DA-9601 Decreases Immediate-Type Allergic Reaction and Tumor Necrosis Factor-α Production

The immediate-type allergic reaction is involved in many allergic diseases such as asthma, allergic rhinitis, and sinusitis. The discovery of drugs for the treatment of immediate-type allergic disease is a very important subject in human health. The formulated ethanol extract of Artemisia asiatica N...

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Published inJournal of Health Science Vol. 52; no. 4; pp. 383 - 389
Main Authors Kim, Sug-Hyun, Moon, Jin-Young, Jun, Chang-Duk, Kim, Cheorl-Ho, Oh, Tae-Young, Chung, Jae Myung, Lee, Soyoung, Kim, Sang-Hyun, Park, Won-Hwan, Park, Hyo-Hyun
Format Journal Article
LanguageEnglish
Published The Pharmaceutical Society of Japan 2006
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ISSN1344-9702
1347-5207
DOI10.1248/jhs.52.383

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Abstract The immediate-type allergic reaction is involved in many allergic diseases such as asthma, allergic rhinitis, and sinusitis. The discovery of drugs for the treatment of immediate-type allergic disease is a very important subject in human health. The formulated ethanol extract of Artemisia asiatica Nakai (DA-9601) has been reported to have anti-oxidative and anti-inflammatory activities. In this report, we investigated the effect of DA-9601 on the immediate-type allergic reaction and studied its possible mechanisms of action, focusing on the mast cell-mediated allergic reaction. DA-9601 inhibited compound 48/80-induced systemic anaphylactic reactions and serum histamine release in mice. DA-9601 decreased the IgE-mediated passive cutaneous anaphylaxis, the model of local allergic reaction in vivo. DA-9601 dose-dependently reduced histamine release from mast cells activated by compound 48/80 or IgE. Furthermore, DA-9601 decreased the gene expression and production of tumor necrosis factor (TNF)-α in phorbol 12-myristate 13-acetate plus A23187-stimulated mast cells. These findings provide evidence that DA-9601 could be a candidate as an anti-allergic agent.
AbstractList The immediate-type allergic reaction is involved in many allergic diseases such as asthma, allergic rhinitis, and sinusitis. The discovery of drugs for the treatment of immediate-type allergic disease is a very important subject in human health. The formulated ethanol extract of Artemisia asiatica Nakai (DA-9601) has been reported to have anti-oxidative and anti-inflammatory activities. In this report, we investigated the effect of DA-9601 on the immediate-type allergic reaction and studied its possible mechanisms of action, focusing on the mast cell-mediated allergic reaction. DA-9601 inhibited compound 48/80-induced systemic anaphylactic reactions and serum histamine release in mice. DA-9601 decreased the IgE-mediated passive cutaneous anaphylaxis, the model of local allergic reaction in vivo. DA-9601 dose-dependently reduced histamine release from mast cells activated by compound 48/80 or IgE. Furthermore, DA-9601 decreased the gene expression and production of tumor necrosis factor (TNF)-α in phorbol 12-myristate 13-acetate plus A23187-stimulated mast cells. These findings provide evidence that DA-9601 could be a candidate as an anti-allergic agent.
Author Oh, Tae-Young
Kim, Sug-Hyun
Chung, Jae Myung
Moon, Jin-Young
Park, Hyo-Hyun
Lee, Soyoung
Kim, Cheorl-Ho
Kim, Sang-Hyun
Park, Won-Hwan
Jun, Chang-Duk
Author_xml – sequence: 1
  fullname: Kim, Sug-Hyun
  organization: Cardiovascular Medical Research Center and Dept. of AM-Pointology & Diagnostics, Dongguk University
– sequence: 1
  fullname: Moon, Jin-Young
  organization: Cardiovascular Medical Research Center and Dept. of AM-Pointology & Diagnostics, Dongguk University
– sequence: 1
  fullname: Jun, Chang-Duk
  organization: Department of Life Science, Gwangju Institutive of Science and Technology
– sequence: 1
  fullname: Kim, Cheorl-Ho
  organization: Department of Biological Science, SungKyunKwan University
– sequence: 1
  fullname: Oh, Tae-Young
  organization: Dong-A Pharmaceutical Research Institute
– sequence: 1
  fullname: Chung, Jae Myung
  organization: Department of Emergency Medicine, Kyungpook National University Hospital
– sequence: 1
  fullname: Lee, Soyoung
  organization: Department of Pharmacology, School of Medicine, Kyungpook National University
– sequence: 1
  fullname: Kim, Sang-Hyun
  organization: Department of Pharmacology, School of Medicine, Kyungpook National University
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  fullname: Park, Won-Hwan
  organization: Cardiovascular Medical Research Center and Dept. of AM-Pointology & Diagnostics, Dongguk University
– sequence: 1
  fullname: Park, Hyo-Hyun
  organization: Department of Pharmacology, School of Medicine, Kyungpook National University
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CitedBy_id crossref_primary_10_1371_journal_pone_0312670
crossref_primary_10_1016_j_intimp_2011_04_005
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References 7) Kim, S. H., Choi, C. H., Kim, S. Y., Eun, J. S. and Shin, T. Y. (2005) Anti-allergic effects of Artemisia iwayomogi on mast cell-mediated allergy model. Exp. Biol. Med. (Maywood), 230, 82-88.
8) Kim, S. H. and Shin, T. Y. (2005) Amomum xanthiodes inhibits mast cell-mediated allergic reactions through the inhibition of histamine release and inflammatory cytokine production. Exp. Biol. Med. (Maywood), 230, 681-687.
20) Kim, S. H. and Sharma, R. P. (2003) Cytotoxicity of inorganic mercury in murine T and B lymphoma cell lines: involvement of reactive oxygen species, Ca(2+) homeostasis, and cytokine gene expression. Toxicol. In Vitro, 17, 385-395.
21) Yang, E. K. and Kim, I. (2001) Pulse exposure to ethanol augments vascular contractility through stress response. Korean J. Physiol. Pharmacol., 5, 47-53.
12) Plaut, M., Pierce, J. H., Watson, C. J., Hanley-Hyde, J., Nordan, R. P. and Paul, W. E. (1989) Mast cell lines produce lymphokines in response to cross-linkage of Fc epsilon RI or to calcium ionophores. Nature (London), 339, 64-67.
2) Metcalfe, D. D., Kaliner, M. and Donlon, M. A. (1981) The mast cell. Crit. Rev. Immunol., 3, 23-74.
9) Mican, J. A., Arora, N., Burd, P. R. and Metcalfe, D. D. (1992) Passive cutaneous anaphylaxis in mouse skin is associated with local accumulation of interleukin-6 mRNA and immunoreactive interleukin-6 protein. J. Allergy Clin. Immunol., 90, 815-824.
4) Petersen, L. J., Mosbech, H. and Skov, P. S. (1996) Allergen-induced histamine release in intact human skin in vivo assessed by skin microdialysis technique: characterization of factors influencing histamine releasability. J. Allergy Clin. Immunol., 97, 672-679.
14) Oh, T. Y., Lee, J. S., Ahn, B. O., Cho, H., Kim, W. B., Kim, Y. B., Surh, Y. J., Cho, S. W. and Hahm, K. B. (2001) Oxidative damages are critical in pathogenesis of reflux esophagitis: implication of antioxidants in its treatment. Free Radic. Biol. Med., 30, 905-915.
15) Oh, T. Y., Lee, J. S., Ahn, B. O., Cho, H., Kim, W. B., Kim, Y. B., Surh, Y. J., Cho, S. W., Lee, K. M. and Hahm, K. B. (2001) Oxidative stress is more important than acid in the pathogenesis of reflux oesophagitis in rats. Gut, 49, 364-371.
23) Mousli, M., Bronner, C., Bockaert, J., Rouot, B. and Landry, Y. (1990) Interaction of substance P, compound 48/80 and mastoparan with the alpha-subunit C-terminus of G protein. Immunol. Lett., 25, 355-357.
25) Tasaka, K., Mio, M. and Okamoto, M. (1986) Intracellular calcium release induced by histamine releasers and its inhibition by some antiallergic drugs. Ann. Allergy, 56, 464-469.
13) Seo, H. J., Park, K. K., Han, S. S., Chung, W. Y., Son, M. W., Kim, W. B. and Surh, Y. J. (2002) Inhibitory effects of the standardized extract (DA-9601) of Artemisia asiatica Nakai on phorbol ester-induced ornithine decarboxylase activity, papilloma formation, cyclooxygenase-2 expression, inducible nitric oxide synthase expression and nuclear transcription factor kappa B activation in mouse skin. Int. J. Cancer, 100, 456-462.
5) Ennis, M., Pearce, F. L. and Weston, P. M. (1980) Some studies on the release of histamine from mast cells stimulated with polylysine. Br. J. Pharmacol., 70, 329-334.
27) Sillaber, C., Bevec, D., Butterfield, J. H., Heppner, C., Valenta, R., Scheiner, O., Kraft, D., Lechner, K., Bettelheim, P. and Valent, P. (1993) Tumor necrosis factor alpha and interleukin-1 beta mRNA expression in HMC-1 cells: differential regulation of gene product expression by recombinant interleukin-4. Exp. Hematol., 21, 1271-1275.
1) Kemp, S. F. and Lockey, R. F. (2002) Anaphylaxis: a review of causes and mechanisms. J. Allergy Clin. Immunol., 110, 341-348.
10) Bradding, P., Feather, I. H., Wilson, S., Bardin, P. G., Heusser, C. H., Holgate, S. T. and Howarth, P. H. (1993) Immunolocalization of cytokines in the nasal mucosa of normal and perennial rhinitic subjects. The mast cell as a source of IL-4, IL-5, and IL-6 in human allergic mucosal inflammation. J. Immunol., 151, 3853-3865.
16) Lee, J. S., Oh, T. Y., Ahn, B. O., Cho, H., Kim, W. B., Kim, Y. B., Surh, Y. J., Kim, H. J. and Hahm, K. B. (2001) Involvement of oxidative stress in experimentally induced reflux esophagitis and Barrett's esophagus: clue for the chemoprevention of esophageal carcinoma by antioxidants. Mutat. Res., 480-481, 189-200.
18) Kim, S. H. and Shin, T. Y. (2006) Effect of Dracocephalum argunense on Mast-Cell-Mediated Hypersensitivity. Int. Arch. Allergy Immunol., 139, 87-95.
11) Galli, S. J., Gordon, J. R. and Wershil, B. K. (1991) Cytokine production by mast cells and basophils. Curr. Opin. Immunol., 3, 865-872.
26) Walsh, L. J., Trinchieri, G., Waldorf, H. A., Whitaker, D. and Murphy, G. F. (1991) Human dermal mast cells contain and release tumor necrosis factor alpha, which induces endothelial leukocyte adhesion molecule 1. Proc. Natl. Acad. Sci. U.S.A., 88, 4220-4224.
6) Lagunoff, D., Martin, T. W. and Read, G. (1983) Agents that release histamine from mast cells. Annu. Rev. Pharmacol. Toxicol., 23, 331-351.
24) Bueb, J. L., Mousli, M., Bronner, C., Rouot, B. and Landry, Y. (1990) Activation of Gi-like proteins, a receptor-independent effect of kinins in mast cells. Mol. Pharmacol., 38, 816-822.
17) Ryu, B. K., Ahn, B. O., Oh, T. Y., Kim, S. H., Kim, W. B. and Lee, E. B. (1998) Studies on protective effect of DA-9601, Artemisia asiatica extract, on acetaminophen- and CCl4-induced liver damage in rats. Arch. Pharm. Res., 21, 508-513.
3) Church, M. K. and Levi-Schaffer, F. (1997) The human mast cell. J. Allergy Clin. Immunol., 99, 155-160.
19) Shin, T. Y., Kim, S. H., Suk, K., Ha, J. H., Kim, I., Lee, M. G., Jun, C. D., Kim, S. Y., Lim, J. P., Eun, J. S., Shin, H. Y. and Kim, H. M. (2005) Anti-allergic effects of Lycopus lucidus on mast cell-mediated allergy model. Toxicol. Appl. Pharmacol., 209, 255-262.
22) Wershil, B. K., Mekori, Y. A., Murakami, T. and Galli, S. J. (1987) 125I-fibrin deposition in IgE-dependent immediate hypersensitivity reactions in mouse skin. Demonstration of the role of mast cells using genetically mast cell-deficient mice locally reconstituted with cultured mast cells. J. Immunol., 139, 2605-2614.
23
Kemp, S. F. and Lockey, R. F. (1) 2002; 110
Wershil, B. K., Mekori, Y. A., Murakami, T. and Galli, S. J. (22) 1987; 139
Lagunoff, D., Martin, T. W. and Read, G. (6) 1983; 23
RYU B K (17) 1998; 21
Kim, S. H. and Sharma, R. P. (20) 2003; 17
11
(26) 1991; 88
12
Sillaber, C., Bevec, D., Butterfield, J. H., Heppner, C., Valenta, R., Scheiner, O., Kraft, D., Lechner, K., Bettelheim, P. and Valent, P. (27) 1993; 21
Kim, S. H. and Shin, T. Y. (8) 2005; 230
(10) 1993; 151
19
Yang, E. K. and Kim, I. (21) 2001; 5
Kim, S. H. and Shin, T. Y. (18) 2006; 139
Oh, T. Y., Lee, J. S., Ahn, B. O., Cho, H., Kim, W. B., Kim, Y. B., Surh, Y. J., Cho, S. W., Lee, K. M. and Hahm, K. B. (15) 2001; 49
Oh, T. Y., Lee, J. S., Ahn, B. O., Cho, H., Kim, W. B., Kim, Y. B., Surh, Y. J., Cho, S. W. and Hahm, K. B. (14) 2001; 30
3
Lee, J. S., Oh, T. Y., Ahn, B. O., Cho, H., Kim, W. B., Kim, Y. B., Surh, Y. J., Kim, H. J. and Hahm, K. B. (16) 2001; 480
4
Ennis M., Pearce F. L., Weston P. M. (5) 1980; 70
9
Metcalfe, D. D., Kaliner, M. and Donlon, M. A. (2) 1981; 3
Kim, S. H., Choi, C. H., Kim, S. Y., Eun, J. S. and Shin, T. Y. (7) 2005; 230
(24) 1990; 38
Tasaka, K., Mio, M. and Okamoto, M. (25) 1986; 56
Seo, H. J., Park, K. K., Han, S. S., Chung, W. Y., Son, M. W., Kim, W. B. and Surh, Y. J. (13) 2002; 100
References_xml – reference: 18) Kim, S. H. and Shin, T. Y. (2006) Effect of Dracocephalum argunense on Mast-Cell-Mediated Hypersensitivity. Int. Arch. Allergy Immunol., 139, 87-95.
– reference: 11) Galli, S. J., Gordon, J. R. and Wershil, B. K. (1991) Cytokine production by mast cells and basophils. Curr. Opin. Immunol., 3, 865-872.
– reference: 7) Kim, S. H., Choi, C. H., Kim, S. Y., Eun, J. S. and Shin, T. Y. (2005) Anti-allergic effects of Artemisia iwayomogi on mast cell-mediated allergy model. Exp. Biol. Med. (Maywood), 230, 82-88.
– reference: 9) Mican, J. A., Arora, N., Burd, P. R. and Metcalfe, D. D. (1992) Passive cutaneous anaphylaxis in mouse skin is associated with local accumulation of interleukin-6 mRNA and immunoreactive interleukin-6 protein. J. Allergy Clin. Immunol., 90, 815-824.
– reference: 26) Walsh, L. J., Trinchieri, G., Waldorf, H. A., Whitaker, D. and Murphy, G. F. (1991) Human dermal mast cells contain and release tumor necrosis factor alpha, which induces endothelial leukocyte adhesion molecule 1. Proc. Natl. Acad. Sci. U.S.A., 88, 4220-4224.
– reference: 10) Bradding, P., Feather, I. H., Wilson, S., Bardin, P. G., Heusser, C. H., Holgate, S. T. and Howarth, P. H. (1993) Immunolocalization of cytokines in the nasal mucosa of normal and perennial rhinitic subjects. The mast cell as a source of IL-4, IL-5, and IL-6 in human allergic mucosal inflammation. J. Immunol., 151, 3853-3865.
– reference: 17) Ryu, B. K., Ahn, B. O., Oh, T. Y., Kim, S. H., Kim, W. B. and Lee, E. B. (1998) Studies on protective effect of DA-9601, Artemisia asiatica extract, on acetaminophen- and CCl4-induced liver damage in rats. Arch. Pharm. Res., 21, 508-513.
– reference: 3) Church, M. K. and Levi-Schaffer, F. (1997) The human mast cell. J. Allergy Clin. Immunol., 99, 155-160.
– reference: 13) Seo, H. J., Park, K. K., Han, S. S., Chung, W. Y., Son, M. W., Kim, W. B. and Surh, Y. J. (2002) Inhibitory effects of the standardized extract (DA-9601) of Artemisia asiatica Nakai on phorbol ester-induced ornithine decarboxylase activity, papilloma formation, cyclooxygenase-2 expression, inducible nitric oxide synthase expression and nuclear transcription factor kappa B activation in mouse skin. Int. J. Cancer, 100, 456-462.
– reference: 2) Metcalfe, D. D., Kaliner, M. and Donlon, M. A. (1981) The mast cell. Crit. Rev. Immunol., 3, 23-74.
– reference: 6) Lagunoff, D., Martin, T. W. and Read, G. (1983) Agents that release histamine from mast cells. Annu. Rev. Pharmacol. Toxicol., 23, 331-351.
– reference: 22) Wershil, B. K., Mekori, Y. A., Murakami, T. and Galli, S. J. (1987) 125I-fibrin deposition in IgE-dependent immediate hypersensitivity reactions in mouse skin. Demonstration of the role of mast cells using genetically mast cell-deficient mice locally reconstituted with cultured mast cells. J. Immunol., 139, 2605-2614.
– reference: 14) Oh, T. Y., Lee, J. S., Ahn, B. O., Cho, H., Kim, W. B., Kim, Y. B., Surh, Y. J., Cho, S. W. and Hahm, K. B. (2001) Oxidative damages are critical in pathogenesis of reflux esophagitis: implication of antioxidants in its treatment. Free Radic. Biol. Med., 30, 905-915.
– reference: 20) Kim, S. H. and Sharma, R. P. (2003) Cytotoxicity of inorganic mercury in murine T and B lymphoma cell lines: involvement of reactive oxygen species, Ca(2+) homeostasis, and cytokine gene expression. Toxicol. In Vitro, 17, 385-395.
– reference: 23) Mousli, M., Bronner, C., Bockaert, J., Rouot, B. and Landry, Y. (1990) Interaction of substance P, compound 48/80 and mastoparan with the alpha-subunit C-terminus of G protein. Immunol. Lett., 25, 355-357.
– reference: 24) Bueb, J. L., Mousli, M., Bronner, C., Rouot, B. and Landry, Y. (1990) Activation of Gi-like proteins, a receptor-independent effect of kinins in mast cells. Mol. Pharmacol., 38, 816-822.
– reference: 4) Petersen, L. J., Mosbech, H. and Skov, P. S. (1996) Allergen-induced histamine release in intact human skin in vivo assessed by skin microdialysis technique: characterization of factors influencing histamine releasability. J. Allergy Clin. Immunol., 97, 672-679.
– reference: 1) Kemp, S. F. and Lockey, R. F. (2002) Anaphylaxis: a review of causes and mechanisms. J. Allergy Clin. Immunol., 110, 341-348.
– reference: 21) Yang, E. K. and Kim, I. (2001) Pulse exposure to ethanol augments vascular contractility through stress response. Korean J. Physiol. Pharmacol., 5, 47-53.
– reference: 5) Ennis, M., Pearce, F. L. and Weston, P. M. (1980) Some studies on the release of histamine from mast cells stimulated with polylysine. Br. J. Pharmacol., 70, 329-334.
– reference: 12) Plaut, M., Pierce, J. H., Watson, C. J., Hanley-Hyde, J., Nordan, R. P. and Paul, W. E. (1989) Mast cell lines produce lymphokines in response to cross-linkage of Fc epsilon RI or to calcium ionophores. Nature (London), 339, 64-67.
– reference: 15) Oh, T. Y., Lee, J. S., Ahn, B. O., Cho, H., Kim, W. B., Kim, Y. B., Surh, Y. J., Cho, S. W., Lee, K. M. and Hahm, K. B. (2001) Oxidative stress is more important than acid in the pathogenesis of reflux oesophagitis in rats. Gut, 49, 364-371.
– reference: 25) Tasaka, K., Mio, M. and Okamoto, M. (1986) Intracellular calcium release induced by histamine releasers and its inhibition by some antiallergic drugs. Ann. Allergy, 56, 464-469.
– reference: 19) Shin, T. Y., Kim, S. H., Suk, K., Ha, J. H., Kim, I., Lee, M. G., Jun, C. D., Kim, S. Y., Lim, J. P., Eun, J. S., Shin, H. Y. and Kim, H. M. (2005) Anti-allergic effects of Lycopus lucidus on mast cell-mediated allergy model. Toxicol. Appl. Pharmacol., 209, 255-262.
– reference: 8) Kim, S. H. and Shin, T. Y. (2005) Amomum xanthiodes inhibits mast cell-mediated allergic reactions through the inhibition of histamine release and inflammatory cytokine production. Exp. Biol. Med. (Maywood), 230, 681-687.
– reference: 27) Sillaber, C., Bevec, D., Butterfield, J. H., Heppner, C., Valenta, R., Scheiner, O., Kraft, D., Lechner, K., Bettelheim, P. and Valent, P. (1993) Tumor necrosis factor alpha and interleukin-1 beta mRNA expression in HMC-1 cells: differential regulation of gene product expression by recombinant interleukin-4. Exp. Hematol., 21, 1271-1275.
– reference: 16) Lee, J. S., Oh, T. Y., Ahn, B. O., Cho, H., Kim, W. B., Kim, Y. B., Surh, Y. J., Kim, H. J. and Hahm, K. B. (2001) Involvement of oxidative stress in experimentally induced reflux esophagitis and Barrett's esophagus: clue for the chemoprevention of esophageal carcinoma by antioxidants. Mutat. Res., 480-481, 189-200.
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Snippet The immediate-type allergic reaction is involved in many allergic diseases such as asthma, allergic rhinitis, and sinusitis. The discovery of drugs for the...
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SubjectTerms DA-9601
immediate-type allergic reaction
mast cells
tumor necrosis factor-α
Title DA-9601 Decreases Immediate-Type Allergic Reaction and Tumor Necrosis Factor-α Production
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