley & Sons, Ltd.",
author = "Lasse Saaby and Nielsen, {Claus Henrik}",
note = "Copyright {\textcopyright} 2011 John Wiley & Sons, Ltd.",
year = "2012",
month = aug,
doi = "10.1002/ptr.3713",
language = "English",
volume = "26",
pages = "1142--1147",
journal = "Phytotherapy Research",
issn = "0951-418X",
publisher = "JohnWiley & Sons Ltd",
number = "8",

}

RIS

TY - JOUR

T1 - Triterpene Acids from Rose Hip Powder Inhibit Self-antigen- and LPS-induced Cytokine Production and CD4(+) T-cell Proliferation in Human Mononuclear Cell Cultures

AU - Saaby, Lasse

AU - Nielsen, Claus Henrik

N1 - Copyright © 2011 John Wiley & Sons, Ltd.

PY - 2012/8

Y1 - 2012/8

N2 - A triterpene acid mixture consisting of oleanolic, ursolic and betulinic acid isolated from a standardized rose hip powder (Rosa canina L.) has been shown to inhibit interleukin (IL)-6 release from Mono Mac 6 cells. The present study examined the effects of the triterpene acid mixture on the cytokine production and proliferation of CD4(+) T cells and CD19(+) B cells induced by a self-antigen, human thyroglobulin and by lipopolysaccharide in cultures of normal mononuclear cells. The triterpene acid mixture inhibited the production of tumor necrosis factor-a and IL-6 with estimated IC(50) values in the range 35-56¿µg/mL, the Th1 cytokines interferon-¿ and IL-2 (IC(50) values 10-20¿µg/mL) and the antiinflammatory cytokine IL-10 (IC(50) values 18-21¿µg/mL). Moreover, the mixture also inhibited CD4(+) T-cell and CD19(+) B-cell proliferation (IC(50) value 22 and 12¿µg/mL, respectively). Together, these data demonstrate that oleanolic, ursolic and betulinic acid are active immunomodulatory constituents of the standardized rose hip powder. However, since the estimated IC(50) values are in the µg/mL range, it is questionable whether the content of the triterpene acids in the standardized rose hip powder, alone, can explain the reported clinical effects. Copyright © 2011 John Wiley & Sons, Ltd.

AB - A triterpene acid mixture consisting of oleanolic, ursolic and betulinic acid isolated from a standardized rose hip powder (Rosa canina L.) has been shown to inhibit interleukin (IL)-6 release from Mono Mac 6 cells. The present study examined the effects of the triterpene acid mixture on the cytokine production and proliferation of CD4(+) T cells and CD19(+) B cells induced by a self-antigen, human thyroglobulin and by lipopolysaccharide in cultures of normal mononuclear cells. The triterpene acid mixture inhibited the production of tumor necrosis factor-a and IL-6 with estimated IC(50) values in the range 35-56¿µg/mL, the Th1 cytokines interferon-¿ and IL-2 (IC(50) values 10-20¿µg/mL) and the antiinflammatory cytokine IL-10 (IC(50) values 18-21¿µg/mL). Moreover, the mixture also inhibited CD4(+) T-cell and CD19(+) B-cell proliferation (IC(50) value 22 and 12¿µg/mL, respectively). Together, these data demonstrate that oleanolic, ursolic and betulinic acid are active immunomodulatory constituents of the standardized rose hip powder. However, since the estimated IC(50) values are in the µg/mL range, it is questionable whether the content of the triterpene acids in the standardized rose hip powder, alone, can explain the reported clinical effects. Copyright © 2011 John Wiley & Sons, Ltd.

U2 - 10.1002/ptr.3713

DO - 10.1002/ptr.3713

M3 - Journal article

C2 - 22170858

VL - 26

SP - 1142

EP - 1147

JO - Phytotherapy Research

JF - Phytotherapy Research

SN - 0951-418X

IS - 8

ER -

ID: 40223822