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Dive into the research topics where Sara Montiel-Smith is active.

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Featured researches published by Sara Montiel-Smith.


European Journal of Medicinal Chemistry | 2015

Diosgenin-based thio(seleno)ureas and triazolyl glycoconjugates as hybrid drugs. Antioxidant and antiproliferative profile

Laura L. Romero-Hernández; Penélope Merino-Montiel; Sara Montiel-Smith; Socorro Meza-Reyes; José Luis Vega-Baez; Ibane Abasolo; Simó Schwartz; Óscar López; José G. Fernández-Bolaños

The stereoselective preparation of diosgenin-derived thio(seleno)ureas and glycomimetics bearing a 1,2,3-triazolyl tether on C-3 has been accomplished. The key steps in the synthetic pathway are the incorporation of an amino moiety and its further transformation into thio- and selenoureas, and also a click chemistry reaction involving a propargyl residue and an azido moiety to afford carbohydrate-derived 1,2,3-triazoles; subsequent BF3-promoted acetolysis of the spiranic moiety afforded the corresponding 22-oxocholestanic structure. The N-phenyl selenourea, an hitherto unknown steroidal derivative, turned out to be a potent ROS scavenger, in particular against free radicals (EC50 = 29.47 ± 2.33 μM, DPPH method), and as a glutathione peroxidase mimic in the elimination of H2O2 (t1/2 = 4.8 min, 1% molar ratio). 22-Oxocholestane structures bearing a C-3 azido, propargyl, thioureido, and particularly selenoureido moiety behaved as strong antiproliferative agents against HeLa cells (IC50 1.87-11.80 μM). N-phenyl selenourea also exhibited IC50 values lower than 6.50 μM for MDA-MB-231, MCF-7 and HepG2 cancer cells; apoptosis was found to be involved in its mode of action. Such compound was also capable of efficiently eliminating ROS endogenously produced by HeLa cells. Antiproliferative properties of thioxo and selenoxo derivatives were stronger than diosgenin.


Steroids | 2010

Novel steroidal penta- and hexacyclic compounds derived from 12-oxospirostan sapogenins

José Oscar H. Pérez-Díaz; José Luis Vega-Baez; Jesús Sandoval-Ramírez; Socorro Meza-Reyes; Sara Montiel-Smith; Norberto Farfán; Rosa Santillan

The E ring regioselective acid-catalyzed opening of spirostanic sapogenins possessing a carbonyl group at C-12, such as botogenin and hecogenin, provided the new 12,23-cyclo-22,26-epoxycholesta-11,22-diene skeleton, in addition to new compounds of the already known 12,23-cyclocholest-12(23)-en-22-one frameworks. This transformation proceeds in a single step, under slightly acidic conditions. Both, penta- and hexacyclic steroids were obtained with retention of configuration of all asymmetric centers.


Steroids | 2014

Synthesis of steroidal derivatives containing substituted, fused and spiro pyrazolines

Anabel Romero-López; Sara Montiel-Smith; Socorro Meza-Reyes; Penélope Merino-Montiel; José Luis Vega-Baez

An efficient and facile synthesis of fused, substituted and spiro pyrazoline steroid derivatives through a cycloaddition reaction of different α,β-unsaturated ketones with hydrazine acetate in acetic acid is reported. Depending on the starting material, the ring closure reaction provided a mixture of two steroidal pyrazoline epimers that were separated and studied by NMR techniques. In one case it was possible to isolate and characterize the hydrazone derivative as the reaction intermediate, which confirms the mechanism proposed in the literature [11,25,26].


Steroids | 2016

Synthesis of monomeric and dimeric steroids containing [1,2,4]triazolo[1,5-a]pyrimidines

Ailed Arenas-González; Luis Antonio Mendez-Delgado; Penélope Merino-Montiel; José M. Padrón; Sara Montiel-Smith; José Luis Vega-Baez; Socorro Meza Reyes

The synthesis of several monomeric and dimeric steroidal [1,2,4]triazolo[1,5-a]pyrimidines (TPs) derived from steroids are described. These derivatives were prepared from α,β-unsaturated carbonyl compounds through a Claisen Schmidt condensation and rearrangement of the spiro moiety followed by a cycloaddition with 3-amino-1,2,4-triazole. The antiproliferative activity of compounds 7, 13-15 was tested against human cancer cells; several IG50 values were below 10μM.


Tetrahedron Letters | 1995

Regioselective reductions of steroidal conjugated dienes by DIBAH

Sara Montiel-Smith; Leticia Quintero-Cortes; Jesús Sandoval-Ramírez

Abstract DIBAH reduces sleroidal 5,7and 22,24(28)-conjugated dienes regioselectively in high yields. The reduction of double bond at C-5 affords only 5α-steroids but that of 24(28)-double bond results in epimeric products at C-24. Neither isolated C-5 double bonds nor 7, 9(11)-dienes are transformed


Steroids | 2012

Rapid conversion of spirostans into furostan skeletons at room temperature

Omar Viñas-Bravo; Roxana Martínez-Pascual; José Luis Vega-Baez; Víctor Gómez-Calvario; Jesús Sandoval-Ramírez; Sara Montiel-Smith; Socorro Meza-Reyes; Alejandra López-De Rosas; Mónica Martínez-Montiel; Mayra Reyes; José A. Ruiz

We report a facile protocol to obtain 22-substituted furostans and pseudosapogenins in high yields from (25R)- and (25S)-sapogenins. This method involves the treatment of the sapogenin with acetic-trifluoroacetic mixed anhydride and BF(3)·OEt(2) at room temperature, followed by the addition of a nucleophile (H(2)O, MeOH or KSeCN). In the case of 22-hydroxyfurostans, they can be transformed to pseudosapogenins by treatment with p-toluensulfonic acid.


European Journal of Medicinal Chemistry | 2009

Synthesis and anabolic/androgenic evaluation of novel 9α-fluorosteroids

M. Reyes-Moreno; J.A. Ruiz-García; Y. Ibarra-Reyes; A. Fuente-Hernández; H. Vélez-Castro; I. Hernández-Balmaseda; I. Martínez-Hormaza; I. Rodeiro-Guerra; J. Sandoval Ramírez; S. Meza Reyes; Sara Montiel-Smith

3Beta,11beta-dihydroxy-9alpha-fluor-5alpha-androstane-17-one (2), 3beta-acetoxy-9alpha-fluor-11beta-hydroxy-5alpha-androstane-17-one (3), 3beta-acetoxy-9alpha-fluor-11beta,17beta-dihydroxy-5alpha-androstane (4), 3beta,17beta-diacetoxy-9alpha-fluor-11beta-hydroxy-5alpha-androstane (5), 3beta-acetoxy-9alpha-fluor-11beta-hydroxy-5alpha-androstane 17beta-propionate (6), 3beta-acetoxy-9alpha-fluor-11beta-hydroxy-5alpha-androstane 17beta-enanthate (7), 3beta-acetoxy-9alpha-fluor-11beta-hydroxy-5alpha-androstane 17beta-isobutyrate (8) were synthesized in the present study. Compounds 2 and 8 exhibited higher anabolic activity than the rest of the synthesized compounds. The structure of all these newly synthesized compounds was confirmed by analytic spectral data (mass, (1)H NMR and (13)C NMR).


Steroids | 2017

Novel synthesis of steroidal oximes and lactams and their biological evaluation as antiproliferative agents

Roxana Martínez-Pascual; Socorro Meza-Reyes; José Luis Vega-Baez; Penélope Merino-Montiel; José M. Padrón; Angel Mendoza; Sara Montiel-Smith

HIGHLIGHTSTwo novel and short methods to introduce the hydroxyimino group at C‐6 on the steroidal skeleton are described.An efficient route to obtain B‐homolactams in just three steps from the natural steroids is presented.The antiproliferative activity of the new steroidal oximes and lactams was evaluated. ABSTRACT A novel three‐step methodology to obtain 6a‐aza‐B‐homo steroidal lactams has been developed starting from the easily available cholesterol and pregnenolone. In addition, a new procedure for the synthesis of a 6a‐aza‐B‐homo steroidal lactam analog of vespertilin, starting from diosgenin has been established. In both synthetic pathways, the key intermediate is a hydroxyimino derivative obtained in a one‐ or two‐step sequence from the starting materials. These methods avoid the use of hazardous oxidant agents in the process. The new steroidal oximes and lactams were examined for their antiproliferative activities against several tumor cell lines. The 6,23‐dihydroxyimino derivative exhibited the highest activity with GI50 values of 11–22 &mgr;M.


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.


Steroids | 2013

Synthetic pathway to 22,23-dioxocholestanic chain derivatives and their usefulness for obtaining brassinosteroid analogues.

Víctor Gómez-Calvario; Ailed Arenas-González; Socorro Meza-Reyes; Sara Montiel-Smith; José Luis Vega-Baez; Jesús Sandoval-Ramírez; María Guadalupe Hernández-Linares

Recognizing the functionality of the pentacyclic steroidal derivative 7a as important synthon to obtain new brassinosteroid analogs, we have accomplished the derivatization of hecogenin, a sapogenin from the 25R serie containing a carbonyl group at C-12, to a 22,23-dioxocholestanic chain derivative. Starting from hecogenin acetate (5a) or hecogenin tosylate (5b), we obtained two pentacyclic derivatives (7a and 7b) which were subjected to an oxidation reaction on the double bond at C-12(23) to obtain a 22,23-dioxocholestanic chain, with the regeneration of the carbonyl group at C-12. Reduction of the carbonyl groups lead to the 20-epi-12,23-dihydroxy-22-oxo system 11a-b. The absolute configuration of compound 11a was established by X-ray diffraction analysis.

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Socorro Meza-Reyes

Benemérita Universidad Autónoma de Puebla

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José Luis Vega-Baez

Benemérita Universidad Autónoma de Puebla

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Omar Viñas-Bravo

Benemérita Universidad Autónoma de Puebla

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Penélope Merino-Montiel

Benemérita Universidad Autónoma de Puebla

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Sylvain Bernès

Benemérita Universidad Autónoma de Puebla

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María A. Fernández-Herrera

Benemérita Universidad Autónoma de Puebla

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Roxana Martínez-Pascual

Benemérita Universidad Autónoma de Puebla

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