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Journal of Medicinal Chemistry | 2015

Carbamoyl Triazoles, Known Serine Protease Inhibitors, Are a Potent New Class of Antimalarials.

Matthew McConville; J.G. Fernandez; Iñigo Angulo-Barturen; Noemi Bahamontes-Rosa; Lluis Ballell-Pages; Pablo Castañeda; Cristina de Cozar; Benigno Crespo; Laura Guijarro; María Belén Jiménez-Díaz; María S. Martínez-Martínez; Jaime de Mercado; Ángel Santos-Villarejo; Laura Sanz; Micol Frigerio; Gina Washbourn; Stephen A. Ward; Gemma L. Nixon; Giancarlo A. Biagini; Neil G. Berry; Michael J. Blackman; Félix Calderón; Paul M. O’Neill

Screening of the GSK corporate collection, some 1.9 million compounds, against Plasmodium falciparum (Pf), revealed almost 14000 active hits that are now known as the Tres Cantos Antimalarial Set (TCAMS). Followup work by Calderon et al. clustered and computationally filtered the TCAMS through a variety of criteria and reported 47 series containing a total of 522 compounds. From this enhanced set, we identified the carbamoyl triazole TCMDC-134379 (1), a known serine protease inhibitor, as an excellent starting point for SAR profiling. Lead optimization of 1 led to several molecules with improved antimalarial potency, metabolic stabilities in mouse and human liver microsomes, along with acceptable cytotoxicity profiles. Analogue 44 displayed potent in vitro activity (IC50 = 10 nM) and oral activity in a SCID mouse model of Pf infection with an ED50 of 100 and ED90 of between 100 and 150 mg kg(-1), respectively. The results presented encourage further investigations to identify the target of these highly active compounds.


Journal of Medicinal Chemistry | 2018

Synthesis and Structure–Activity Relationships of the Novel Antimalarials 5-Pyridinyl-4(1H)-Pyridones

José M Bueno; Félix Calderón; Jesús Chicharro; Juan C. de la Rosa; Beatriz Díaz; J.G. Fernandez; Jose M. Fiandor; María Teresa Fraile; Mercedes García; Esperanza Herreros; Adolfo García-Pérez; Milagros Lorenzo; Araceli Mallo; Margarita Puente; Anas Saadeddin; Santiago Ferrer; Iñigo Angulo-Barturen; Jeremy N. Burrows; María Luisa León

Malaria is still one of the most prevalent parasitic infections in the world, with half of the worlds population at risk for malaria. The effectiveness of current antimalarial therapies, even that of the most recent class of antimalarial drugs (artemisinin-combination therapies, ACTs), is under continuous threat by the spread of resistant Plasmodium strains. As a consequence, there is still an urgent requirement for new antimalarial drugs. We previously reported the identification of 4(1 H)-pyridones as a novel series with potent antimalarial activities. The low solubility was identified as an issue to address. In this paper, we describe the synthesis and biological evaluation of 4(1 H)-pyridones with potent antimalarial activities in vitro and in vivo and improved pharmacokinetic profiles. Their main structural novelties are the presence of polar moieties, such as hydroxyl groups, and the replacement of the lipophilic phenyl rings with pyridines on their lipophilic side chains.


ACS Omega | 2018

Isoxazolopyrimidine-Based Inhibitors of Plasmodium falciparum Dihydroorotate Dehydrogenase with Antimalarial Activity

Sreekanth Kokkonda; Farah El Mazouni; Karen L. White; John White; David M. Shackleford; Maria Jose Lafuente-Monasterio; Paul Rowland; Krishne Manjalanagara; Jayan T. Joseph; Adolfo García-Pérez; J.G. Fernandez; Francisco Javier Gamo; David Waterson; Jeremy N. Burrows; Michael J. Palmer; Susan A. Charman; Pradipsinh K. Rathod; Margaret A. Phillips

Malaria kills nearly 0.5 million people yearly and impacts the lives of those living in over 90 countries where it is endemic. The current treatment programs are threatened by increasing drug resistance. Dihydroorotate dehydrogenase (DHODH) is now clinically validated as a target for antimalarial drug discovery as a triazolopyrimidine class inhibitor (DSM265) is currently undergoing clinical development. We discovered a related isoxazolopyrimidine series in a phenotypic screen, later determining that it targeted DHODH. To determine if the isoxazolopyrimidines could yield a drug candidate, we initiated hit-to-lead medicinal chemistry. Several potent analogues were identified, including a compound that showed in vivo antimalarial activity. The isoxazolopyrimidines were more rapidly metabolized than their triazolopyrimidine counterparts, and the pharmacokinetic data were not consistent with the goal of a single-dose treatment for malaria.


Anatomia Histologia Embryologia | 1987

Bipolar Mesoderm Cells in vitro Examined by Scanning Electron Microscopy

C.A. Chamorro; P. de Paz; J.G. Fernandez; M. Fernandez; J.M. Villar

Head mesoderm cells from chick embryo at stage 10 were cultured onto coverslips. The mesoderm cells with bipolar aspect were studied by means of scanning electron microscopy. Several features of the filopodia and lamellipodia of these cells, as number, length and width were quantified and the results ire discussed in view of the role proposed for these projections in the cellular locomotion. Moreover, the morphological characterization here carried out permits to have comparison with other cellular types of the same culture or between cultured cells of different stages of chick embryo development.


Histology and Histopathology | 1994

Scanning electron microscopy of the wild boar and pig lingual papillae.

C.A. Chamorro; J.G. Fernandez; B. Pelaez; P. de Paz; L. Anel


Chemical Communications | 2016

Isoxazole mediated synthesis of 4-(1H)pyridones: improved preparation of antimalarial candidate GSK932121

J.G. Fernandez; Jesús Chicharro; José M Bueno; Milagros Lorenzo


Journal of Veterinary Medicine, Series C (Germany, F.R.) | 1987

Compared studies of the lingual papillae of the cat (Felis catus) and the rabbit (Oryctolagus cuniculus) by scanning electron microscopy

C.A. Chamorro; J. Sandoval; J.G. Fernandez; M. Fernandez; P de Paz


Anales de la Facultad de Veterinaria de Leon (Spain) | 1986

Morphogenetic dynamic of neurulation at the presumptive midbrain and spiral cord regions of the chick: Its relationships with the mitochondrial distribution into neuroepitherial cells

J.G. Fernandez; C.A. Chamorro; P. de Paz; M. Fernandez; J.M. Villar


Cells Tissues Organs | 1985

Contents, Vol. 124, 1985

Z. Schwartz; A. Ornoy; W.A. Soskolne; A. Dhem; Pierre A. Sandoz; M.A. Soria; M.C. Coca Garcia; M.E. Gomez Carretero; A. Represa Bermejo; Einar Svendsen; P. Zilla; M.R. Celio; R. Fasol; W. Zenker; Mary J. Osborne-Pellegrin; Takahisa Sasaki; Hiroshi Suzuki; Chiaki Watanabe; P. de Paz; A. Zapata; J.G. Fernandez; C.A. Chamorro; J.M. Villar; Jyotsna Chakraborty; A.P. Sinha Hikim; Jagadish S. Jhunjhunwala; A. Fuchs; E. Lindenbaum; N.G. Marcoudas; Onkar S. Atwal


Cells Tissues Organs | 1985

Subject Index, Vol. 124, 1985

Z. Schwartz; A. Ornoy; W.A. Soskolne; A. Dhem; Pierre A. Sandoz; M.A. Soria; M.C. Coca Garcia; M.E. Gomez Carretero; A. Represa Bermejo; Einar Svendsen; P. Zilla; M.R. Celio; R. Fasol; W. Zenker; Mary J. Osborne-Pellegrin; Takahisa Sasaki; Hiroshi Suzuki; Chiaki Watanabe; P. de Paz; A. Zapata; J.G. Fernandez; C.A. Chamorro; J.M. Villar; Jyotsna Chakraborty; A.P. Sinha Hikim; Jagadish S. Jhunjhunwala; A. Fuchs; E. Lindenbaum; N.G. Marcoudas; Onkar S. Atwal

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C.A. Chamorro

Instituto de Salud Carlos III

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A. Zapata

Complutense University of Madrid

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M.A. Soria

University of Valladolid

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