Javascript must be enabled to continue!
Antiplasmodial and Antileishmanial Activities of a New Limonoid and Other Constituents from the Stem Bark of Khaya senegalensis
View through CrossRef
Plasmodium falciparum and Leishmania sp. resistance to antiparasitic drugs has become a major concern in malaria and leishmaniasis control. These diseases are public health problems with significant socioeconomic impacts, and mostly affect disadvantaged populations living in remote tropical areas. This challenge emphasizes the need to search for new chemical scaffolds that preferably possess novel modes of action to contribute to antimalarial and antileishmanial research programs. This study aimed to investigate the antimalarial and antileishmanial properties of a methanol extract (KS-MeOH) of the stem bark of the Cameroonian medicinal plant Khaya senegalensis and its isolated compounds. The purification of KS-MeOH led to the isolation of a new ordered limonoid derivative, 21β-hydroxybourjotinolone A (1a), together with 15 known compounds (1bc–14) using a repeated column chromatography. Compound 1a was obtained in an epimeric mixture of 21α-melianodiol (1b) and 21β-melianodiol (1c). Structural characterization of the isolated compounds was achieved with HRMS, and 1D- and 2D-NMR analyses. The extracts and compounds were screened using pre-established in vitro methods against synchronized ring stage cultures of the multidrug-resistant Dd2 and chloroquine-sensitive/sulfadoxine-resistant 3D7 strains of Plasmodium falciparum and the promastigote form of Leishmania donovani (1S(MHOM/SD/62/1S). In addition, the samples were tested for cytotoxicity against RAW 264.7 macrophages. Positive controls consisted of artemisinin and chloroquine for P. falciparum, amphotericin B for L. donovani, and podophyllotoxin for cytotoxicity against RAW 264.7 cells. The extract and fractions exhibited moderate to potent antileishmanial activity with 50% inhibitory concentrations (IC50) ranging from 5.99 ± 0.77 to 2.68 ± 0.42 μg/mL, while compounds displayed IC50 values ranging from 81.73 ± 0.12 to 6.43 ± 0.06 μg/mL. They were weakly active against the chloroquine-sensitive/sulfadoxine-resistant Pf3D7 strain but highly potent toward the multidrug-resistant PfDd2 (extracts, IC50 2.50 ± 0.12 to 4.78 ± 0.36 μg/mL; compounds IC50 2.93 ± 0.02 to 50.97 ± 0.37 μg/mL) with selectivity indices greater than 10 (SIDd2 > 10) for the extract and fractions and most of the derived compounds. Of note, the limonoid mixture [21β-hydroxylbourjotinolone A (1a) + 21α-melianodiol (1b) + 21β-melianodiol (1c)] exhibited moderate activity against P. falciparum and L. donovani. This novel antiplasmodial and antileishmanial chemical scaffold qualifies as a promising starting point for further medicinal chemistry-driven development of a dually active agent against two major infectious diseases affecting humans in Africa.
MDPI AG
Title: Antiplasmodial and Antileishmanial Activities of a New Limonoid and Other Constituents from the Stem Bark of Khaya senegalensis
Description:
Plasmodium falciparum and Leishmania sp.
resistance to antiparasitic drugs has become a major concern in malaria and leishmaniasis control.
These diseases are public health problems with significant socioeconomic impacts, and mostly affect disadvantaged populations living in remote tropical areas.
This challenge emphasizes the need to search for new chemical scaffolds that preferably possess novel modes of action to contribute to antimalarial and antileishmanial research programs.
This study aimed to investigate the antimalarial and antileishmanial properties of a methanol extract (KS-MeOH) of the stem bark of the Cameroonian medicinal plant Khaya senegalensis and its isolated compounds.
The purification of KS-MeOH led to the isolation of a new ordered limonoid derivative, 21β-hydroxybourjotinolone A (1a), together with 15 known compounds (1bc–14) using a repeated column chromatography.
Compound 1a was obtained in an epimeric mixture of 21α-melianodiol (1b) and 21β-melianodiol (1c).
Structural characterization of the isolated compounds was achieved with HRMS, and 1D- and 2D-NMR analyses.
The extracts and compounds were screened using pre-established in vitro methods against synchronized ring stage cultures of the multidrug-resistant Dd2 and chloroquine-sensitive/sulfadoxine-resistant 3D7 strains of Plasmodium falciparum and the promastigote form of Leishmania donovani (1S(MHOM/SD/62/1S).
In addition, the samples were tested for cytotoxicity against RAW 264.
7 macrophages.
Positive controls consisted of artemisinin and chloroquine for P.
falciparum, amphotericin B for L.
donovani, and podophyllotoxin for cytotoxicity against RAW 264.
7 cells.
The extract and fractions exhibited moderate to potent antileishmanial activity with 50% inhibitory concentrations (IC50) ranging from 5.
99 ± 0.
77 to 2.
68 ± 0.
42 μg/mL, while compounds displayed IC50 values ranging from 81.
73 ± 0.
12 to 6.
43 ± 0.
06 μg/mL.
They were weakly active against the chloroquine-sensitive/sulfadoxine-resistant Pf3D7 strain but highly potent toward the multidrug-resistant PfDd2 (extracts, IC50 2.
50 ± 0.
12 to 4.
78 ± 0.
36 μg/mL; compounds IC50 2.
93 ± 0.
02 to 50.
97 ± 0.
37 μg/mL) with selectivity indices greater than 10 (SIDd2 > 10) for the extract and fractions and most of the derived compounds.
Of note, the limonoid mixture [21β-hydroxylbourjotinolone A (1a) + 21α-melianodiol (1b) + 21β-melianodiol (1c)] exhibited moderate activity against P.
falciparum and L.
donovani.
This novel antiplasmodial and antileishmanial chemical scaffold qualifies as a promising starting point for further medicinal chemistry-driven development of a dually active agent against two major infectious diseases affecting humans in Africa.
Related Results
Évaluation de l’effet cicatrisant de la gomme de Saba senegalensis chez Rattus norvegicus
Évaluation de l’effet cicatrisant de la gomme de Saba senegalensis chez Rattus norvegicus
La peau est le principal organe de revêtement extérieur du corps de l’Homme et des animaux. Elle est souvent confrontée à des brûlures dont la prise en charge est coûteuse et laiss...
Stem cells
Stem cells
What is a stem cell? The term is a combination of ‘cell’ and ‘stem’. A cell is a major category of living thing, while a stem is a site of growth and support for something else. In...
ANTIOXIDANT ACTIVITY OF PLANT PARTS EXTRACTS FROM STERCULIA QUADRIFIDA R. BR.
ANTIOXIDANT ACTIVITY OF PLANT PARTS EXTRACTS FROM STERCULIA QUADRIFIDA R. BR.
Objective: Sterculia quadrifida R. Br. of Sterculiaceae family is locally known as “Faloak” in East Nusa Tenggara Province, Indonesia. S. quadrifida is used in folk medicine to tre...
Antimicrobial and Antiplasmodial Activities of Endophytic Fungi Associated with Psidium guajava
Antimicrobial and Antiplasmodial Activities of Endophytic Fungi Associated with Psidium guajava
Infections due to antimicrobial-resistant microorganisms have become widespread in recent years. Thus, searching for novel antimicrobial agents to combat such pathogens has become ...
Habitat‐specific effects of bark on wood decomposition: Influences of fragmentation, nitrogen concentration and microbial community composition
Habitat‐specific effects of bark on wood decomposition: Influences of fragmentation, nitrogen concentration and microbial community composition
Abstract
Identifying the drivers of decomposition is critical for understanding carbon cycling dynamics in forest ecosystems. Woody biomass is an important pool of carbon, compos...
The bark side of the water cycle
The bark side of the water cycle
Woody plants are some of the tallest, largest, and longest-lived lifeforms on Earth. Their raw materials have literally framed and supported past human development, continues to do...
Antioxidant properties of African mahogany (Khaya senegalensis (Desr.) A. Juss.) seed oil
Antioxidant properties of African mahogany (Khaya senegalensis (Desr.) A. Juss.) seed oil
This study investigated the phytochemical constituents and antioxidant properties of Khaya senegalensis seed oil. Using standard analytical methods, the presence of saponins, stero...
Desempenho silvicultural de Khaya senegalensis sob diferentes adubações no Cerrado maranhense
Desempenho silvicultural de Khaya senegalensis sob diferentes adubações no Cerrado maranhense
O mogno africano (Khaya senegalensis) tem demonstrado características importantes como alta produtividade e o rápido crescimento no Estado do Maranhão, e com base nesses aspectos o...

