Abstract
Bioguided fractionation of extract from the leaves of Aristolochia cymbifera led to the isolation of the furofuran lignans fargesin, epieudesmin, and sesamin;
the dibenzylbutyrolactone lignans hinokinin and kusunokinin; and an ent-labdane diterpene named copalic acid. Our data demonstrated that copalic acid and
kusunokinin were the most active compounds against trypomastigotes of Trypanosoma cruzi. Additionally, copalic acid demonstrated the highest parasite selectivity as a result
of low toxicity to mammalian cells, despite a considerable hemolytic activity at higher
concentrations. Among the isolated compounds, kusunokinin could be considered the
most promising candidate, as it displayed significant activity against intracellular
amastigotes (IC50 = 17 µM) and trypomastigotes (IC50 = 51 µM) without hemolytic activity. Fargesin, hinokinin, epieudesmin, and sesamin
were also effective against trypomastigotes, but these compounds were highly toxic
to mammalian cells and no parasite selectivity could be identified. The need for novel
drugs for American trypanosomiasis is evident, and these secondary metabolites from
A. cymbifera represent a useful tool for drug design.
Key words
Aristolochia cymbifera
- Aristolochiaceae - copalic acid - kusunokinin - trypanosomiasis - leishmaniasis
References
- 1
Tempone A G, Sartorelli P, Fernandes F, Mady C.
From natural toxins to antitrypanosomal drugs: an overview of new drug prototypes
for American trypanosomiasis.
Cardiovasc Hematol Agents Med Chem.
2007;
5
222-235
- 2
Leitão G G, Kaplan M A C, Galeffi C.
Epi-popufolic acid from Aristolochia cymbifera.
Phytochemistry.
1992;
31
3277-3279
- 3
Tempone A G, Sartorelli P, Teixeira D, Prado F O, Calixto I A, Lorenzi H, Melhem M S.
Brazilian flora extracts as source of novel antileishmanial and antifungal compounds.
Mem Inst Oswaldo Cruz.
2008;
103
443-449
- 4
Bastard J, Duc D, Fetizon M, Francis M J, Grant P K, Weavers R T.
CMR spectroscopy of labdanic diterpenes and related substances.
J Nat Prod.
1984;
47
592-599
- 5
Lopes L M X, Bolzani V S, Trevisan L M V.
Clerodane diterpene from Aristolochia species.
Phytochemistry.
1987;
26
2781-2784
- 6
Lopes L M X, Yoshida M, Gottlieb O R.
Further lignoids from Virola sebifera.
Phytochemistry.
1984;
23
2647-2652
- 7
Kato M J, Yoshida M, Gottlieb O R.
Lignoids and arylalkanones from fruits of Virola elongata.
Phytochemistry.
1990;
29
1799-1810
- 8
Mendoza D T, Ureña-Gonzalez L D, Ortega-Barria E, Capson T L, Rios L C.
Five new cassane diterpenes from Myrospermum frutescens with activity against Trypanosoma cruzi.
J Nat Prod.
2003;
66
928-932
- 9
Batista R, Chiari E, Oliveira A B.
Trypanosomicidal kaurane diterpenes from Wedelia paludosa.
Planta Med.
1999;
65
283-284
- 10
Huang R L, Huang Y L, Ou J C, Chen C C, Hsu F L, Chang C.
Screening of 25 compounds isolated from Phyllanthus species for anti-human hepatitis B virus in vitro.
Phytother Res.
2003;
17
449-453
- 11
Caldas I S, Talvani A, Caldas S, Carneiro C M, de Lana M, da Matta Guedes P M, Bahia M T.
Benznidazole therapy during acute phase of Chagas disease reduces parasite load but
does not prevent chronic cardiac lesions.
Parasitol Res.
2008;
103
413-421
- 12
Sartorelli P, Andrade S P, Melhem M S, Prado F O, Tempone A G.
Isolation of antileishmanial sterol from the fruits of Cassia fistula using bioguided fractionation.
Phytother Res.
2007;
21
644-647
- 13
Lane J E, Ribeiro-Rodrigues R, Suarez C C, Bogitsh B J, Jones M M, Singh P K, Carter C E.
In vitro trypanocidal activity of tetraethylthiuram disulfide and sodium diethylamine-N-carbodithioate
on Trypanosoma cruzi.
Am Soc Trop Med Hyg.
1996;
55
263-266
- 14
Tada H, Shiho O, Kuroshima K.
An improved colorimetric assay for interleukin 2.
J Immunol Methods.
1986;
93
157-165
- 15
Silva C F, Batista M M, Mota R A, De Souza E M, Stephens C E, Boykin D W, Soeiro M N.
Activity of “reversed” diamidines against Trypanosoma cruzi in vitro.
Biochem Pharmacol.
2007;
73
1939-1946
- 16
Moreira D R, Lima Leite A C, Pinheiro Ferreira P M, da Costa P M, Costa Lotufo L V,
de Moraes M O, Brondani D J, Pessoa Cdo O.
Synthesis and antitumour evaluation of peptidyl-like derivatives containing the 1,3-benzodioxole
system.
Eur J Med Chem.
2007;
42
351-357
Patrícia Sartorelli
Departamento de Ciências Exatas e da Terra
Universidade Federal de São Paulo
R. Prof. Artur Ridel
275 CEP
09972-270 Diadema/São Paulo
Brazil
Telefon: + 55 11 40 59 36 18
Fax: + 55 11 40 43 64 28
eMail: psartorelli@unifesp.br