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Dive into the research topics where María A. Fernández-Herrera is active.

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Featured researches published by María A. Fernández-Herrera.


Bioorganic & Medicinal Chemistry | 2010

Synthesis of 26-hydroxy-22-oxocholestanic frameworks from diosgenin and hecogenin and their in vitro antiproliferative and apoptotic activity on human cervical cancer CaSki cells.

María A. Fernández-Herrera; Hugo López-Muñoz; José M.V. Hernández-Vázquez; Moisés López-Dávila; María L. Escobar-Sánchez; Luis Sánchez-Sánchez; B. Mario Pinto; Jesús Sandoval-Ramírez

Certain steroidal compounds have demonstrated an antiproliferative effect against several tumor cell lines; however, their complete role on cancer cells is not currently established. Herein, we report the synthesis and evaluation of two new 26-hydroxy-22-oxocholestanic steroids on cervical cancer CaSki cells. The title compounds were prepared from diosgenin and hecogenin in excellent yields. We determined their effect on cell proliferation, cell cycle, and cell death. The cytotoxic effect of the title compounds on CaSki and human lymphocytes was also evaluated, indicating that the main cell death process is not necrosis; the null effect on lymphocytes implies that they are not cytotoxic. The observation of apoptotic bodies as well as the increase in the expression of active caspase-3 along with the fragmentation of DNA confirmed that such new cholestanic frameworks induced apoptosis in tumor cells. Significantly, their antiproliferative activity on tumor cells did not affect the proliferative potential of normal fibroblasts from cervix and peripheral blood lymphocytes. The title compounds show selective antitumor activity and therefore serve as promising lead candidates for further optimization.


European Journal of Medicinal Chemistry | 2014

Probing the selective antitumor activity of 22-oxo-26-selenocyanocholestane derivatives

María A. Fernández-Herrera; Jesús Sandoval-Ramírez; Luis Sánchez-Sánchez; Hugo López-Muñoz; María L. Escobar-Sánchez

Diverse steroidal compounds have shown antiproliferative activity on certain tumor cell lines; however, their complete role on cancer cells has not been extensively established since the research is quite recent. Hence, deeper study in this field is required. Due to the importance of selenium in animal and human health; herein, we report the synthesis, characterization, and biological evaluation of two novel 22-oxo-26-selenocyanocholestanic steroids on cervicouterine cancer cells and non-tumor cells. The title compounds were straightforward prepared from diosgenin and hecogenin in excellent overall yields. We determined their effect on cell proliferation on HeLa, CaSki, and ViBo cell cultures. Their cytotoxic effect on tumor cells, as well as on peripheral blood lymphocytes was also evaluated. The increase in the expression of active caspase-3 along with the fragmentation of DNA confirm that the new 22-oxo-26-selenocyanocholestane frameworks potentiate apoptosis in tumor cells. The antiproliferative activity on tumor cells affects to some extent the proliferative potential of peripheral blood lymphocytes, so an immunosuppressive effect has also been established. The novel 22-oxo-26-selenocyanocholestane compounds show selective antitumor activity and therefore are promising lead candidates for further in vivo evaluation.


European Journal of Medicinal Chemistry | 2010

Synthesis of the steroidal glycoside (25R)-3β,16β-diacetoxy-12,22-dioxo-5α-cholestan-26-yl β-d-glucopyranoside and its anti-cancer properties on cervicouterine HeLa, CaSki, and ViBo cells

María A. Fernández-Herrera; Sankar Mohan; Hugo López-Muñoz; José M.V. Hernández-Vázquez; Esmeralda Pérez-Cervantes; María L. Escobar-Sánchez; Luis Sánchez-Sánchez; Ignacio Regla; B. Mario Pinto; Jesús Sandoval-Ramírez

The synthesis of the new glycoside (25R)-3β,16β-diacetoxy-12,22-dioxo-5α-cholestan-26-yl β-D-glucopyranoside starting from hecogenin is described. This compound showed anti-cancer activity against cervicouterine cancer cells HeLa, CaSki and ViBo in the micromolar range. Its effect on cell proliferation, cell cycle and cell death is also described. The cytotoxic effect of the title compound on HeLa, CaSki and ViBo cells and human lymphocytes was evaluated through the LDH released in the culture supernatant, indicating that the main cell death process is not necrosis; the null effect on lymphocytes implies that it is not cytotoxic. The ability of this novel glycoside to induce apoptosis was investigated; several apoptosis events like chromatin condensation, formation of apoptotic bodies, as well as the increase in the expression of active caspase-3 and the fragmentation of DNA confirmed that the compound induced apoptosis in cervicouterine cancer cells. Significantly, the antiproliferative activity on tumor cells did not affect the proliferative potential of normal fibroblasts from cervix and peripheral blood lymphocytes. The glycoside showed selective antitumor activity and greater antiproliferative activity than its aglycon; it therefore serves as a promising lead candidate for further optimization.


ChemistryOpen | 2015

Revisiting Aromaticity and Chemical Bonding of Fluorinated Benzene Derivatives.

Juan J. Torres-Vega; Alejandro Vásquez-Espinal; Lina Ruiz; María A. Fernández-Herrera; Luis Alvarez-Thon; Gabriel Merino; William Tiznado

The electron delocalization of benzene (C6H6) and hexafluorobenzene (C6F6) was analyzed in terms of the induced magnetic field, nucleus-independent chemical shift (NICS), and ring current strength (RCS). The computed out-of-plane component of the induced magnetic field at a distance (r) greater than or equal to 1.0 Å above the ring center correlates well (R2>0.99) with the RCS value. According to these criteria, fluorination has two effects on the C6 skeleton; concomitantly, the resonant effects diminish the π electron delocalization and the inductive effects decrease the charge density at the ring center and therefore reduce the magnitude of the paratropic current generated in this region. The equilibrium between both effects decreases aromaticity in the fluorinated benzene derivatives. These results can be extrapolated to determine the aromaticity of any derivative within the series of fluorinated benzene derivatives (C6H(6−n)Fn, where n=1–5).


European Journal of Medicinal Chemistry | 2011

Synthesis and biological evaluation of the glycoside (25R)-3β,16β-diacetoxy-22-oxocholest-5-en-26-yl β-d-glucopyranoside: a selective anticancer agent in cervicouterine cell lines.

María A. Fernández-Herrera; Hugo López-Muñoz; José M.V. Hernández-Vázquez; Moisés López-Dávila; Sankar Mohan; María L. Escobar-Sánchez; Luis Sánchez-Sánchez; B. Mario Pinto; Jesús Sandoval-Ramírez

The synthesis and biological evaluation of the new cholestane glycoside (25R)-3β,16β-diacetoxy-22-oxocholest-5-en-26-yl β-d-glucopyranoside starting from diosgenin is described. This compound showed selective antiproliferative activity against CaSki, ViBo, and HeLa cervicouterine cancer cells. Its effect on the cell-cycle was determined. The cytotoxic effects of the title compound on cervicouterine cancer cell lines and human lymphocytes indicate that the main cell death process is not necrosis; hence it is not cytotoxic. The title compound induced apoptosis in cervicouterine cancer cells. Importantly, the antiproliferative activity on tumor cells did not affect the proliferative potential of peripheral blood lymphocytes. The title compound showed selective antitumor activity and greater antiproliferative activity than its aglycon, and therefore serves as a promising lead candidate for further optimization.


European Journal of Medicinal Chemistry | 2012

Synthesis and selective anticancer activity of steroidal glycoconjugates

María A. Fernández-Herrera; Hugo López-Muñoz; José M.V. Hernández-Vázquez; Luis Sánchez-Sánchez; María L. Escobar-Sánchez; B. Mario Pinto; Jesús Sandoval-Ramírez

The synthesis of glucosamine derivatives of the steroidal sapogenins diosgenin and hecogenin using the N-phthaloyl protected trichloroacetimidate of d-glucosamine as donor and TMSOTf as promoter is reported. The corresponding glycoconjugates were transformed into their acetamido derivatives and the hydrochloride salt (from diosgenin) and tested against HeLa, CaSki, and ViBo cervicouterine cancer cells. These compounds showed low cytotoxicity values on tumor cells and human lymphocytes, indicating that the main cell death process is presumably not necrosis. Significantly, the antiproliferative activity of these compounds on tumor cells did not affect the proliferative potential of peripheral blood lymphocytes.


Journal of Organic Chemistry | 2014

Carbo-cages: a computational study.

Jon M. Azpiroz; Rafael Islas; Diego Moreno; María A. Fernández-Herrera; Sudip Pan; Pratim K. Chattaraj; Gerardo Martínez-Guajardo; Jesus M. Ugalde; Gabriel Merino

Inspired by their geometrical perfection, intrinsic beauty, and particular properties of polyhedranes, a series of carbo-cages is proposed in silico via density functional theory computations. The insertion of alkynyl units into the C-C bonds of polyhedranes results in a drastic lowering of the structural strain. The induced magnetic field shows a significant delocalization around the three-membered rings. For larger rings, the response is paratropic or close to zero, suggesting a nonaromatic behavior. In the carbo-counterparts, the values of the magnetic response are shifted with respect to their parent compounds, but the aromatic/nonaromatic character remains unaltered. Finally, Born-Oppenheimer molecular dynamics simulations at 900 K do not show any drastic structural changes up to 10 ps. In the particular case of a carbo-prismane, no structural change is perceived until 2400 K. Therefore, although carbo-cages have enthalpies of formation 1 order of magnitude higher than those of their parent compounds, their future preparation and isolation should not be discarded, because the systems are kinetically stable, explaining why the similar systems like carbo-cubane have already been synthesized.


Steroids | 2010

Deacylation reactions of 20-acetyl dinorcholanic lactones and 20,23-diacetyl furost-22-enes.

Ma. Guadalupe Hernández-Linares; Jesús Sandoval-Ramírez; Socorro Meza-Reyes; Sara Montiel-Smith; María A. Fernández-Herrera; Sylvain Bernès

We report the deacylation of (20R)-20-acetyl-23,24-dinorcholanic lactones by hydrazine hydrate, under microwave irradiation in high yields. The elimination of the 20-acetyl group proceeded with retention of configuration which contrast with other proved deacylation methods that yield a mixture of diastereoisomers. In this way, unnatural (20R)-23,24-dinorcholanic lactones can be produced rapidly on a large scale. Both (20R)- and (20S)-lactones were prepared starting from diosgenin, hecogenin and sarsasapogenin, in 72-80% overall yields.


Organic Letters | 2016

Regioselective Spirostan E-Ring Opening for the Synthesis of Dihydropyran Steroidal Frameworks

J. Ciciolil Hilario-Martínez; Reyna Zeferino-Díaz; Miguel A. Muñoz-Hernández; Ma. Guadalupe Hernández-Linares; José Luis Cabellos; Gabriel Merino; Jesús Sandoval-Ramírez; Zhendong Jin; María A. Fernández-Herrera

The regioselective opening of the ring E in spirostan sapogenins provides new dihydropyran derivatives. This novel side chain is obtained after a Lewis acid mediated acetolysis followed by an alkaline workup. The reaction mechanism is analyzed via density functional theory computations, and both experimental and computational data support the formation of an oxacarbenium intermediate. The behavior of the title skeletons under acidic conditions is also investigated.


Steroids | 2015

22-Oxocholestanes as plant growth promoters

Reyna Zeferino-Díaz; J. Ciciolil Hilario-Martínez; Maricela Rodríguez-Acosta; Jesús Sandoval-Ramírez; María A. Fernández-Herrera

The spirostanic steroidal side-chain of diosgenin and hecogenin was modified to produce 22-oxocholestane derivatives. This type of side-chain was obtained in good yields through a straightforward four-step pathway. These compounds show potent brassinosteroid-like growth promoting activity evaluated via the rice lamina joint inclination bioassay. This is the first report of steroidal skeletons bearing the 22-oxocholestane side-chain and preserving the basic structure (A-D rings) from their corresponding parent compounds acting as plant growth promoters.

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Hugo López-Muñoz

National Autonomous University of Mexico

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Luis Sánchez-Sánchez

National Autonomous University of Mexico

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Sara Montiel-Smith

Benemérita Universidad Autónoma de Puebla

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Socorro Meza-Reyes

Benemérita Universidad Autónoma de Puebla

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José M.V. Hernández-Vázquez

National Autonomous University of Mexico

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María L. Escobar-Sánchez

National Autonomous University of Mexico

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