1 |
Synthesis, in silico studies and investigations on antimicrobial, antimalarial activities of p-toluenesulphonamoyl ‘Leu-Gly’ dipeptide carboxamide derivatives |
|
|
| Eugene L. Ayuk, Uchechukwu C. Okoro, Collins U. Ibeji, Comfort M. Nkambule |
|
| Journal of Molecular Structure. 2023; 1285: 135529 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
2 |
In vitro anti-plasmodial activity of three selected medicinal plants that are used in local traditional medicine in Amhara region of Ethiopia |
|
|
| Yenesew Wudu Ejigu, Bedilu Linger Endalifer |
|
| BMC Pharmacology and Toxicology. 2023; 24(1) |
|
| [Pubmed] [Google Scholar] [DOI] |
|
3 |
Antimalarial and Haematological Effects of the Methanolic Leaf Extract of Gongronema latifolium on Mice Infected with Plasmodium berghei |
|
|
| Nwonu Chiebonam, Nwonu Nnamdi, O. Ogbonna, Nnamani Ifebuche, C. Paschal |
|
| Asian Journal of Plant Sciences. 2023; 22(2): 277 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
4 |
ISOLATION, CHARACTERIZATION AND EVALUATION FOR ANTIPLASMODIAL ACTIVITY OF EXTRACTED CONSTITUENTS FROM CAESALPINIA CRISTA LINN SEEDS |
|
|
| Swapna Reddy M., Ramya Kuber B. |
|
| Indian Drugs. 2023; 60(02): 44 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
5 |
In vivo antiplasmodial activity of an aqueous extract of leafy stems of Ipomoea pes-caprea (L.) R.Br. in Swiss mice infected with Plasmodium berghei |
|
|
| Gbongué TIA Eric, Ayoman DJADJI Thierry-Lenoir, Sylvain KOUAKOU Landry, TUO karim, Kouakou EFFO Etienne, Yacouba ADEHOUNI Adebo, Awa Gniènèfèrètien SILUE Nounaféri, Edith Ahou KOUADIO Axelle, N’GUESSAN-IRIE Geneviève, N’doua KOUAKOU-SIRANSY Gisèle |
|
| African Journal of Pharmacy and Pharmacology. 2022; 16(6): 103 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
6 |
Antimalarial Activity of Solvent Fractions of the Stem Bark of Periploca linearifolia Quart.-Dill. & A.Rich. (Asclepiadaceae) Against Plasmodium berghei in Mice |
|
|
| Wubetu Yihunie Belay, Abyot Endale Gurmu, Zewdu Birhanu Wubneh |
|
| Journal of Experimental Pharmacology. 2022; Volume 14: 7 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
7 |
In Vivo Antimalarial Activity of the Leaf Extract of Osyris quadripartita Salzm. ex Decne and Its Major Compound (–) Catechin |
|
|
| Teyiba Kemal, Kebede Feyisa, Daniel Bisrat, Kaleab Asres, Riaz Ullah |
|
| Journal of Tropical Medicine. 2022; 2022: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
8 |
Piperine Enhances the Antimalarial Activity of Curcumin in Plasmodium berghei ANKA-Infected Mice: A Novel Approach for Malaria Prophylaxis |
|
|
| Shafia Khairani, Nisa Fauziah, Hesti Lina Wiraswati, Ramdan Panigoro, Annas Salleh, Endang Yuni Setyowati, Afiat Berbudi, Rajeev K Singla |
|
| Evidence-Based Complementary and Alternative Medicine. 2022; 2022: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
9 |
Suppressive, Curative, and Prophylactic Effects of Maesa lanceolata Forssk. against Rodent Malaria Parasite Plasmodium berghei |
|
|
| Eyob Tekalign, Getnet Tadege, Nebeyi Fisseha, Dejen Nureye, Arif Jamal Siddiqui |
|
| BioMed Research International. 2022; 2022: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
10 |
Implementation and continued validation of the malaria Plasmodium falciparum lactate dehydrogenase-based colorimetric assay for use in antiplasmodial drug screening |
|
|
| Patrick Valere Tsouh Fokou, Brice Mariscal Tchatat Tali, Darline Dize, Cedric Derick Jiatsa Mbouna, Cyrille Armel Njampa Ngansop, Rodrigue Keumoe, Lauve Rachel Yamthe Tchokouaha, Jean Claude Tchouankeu, Fanny Escudie, James Duffy, Fabrice Fekam Boyom |
|
| Analytical Biochemistry. 2022; : 114669 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
11 |
Lumefantrine solid dispersions with piperine for the enhancement of solubility, bioavailability and anti-parasite activity |
|
|
| Nikita R. Takale, Anjali Aji, Kanchan Jane, Prasad R. Deshmukh, Vishal V. Pendharkar, Rajendra R. Khade, Balu V. Ghule, Nazma N. Inamdar, Nandkishor R. Kotagale |
|
| International Journal of Pharmaceutics. 2022; 628: 122354 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
12 |
Synthesis and In Vitro Antimalarial Activity Evaluation of Some New 1,2-Diaminopropane Side-Chain-Modified 4-Aminoquinoline Mannich Bases |
|
|
| Bhupendra Singh, Dipak Chetia, Mukesh Kumar Kumawat |
|
| Pharmaceutical Chemistry Journal. 2021; 55(7): 724 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
13 |
In vivo antiplasmodial activities and acute toxicity assessment of two plant cocktail extracts commonly used among Southwestern Nigerians |
|
|
| Rachel Omagha, Emmanuel Taiwo Idowu, Chibuisi Gideon Alimba, Olubunmi Adetoro Otubanjo, Wellington Aghoghovwia Oyibo, Esther Oluwatoyin Agbaje |
|
| Journal of Parasitic Diseases. 2021; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
14 |
Synthesis, characterization and antimalarial activity of isoquinoline derivatives |
|
|
| Sewan Theeramunkong, Artitiya Thiengsusuk, Opa Vajragupta, Phunuch Muhamad |
|
| Medicinal Chemistry Research. 2021; 30(1): 109 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
15 |
Safety assessment and antimalarial property of methanol extract of Fagara zanthoxyloides root-bark on Plasmodium berghei-infected mice |
|
|
| Christian Chijioke Amah, Osmund Chukwuma Enechi, Daniel Emmanuel Ekpo, Innocent Uzochukwu Okagu, Chidinma Pamela Ononiwu, Parker Elijah Joshua |
|
| Comparative Clinical Pathology. 2021; 30(2): 217 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
16 |
Antimalarial Activity of Seed Extracts of Schinus molle Against Plasmodium berghei in Mice |
|
|
| Abebe Basazn Mekuria, Mestayet Geta, Eshetie Melese Birru, Desalegn Asmelashe Gelayee |
|
| Journal of Evidence-Based Integrative Medicine. 2021; 26: 2515690X20 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
17 |
New glycine derived peptides bearing benzenesulphonamide as an antiplasmodial agent |
|
|
| Daniel Izuchukwu Ugwuja, Uchechukwu Okoro, Shubhanji Soman, Akachukwu Ibezim, David Ugwu, Rina Soni, Bonaventure Obi, James Ezugwu, Ogechi Ekoh |
|
| New Journal of Chemistry. 2021; 45(7): 3660 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
18 |
In vivo antiplasmodial activity of hydromethanolic leaf extract and solvent fractions of Maytenus gracilipes (Celastraceae) against Plasmodium berghei in mice |
|
|
| Dejen Nureye, Muktar Sano Kedir, Rekik Ashebir Muluye, Workineh Woldeselassie Hammeso, Eyob Tekalign |
|
| Heliyon. 2021; 7(11): e08457 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
19 |
In vitro and In vivo antimalarial activities of Avicennia africana P. Beauv. (Avicenniaceae) ethanolic leaf extract |
|
|
| Mustapha A. Ahmed, Elvis O. Ameyaw, Francis Ackah-Armah, Desmond O. Acheampong, Benjamin Amoani, Paulina Ampomah, Emmanuel A. Adakudugu, Christian K. Adokoh |
|
| Journal of Traditional and Complementary Medicine. 2021; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
20 |
Synthesis, molecular docking and antimalarial activity of phenylalanine-glycine dipeptide bearing sulphonamide moiety |
|
|
| Babatunde S. Aronimo, Uchechukwu C. Okoro, Rafat Ali, Collins U. Ibeji, James A. Ezugwu, David I. Ugwu |
|
| Journal of Molecular Structure. 2021; 1246: 131201 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
21 |
Antimalarial Activity of Hydromethanolic Crude Extract and Chloroform Fraction of Brucea antidysenterica Leaves in Plasmodium berghei-Infected Mice |
|
|
| Tezera Jemere Aragaw, Kefyalew Ayalew Getahun, Abdul Sadiq |
|
| Evidence-Based Complementary and Alternative Medicine. 2021; 2021: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
22 |
Antimalarial Activity of Nigella sativa L. Seed Extracts and Selection of Resistance in Plasmodium berghei ANKA in a Mouse Model |
|
|
| Rahma Udu, Job Oyweri, Jeremiah Gathirwa, Jose Yuste |
|
| Journal of Pathogens. 2021; 2021: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
23 |
Evaluation of the Antimalarial Activity of the Leaf Latex of Aloe weloensis (Aloaceae) against Plasmodium Parasites |
|
|
| Gedefaw Getnet Amare, Amsalu Degu, Peter Njogu, Zemene Demelash Kifle, Rômulo Dias Novaes |
|
| Evidence-Based Complementary and Alternative Medicine. 2021; 2021: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
24 |
In Vivo Antimalarial Activity of Leaf Latex of Aloe melanacantha against Plasmodium berghei Infected Mice |
|
|
| Gebrehiwot Kiros Gebremariam, Haile Kassahun Desta, Tekleab Teka Teklehaimanot, Tsgab Gebrecherkos Girmay, Alemayehu Toma |
|
| Journal of Tropical Medicine. 2021; 2021: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
25 |
Antiplasmodial Activity of the Crude Extract and Solvent Fractions of Stem Barks of Gardenia ternifolia in Plasmodium berghei-Infected Mice |
|
|
| Dejen Nureye, Muktar Sano, Mesfin Fekadu, Tadesse Duguma, Eyob Tekalign, Daniel Dias Rufino Arcanjo |
|
| Evidence-Based Complementary and Alternative Medicine. 2021; 2021: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
26 |
Chemical Synthesis, Efficacy, and Safety of Antimalarial Hybrid Drug Comprising of Sarcosine and Aniline Pharmacophores as Scaffolds |
|
|
| Jean Baptiste Niyibizi, Peter G. Kirira, Francis T. Kimani, Fiona Oyatsi, Joseph K. Ng’ang’a |
|
| Journal of Tropical Medicine. 2020; 2020: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
27 |
Antimalarial Activity of Meriandra dianthera Leaf Extracts in Plasmodium berghei-Infected Mice |
|
|
| Kalay Hagazy, Gereziher G. Sibhat, Aman Karim, Gebretsadkan H. Tekulu, Gomathi Periasamy, Mebrahtom G. Hiben |
|
| Evidence-Based Complementary and Alternative Medicine. 2020; 2020: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
28 |
Effects of co-administration of Ganoderma terpenoid extract with chloroquine on inflammatory markers and antioxidant status in Plasmodium berghei-infected mice |
|
|
| Olarewaju M. Oluba, Oghenerobor B. Akpor, Feyikemi D. Adebiyi, Sunday J. Josiah, Olayinka O. Alabi, Ayoola O. Shoyombo, Augustine O. Olusola |
|
| Journal of Integrative Medicine. 2020; 18(6): 522 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
29 |
Design and Discovery of 3,6-Substituted 1,2,4,5-Tetraoxanes as New Class of Falcipain-2 Inhibitors for Antimalarial Action |
|
|
| Mukesh Kumar Kumawat, Udaya Pratap Singh, Dipak Chetia |
|
| Pharmaceutical Chemistry Journal. 2019; 53(9): 822 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
30 |
Cysteine Protease Inhibitors from the Methanol Extract of the Root Bark of Securidaca longepedunculata with Antimalarial Potentials in Chloroquine-Resistant P. berghei Parasite |
|
|
| Alex Amos, Sherifat Bola Anafi, Mohammed Garba Magaji |
|
| Egyptian Journal of Basic and Clinical Pharmacology. 2019; 9 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
31 |
SYNTHESIS AND BIOLOGICAL EVALUATION OF 1,3,5-TRISUBSTITUTED PYRAZOLINES AS ANTIMALARIAL–ANTIMICROBIAL AGENTS |
|
|
| S. Sonker, D Pathak |
|
| INDIAN DRUGS. 2018; 55(01): 7 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
32 |
In vivo antimalarial activity of the crude root and fruit extracts of Croton macrostachyus (Euphorbiaceae) against Plasmodium berghei in mice |
|
|
| Laychiluh Bantie Mekonnen |
|
| Journal of Traditional and Complementary Medicine. 2015; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
33 |
New heterocyclic hybrids of pyrazole and its bioisosteres: Design, synthesis and biological evaluation as dual acting antimalarial-antileishmanial agents |
|
|
| Adnan A. Bekhit,Ahmed M.M. Hassan,Heba A. Abd El Razik,Mostafa M.M. El-Miligy,Eman J. El-Agroudy,Alaa El-Din A. Bekhit |
|
| European Journal of Medicinal Chemistry. 2015; 94: 30 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
34 |
Effect of chronic khat (Catha edulis, Forsk) use on outcome of Plasmodium berghei ANKA infection in Swiss albino mice |
|
|
| Tsige Ketema,Moti Yohannes,Esayas Alemayehu,Argaw Ambelu |
|
| BMC Infectious Diseases. 2015; 15(1) |
|
| [Pubmed] [Google Scholar] [DOI] |
|
35 |
In vivo antimalarial activity of the crude leaf extract and solvent fractions of Croton macrostachyus Hocsht. (Euphorbiaceae) against Plasmodium berghei in mice |
|
|
| Laychiluh Bantie,Solomon Assefa,Tilahun Teklehaimanot,Ephrem Engidawork |
|
| BMC Complementary and Alternative Medicine. 2014; 14(1): 79 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
36 |
Azadirachta indicaextract–artesunic acid combination produces an increased cure rate ofPlasmodium berghei-infected mice |
|
|
| Onyeka Linda Anagu,Anthony Amaechi Attama,Vincent Chima Okore,Harrison Thaddeus Gugu,Augustine Arinze Ngene,Charles Okechukwu Esimone |
|
| Pharmaceutical Biology. 2014; : 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
37 |
Isolation, fractionation and evaluation of the antiplasmodial properties of Phyllanthus niruri resident in its chloroform fraction |
|
|
| Obidike Ifeoma,Okhale Samuel,Aboh Mercy Itohan,Salawu Oluwakanyinsola Adeola |
|
| Asian Pacific Journal of Tropical Medicine. 2013; 6(3): 169 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
38 |
Antiplasmodial activity of certain medicinal plants against chloroquine resistant Plasmodium berghei infected white albino BALB/c mice |
|
|
| C. Rajendran,M. Begam,Dharmendra Kumar,Indra Baruah,H. K. Gogoi,R. B. Srivastava,Vijay Veer |
|
| Journal of Parasitic Diseases. 2013; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
39 |
In vivoAntimalarial Activity of a Labdane Diterpenoid from the Leaves ofOtostegia integrifoliaBenth |
|
|
| Abyot Endale,Daniel Bisrat,Abebe Animut,Franz Bucar,Kaleab Asres |
|
| Phytotherapy Research. 2013; : n/a |
|
| [Pubmed] [Google Scholar] [DOI] |
|
40 |
Antimalarial natural products drug discovery in Panama |
|
|
| Angela I. Calderón, Johayra Simithy-Williams, Mahabir P. Gupta |
|
| Pharmaceutical Biology. 2012; 50(1): 61 |
|
| [HTML Full text] [Google Scholar] [DOI] |
|
41 |
Molecular modeling studies, synthesis and biological evaluation of derivatives of N-phenylbenzamide as Plasmodium falciparum dihydroorotate dehydrogenase (PfDHODH) inhibitors |
|
|
| Kumar R. Desai, Mushtaque S. Shaikh, Evans C. Coutinho |
|
| Medicinal Chemistry Research. 2011; 20(3): 321 |
|
| [HTML Full text] [Google Scholar] [DOI] |
|
42 |
Antagonistic antimalarial properties of pawpaw leaf aqueous extract in combination with artesunic acid in plasmodium berghei-infected mice |
|
|
| Onaku, L.O., Attama, A.A., Okore, V.C., Tijani, A.Y., Ngene, A.A., Esimone, C.O. |
|
| Journal of Vector Borne Diseases. 2011; 48(2): 96-100 |
|
| [Pubmed] [Google Scholar] |
|
43 |
Suppression of Plasmodium berghei parasitemia by LiCl in an animal infection model |
|
|
| Zakaria, N.A., Embi, N., Sidek, H.M. |
|
| Tropical Biomedicine. 2010; 27(3): 624-631 |
|
| [Pubmed] [Google Scholar] |
|
44 |
Molecular modeling studies, synthesis, and biological evaluation of Plasmodium falciparum enoyl-acyl carrier protein reductase (PfENR) inhibitors |
|
|
| Morde, V.A., Shaikh, M.S., Pissurlenkar, R.R.S., Coutinho, E.C. |
|
| Molecular Diversity. 2009; 13(4): 501-517 |
|
| [Pubmed] [Google Scholar] |
|
45 |
Testing of natural products and synthetic molecules aiming at new antimalarials |
|
|
| Krettli, A.U., Adebayo, J.O., Krettli, L.G. |
|
| Current Drug Targets. 2009; 10(3): 261-270 |
|
| [Pubmed] [Google Scholar] |
|
46 |
Molecular modeling studies, synthesis, and biological evaluation of Plasmodium falciparum enoyl-acyl carrier protein reductase (PfENR) inhibitors |
|
|
| Varun A. Morde,Mushtaque S. Shaikh,Raghuvir R. S. Pissurlenkar,Evans C. Coutinho |
|
| Molecular Diversity. 2009; 13(4): 501 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
47 |
Modelling and informatics in the analysis of P. falciparum DHFR enzyme inhibitors |
|
|
| Adane, L., Bharatam, P.V. |
|
| Current Medicinal Chemistry. 2008; 15(16): 1552-1560 |
|
| [Pubmed] [Google Scholar] |
|
48 |
In vivo antimalarial activity of leaves of Plectranthus amboinicus (lour) spreng on plasmodium berghei yoelii |
|
|
| Periyanayagam, K., Nirmala Devi, K., Suseela, L., Uma, A., Ismail, M. |
|
| Journal of Communicable Diseases. 2008; 40(2): 121-125 |
|
| [Pubmed] [Google Scholar] |
|