Subscribe to RSS
DOI: 10.1055/s-2005-871234
© Georg Thieme Verlag KG Stuttgart · New York
An Anti-Inflammatory ent-Kaurane from the Stems of Annona squamosa that Inhibits Various Human Neutrophil Functions
Publication History
Received: January 1, 2005
Accepted: April 1, 2005
Publication Date:
29 July 2005 (online)
Abstract
We have previously shown that 11 ent-kauranes isolated from the stems of Annona squamosa exhibited immunomodulating effects in leukocytes. In this study, a cellular model using isolated human neutrophils, which are important in the pathogenesis of rheumatoid arthritis, ischemia-reperfusion injury, chronic obstructive pulmonary disease, asthma and other inflammatory diseases, was established in order to elucidate the anti-inflammatory functions of 16β,17-dihydroxy-ent-kauran-19-oic acid (1). Reactive oxygen species (ROS) and granule proteases produced by neutrophils contribute to the pathogenesis of inflammatory diseases. Compound 1 inhibited the generation of superoxide anion, the formation of ROS, and the release of elastase in formyl-L-methionyl-L-leucyl-L-phenylalanine (FMLP)-activated human neutrophils in a concentration-dependent manner with IC50 values of 3.95 ± 0.68, 12.20 ± 2.16, and 12.52 ± 2.26 μM, respectively. The anti-inflammatory actions were not attributable to cytotoxicity because incubation of the neutrophils with 1 did not result in lactate dehydrogenase release. Compound 1 did not display antioxidant or superoxide anion-scavenging activity. Furthermore, neither subcellular NADPH oxidase activity nor cAMP-dependent pathways were altered by 1. Compound 1 significantly inhibited rapid calcium release from internal calcium stores induced by FMLP but not by thapsigargin. In summary, the presented results indicate that the inhibitory effects of 1 on respiratory burst and degranulation of human neutrophils are through the inhibition of cytosolic calcium mobilization, but not via the cAMP-dependent pathways.
Abbreviations
AC:adenylate cyclase
cAMP:cyclic adenosine 3′,5′-monophosphate
DPPH:1,1-diphenyl-2-picrylhydrazyl
FMLP:formyl-L-methionyl-L-leucyl-L-phenylalanine
O2 ·-:superoxide anion
PDE:phosphodiesterase
PKA:protein kinase A
LDH:lactate dehydrogenase
SOD:superoxide dismutase
WST-1:2-(4-iodophenyl)-3-(4-nitrophenyl)-5-(2,4-disulfophenyl)-2H-tetrazolium, monosodium salt
Key words
Annona squamosa - Annonaceae - elastase - ent-kaurane - neutrophil - superoxide anion
References
- 1 Kan W S. Pharmaceutical Botany. National Research Institute of Chinese Medicine Taiwan; 1979: p 246
- 2 Fujita E, Node M. Diterpenoids of Rabdosia species. Fortschr Chem Org Naturst. 1984; 46 78-157
- 3 Wu Y C, Hung Y C, Chang F R, Cosentino M, Wang H K, Lee K H. Identification of ent-16β,17-dihydroxykauran-19-oic acid as an anti-HIV principle and isolation of the new diterpenoids annosquamosins A and B from Annona squamosa . J Nat Prod. 1996; 59 635-7
- 4 Somova L I, Shode F O, Moodley K, Govender Y. Cardiovascular and diuretic activity of kaurene derivatives of Xylopia aethiopica and Alepidea amatymbica . J Ethnopharmcol. 2001; 77 165-74
- 5 Barton D, Nakanishi K, Meth-Cohn O. Comprehensive Natural Products Chemistry. Vol. 2 Oxford; Elsevier Science 1999: pp 231-4
- 6 Chang F R, Yang P Y, Lin J Y, Lee K H, Wu Y C. Bioactive kaurane diterpenoids from Annona glabra . J Nat Prod. 1998; 61 437-9
- 7 Chen C Y, Chang F R, Cho C P, Wu Y C. ent-Kaurane diterpenoids from Annona glabra . J Nat Prod. 2000; 63 1000-3
- 8 Yang Y L, Chang F R, Wu C C, Wang W Y, Wu Y C. New ent-kaurane diterpenoids with anti-platelet aggregation activity from Annona squamosa . J Nat Prod. 2002; 65 1462-7
- 9 Chen C Y, Chang F R, Wu Y C. The constituents from the stems of Annona cherimola . J Chin Chem Soc. 1997; 44 313-9
- 10 Chen C Y, Wu D Y, Chang F R, Wu Y C. Lignans and kauranes from the stems of Annona cherimola . J Chin Chem Soc. 1998; 45 629-34
- 11 Yang Y L, Chang F R, Hwang T L, Chang W T, Wu Y C. Inhibitory effects of ent-kauranes from the stems of Annona squamosa on superoxide anion generation by human neutrophils. Planta Med. 2004; 70 256-8
- 12 Witko-Sarsat V, Rieu P, Descamps-Latscha B, Lesavre P, Halbwachs-Mecarelli L. Neutrophils: molecules, functions and pathophysiological aspects. Lab Investig. 2000; 80 617-53
- 13 Ennis M. Neutrophils in asthma pathophysiology. Curr Allergy Asthma Rep. 2003; 3 159-65
- 14 Borregaard N. The human neutrophil. Function and dysfunction. Eur J Haematol. 1998; 41 401-13
- 15 Roos D, van Bruggen R, Meischl C. Oxidative killing of microbes by neutrophils. Microbes Infect. 2003; 5 1307-15
- 16 Boyum A. Isolation of mononuclear cells and granulocytes from human blood. Isolation of mononuclear cells by one centrifugation, and of granulocytes by combining centrifugation and sedimentation at 1 g. Scand J Clin Lab Invest. 1968; 97 77-89
- 17 Hwang T L, Hung H W, Kao S H, Teng C M, Wu C C, Cheng S J. Soluble guanylyl cyclase activator YC-1 inhibits human neutrophil functions through a cGMP-independent but cAMP-dependent pathway. Mol Pharmacol. 2003; 64 1419-27
- 18 Cross A R, Parkinson J F, Jones O T. The superoxide-generating oxidase of leucocytes. NADPH-dependent reduction of flavin and cytochrome b in solubilized preparations. Biochem J. 1984; 223 337-44
- 19 Dahlgren C, Karlsson A. Respiratory burst in human neutrophils. J Immunol Methods. 1999; 232 3-14
- 20 Sklar L A, McNeil V M, Jesaitis A J, Painter R G, Cochrane C G. A continuous, spectroscopic analysis of the kinetics of elastase secretion by neutrophils. The dependence of secretion upon receptor occupancy. J Biol Chem. 1982; 257 5471-5
- 21 Dahlgren C, Karlsson A. Respiratory burst in human neutrophils. J Immunol Methods. 1999; 232 3-14
- 22 Faurschou M, Borregaard N. Neutrophil granules and secretory vesicles in inflammation. Microbes Infect. 2003; 5 1317-27
- 23 Berridge M J. Inositol trisphosphate and calcium signalling. Nature. 1993; 361 315-25
- 24 Castrillo A, de Las Heras B, Hortelano S, Rodriguez B, Villar A, Bosca L. Inhibition of the nuclear factor kappa B (NF-kappa B) pathway by tetracyclic kaurene diterpenes in macrophages. Specific effects on NF-kappa B-inducing kinase activity and on the coordinate activation of ERK and p38 MAPK. J Biol Chem. 2001; 276 15 854-60
- 25 Wong K L, Yang H Y, Chan P, Cheng T H, Liu J C, Hsu F L, Liu I M, Cheng Y W, Cheng J T. Isosteviol as a potassium channel opener to lower intracellular calcium concentrations in cultured aortic smooth muscle cells. Planta Med. 2004; 70 108-12
Dr. Tsong-Long Hwang
Graduate Institute of Natural Products
College of Medicine
Chang Gung University
259 Wen-Hwa 1st Road
Kweishan 333
Taoyuan
Taiwan, R.O.C.
Phone: +886-3-211-8506
Fax: +886-3-211-8506
Email: htl@mail.cgu.edu.tw