| Literature DB >> 34529189 |
Ulises G Castillo1, Ayato Komatsu2, Morena L Martínez1, Jenny Menjívar3, Marvin J Núñez1, Yoshinori Uekusa2, Yuji Narukawa2, Fumiyuki Kiuchi4, Junko Nakajima-Shimada5.
Abstract
Chagas disease is caused by the protozoan parasite Trypanosoma cruzi, and in Central America, it is considered one of the four most infectious diseases. This study aimed to screen the anti-trypanosomal activity of plant species from Salvadoran flora. Plants were selected through literature search for plants ethnobotanically used for antiparasitic and Chagas disease symptomatology, and reported in Museo de Historia Natural de El Salvador (MUHNES) database. T. cruzi was incubated for 72 h with 2 different concentrations of methanolic extracts of 38 species, among which four species, Piper jacquemontianum, Piper lacunosum, Trichilia havanensis, and Peperomia pseudopereskiifolia, showed the activity (≤ 52.0% viability) at 100 µg/mL. Separation of the methanolic extract of aerial parts from Piper jacquemontianum afforded a new flavanone (4) and four known compounds, 2,2-dimethyl-6-carboxymethoxychroman-4-one (1), 2,2-dimethyl-6-carboxychroman-4-one (2), cardamomin (3), and pinocembrin (5), among which cardamomin exhibited the highest anti-trypanosomal activity (IC50 = 66 µM). Detailed analyses of the spectral data revealed that the new compound 4, named as jaqueflavanone A, was a derivative of pinocembrin having a prenylated benzoate moiety at the 8-position of the A ring.Entities:
Keywords: Chagas disease; Flavonoids; Piper jacquemontianum; Salvadoran flora; Trypanosoma cruzi
Mesh:
Substances:
Year: 2021 PMID: 34529189 PMCID: PMC8732892 DOI: 10.1007/s11418-021-01562-6
Source DB: PubMed Journal: J Nat Med ISSN: 1340-3443 Impact factor: 2.343
List of Salvadoran plants collected to determine anti-trypanosomal activity
| No. | Family | Scientific name1 | Vernacular name | Part2 | Voucher number | Collection date/ place3 |
|---|---|---|---|---|---|---|
| 1 | Acanthaceae | “Hierba del susto” | A | J. Menjívar et al. 4264 | Jul 2018/1 | |
| 2 | Acanthaceae | “Pecocita” | A | J. Menjívar et al. 4690 | May 2018/2 | |
| 3 | Aristolochiaceae | “Guaco” | A | J. Menjívar et al. 5099 | Jun 2018/3 | |
| 4 | Asteraceae | “Arroz con leche” | A | J. Menjívar et al. 4260 | Aug 2018/2 | |
| 5 | Boraginaceae | Unknown | R and L | J. Menjívar et al. 4633 | Aug 2018/4 | |
| 6 | Ebenaceae | Unknown | SB | J. Menjívar et al. 4262 | Jul 2018/1 | |
| 7 | Euphorbiaceae | “Gusanito” | A | J. Menjívar et al. 4622 | Aug 2018/2 | |
| 8 | Euphorbiaceae | “Gusanito” | A | J. Menjívar & M. Núñez 4263 | May 2018/5 | |
| 9 | Fabaceae | "Pito extranjero" | L and SB | J. Menjívar et al. 4287 | Jul 2018/5 | |
| 10 | Fabaceae | “Quebracho” | SB | J. Menjívar et al. 4659 | Sept 2018/6 | |
| 11 | Fabaceae | “Cicahuite” | SB | J. Menjívar et al. 4660 | Sept 2018/6 | |
| 12 | Fabaceae | “Zarza” | A | J. Menjívar et al. 4597 | Jul 2018/4 | |
| 13 | Melastomataceae | “Cirin” | L | J. Menjívar et al. 4261 | Aug 2018/2 | |
| 14 | Melastomataceae | “Cirin” | L | J. Menjívar et al. 4697 | Jul 2018/4 | |
| 15 | Melastomataceae | “Cirin” | L | J. Menjívar et al. 4614 | Aug 2018/2 | |
| 16 | Meliaceae | “Barrehornos” | SB | J. Menjívar et al. 4977 | Jul 2018/1 | |
| 17 | Meliaceae | “Barrehornos” | SB | J. Menjívar et al. 4221 | Aug 2018/2 | |
| 18 | Meliaceae | “Ceibillo” | SB | J. Menjívar et al. 4665 | Sept 2018/6 | |
| 19 | Meliaceae | “Barrehornos” | SB | J. Menjívar et al. 4227 | Aug 2018/2 | |
| 20 | Moraceae | “Hierba del sapo” | A | J. Menjívar et al. 4252 | Jul 2018/1 | |
| 21 | Lauraceae | “Aguamico” | SB | J. Menjívar et al. 4288 | Oct 2018/7 | |
| 22 | Lauraceae | “Chucte” | L and SB | J. Menjívar et al. 4205 | Nov 2018/5 | |
| 23 | Lauraceae | “Guacamico” | SB | J. Menjívar et al. 4649 | Sept 2018/2 | |
| 24 | Piperaceae | Unknown | A | J. Menjívar et al. 4599 | Jul 2018/4 | |
| 25 | Piperaceae | Unknown | A | J. Menjívar et al. 4658 | Sept 2018/2 | |
| 26 | Piperaceae | Unknown | A | J. Menjívar et al. 4654 | Sept 2018/2 | |
| 27 | Piperaceae | Unknown | A | J. Menjívar et al. 4653 | Sept 2018/2 | |
| 28 | Piperaceae | Unknown | A | J. Menjívar et al. 4621 | Aug 2018/2 | |
| 29 | Piperaceae | Unknown | A | J. Menjívar et al. 4247 | Jun 2018/3 | |
| 30 | Piperaceae | “Cordoncillo” | A | J. Menjívar et al. 4648 | Sept 2018/2 | |
| 31 | Piperaceae | “Cordoncillo” | A | J. Menjívar et al. 4598 | Jul 2018/4 | |
| 32 | Piperaceae | Unknown | A | J. Menjívar et al. 4655 | Sept 2018/2 | |
| 33 | Rutaceae | “Cedro espino” | L and SB | J. Menjívar et al. 4620 | Jul 2018/2 | |
| 34 | Sapindaceae | Unknown | L | J. Menjívar et al. 4660 | Sept 2018/2 | |
| 35 | Solanaceae | Unknown | A | J. Menjívar et al. 4615 | Aug 2018/2 | |
| 36 | Solanaceae | “Cuerno de vaca” | A | J. Menjívar et al. 4624 | Aug 2018/4 | |
| 37 | Solanaceae | “Huevos de gato” | A | J. Menjívar et al. 4616 | Aug 2018/2 | |
| 38 | Solanaceae | Unknown | A | J. Menjívar et al. 4618 | Aug 2018/2 |
1Scientific names are given following international plant name index (IPNI)
2A arial parts; L leaves; SB stem bark; R roots
3Collection place number: 1: PNA Bosque de Cinquera; 2: NP Montecristo; 3: NP El Imposible; 4: NP Complejo Los Volcanes; 5: Cantón El Jocotón; 6: Potonico; 7: Chinchontepec Volcano
PNA protected natural area; NP national park
Fig. 1Anti-trypanosomal activity of Salvadoran flora
Fig. 2Structures of isolated compounds from P. jaquemontianum
NMR data of compound 4 in CDCl3
| Position | 13C | 1H | HMBC |
|---|---|---|---|
| 2 | 79.9 | g: 5.45, 1H, br d (13.2) | d, k1 |
| 3 | 43.4 | c: 2.84, 1H, dd (2.0, 17.5) d: 3.09, 1H, dd (13.2, 17.5) | |
| 4 | 196.2 | c, d | |
| 5 | 162.5 | i, n | |
| 6 | 97.7 | i: 6.07, 1H, br s | n |
| 7 | 162.7 | f, i | |
| 8 | 108.8 | a, b, f, i | |
| 9 | 159.6 | f | |
| 10 | 103.5 | i, n | |
| 11 | 138.0 | d, g, k2 | |
| 12 | 126.1 | k1: 7.39, 1H, br d (7.3) | g, k2 |
| 13 | 128.9 | k2: 7.44, 1H, overlapped | k1 |
| 14 | 126.0 | k2: 7.44, 1H, overlapped | k1 |
| 15 | 128.9 | k2: 7.44, 1H, overlapped | k1 |
| 16 | 126.1 | k1: 7.39, 1H, br d (7.3) | g, k2 |
| 1’ | 167.5 | e, l, m | |
| 2’ | 128.5 | f, j | |
| 3’ | 131.3 | m: 8.01, 1H, br s | f, l |
| 4’ | 122.1 | j, m | |
| 5’ | 158.2 | f, j, l, m | |
| 6’ | 116.0 | j: 6.83, 1H, d (8.3) | |
| 7’ | 129.7 | l: 7.81, 1H, br d (8.3) | m, f |
| 8’ | 33.6 | f: 5.39, 1H, d (8.2) | j, h, m |
| 9’ | 122.9 | h: 5.98, 1H, br d (8.2) | a, b, f |
| 10’ | 136.1 | a, b, f | |
| 11’ | 18.2 | a: 1.68, 3H, s | b, h |
| 12’ | 25.9 | b: 1.79, 3H, s | a, h |
| 13’ | 52.0 | e: 3.85, 3H, s | |
| 5-OH | – | n: 12.2, 1H, s |
Fig. 3Selected key HMBC correlations of compound 4