178486-13-0Relevant academic research and scientific papers
Tuning the activity of iminosugars: novel N-alkylated deoxynojirimycin derivatives as strong BuChE inhibitors
Ahuja-Casarín, Ana I.,Merino-Montiel, Penélope,Vega-Baez, José Luis,Montiel-Smith, Sara,Fernandes, Miguel X.,Lagunes, Irene,Maya, Inés,Padrón, José M.,López, óscar,Fernández-Bola?os, José G.
, p. 138 - 146 (2021)
We have designed unprecedented cholinesterase inhibitors based on 1-deoxynojirimycin as potential anti-Alzheimer’s agents. Compounds are comprised of three key structural motifs: the iminosugar, for interaction with cholinesterase catalytic anionic site (
Straightforward access to novel mitochondriotropics derived from 2-arylethanol as potent and selective antiproliferative agents
Hicke, Francisco J.,Puerta, Adrián,Dini?, Jelena,Pe?i?, Milica,Padrón, José M.,López, óscar,Fernández-Bola?os, José G.
, (2021/12/01)
The necessity for developing novel cytostatic agents with improved activities and reduced side-effects to tackle cancer prompted us to investigate mitochondria-targeted compounds, an approach that is gaining attention for the selective transportation of cytotoxic agents. We envisioned the possibility of conjugating a phenethyl alcohol motif, decorated with a series of phenol-based substituents on the aryl moiety, with a triphenyl phosphonium scaffold (a mitochondria-directed vector), through a hydrocarbon chain of different lengths. Thus, such compounds that incorporate the phenethyl skeleton can be considered as masked phenolic compounds derived from relevant natural counterparts found in olive tree (e.g. tyrosol, hydroxytyrosol). Title compounds exhibited very strong in vitro antiproliferative activities against the panel of six human tumor cell lines tested, with GI50 values ranging from the nanomolar (0.026 ± 0.010 μM for 36) to the submicromolar range in most of the cases; this represents an improvement of up to 350-fold compared to classical chemotherapeutic agents, like 5-fluorouracil or cisplatin. Interestingly, decrease in the linker length led to an increase of GI50 values against non-tumor cells, thus allowing a remarkable improvement of selectivity (SI up to 269). The very promising antiproliferative activities prompted us to further investigate their behaviour against multidrug resistant cell lines (MDR). The results indicated a reduced sensitivity of the multidrug resistant cells to compounds, probably due to P-gp-mediated efflux of these antiproliferative agents. Interestingly, activities were completely restored to the same levels by co-administration of tariquidar, a well-known inhibitor of P-gp. Flow cytometry analysis on sensitive cell lines revealed a decrease in the percentage of cells in G1 phase accompanied by increase in S and G2/M phases. In addition, a significant increase in subG1 area, was observed. These results are compatible with the necrotic and apoptotic cell death detected in the Annexin V assay, and with the depolarization of the mitochondria membrane. Thus, the new mitochondriotropic agents reported herein can be considered as promising antiproliferative agents, endowed with remarkable potency and selectivity, including MDR cells, upon co-administration with a pump-efflux inhibitor.
Tacrine-O-protected phenolics heterodimers as multitarget-directed ligands against Alzheimer's disease: Selective subnanomolar BuChE inhibitors
Roldán-Pe?a, Jesús M.,Romero-Real,Hicke, Javier,Maya, Inés,Franconetti, Antonio,Lagunes,Padrón, José M.,Petralla, Sabrina,Poeta, Eleonora,Naldi, Marina,Bartolini, Manuela,Monti, Barbara,Bolognesi, Maria L.,López, óscar,Fernández-Bola?os, José G.
, (2019/08/02)
Concerned by the devastating effects of Alzheimer's disease, and the lack of effective drugs, we have carried out the design of a series of tacrine-phenolic heterodimers in order to tackle the multifactorial nature of the disease. Hybridization of both pharmacophores involved the modification of the nature (imino, amino, ether) and the length of the tether, together with the type (hydroxy, methoxy, benzyloxy), number and position of the substituents on the aromatic residue. Title compounds were found to be strong and selective inhibitors of human BuChE (from low nanomolar to subnanomolar range), an enzyme that becomes crucial in the more advanced stages of the disease. The lead compound, bearing an ether-type tether, had an IC50 value of 0.52 nM against human BuChE, and a selectivity index of 323, with an 85-fold increase of activity compared to parent tacrine; key interactions were analysed using molecular modelling. Moreover, it also inhibited the self-aggregation of Aβ42, lacking neurotoxicity up to 5 μM concentration, and showed neuroprotective activity in primary rat neurons in a serum and K+ deprivation model, widely employed for reproducing neuronal injury and senescence. Moreover, low hepatoxicity effects and complete stability under physiological conditions were found for that compound. So, overall, our lead compound can be considered as a promising multitarget-directed ligand against Alzheimer's disease, and a good candidate for developing new drugs.
DERIVATIVES OF 2-AMINO-1,2,3,4-TETRAHYDRO-NAPHTHALENE ACTIVE ON THE CARDIOVASCULAR SYSTEM
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, (2008/06/13)
Compounds of formula (I) wherein R, R', R'', R1, R2, R3, R4, R5, R6, X, Y, m, n and p have the meanings reported in the description; and their pharmaceutically acceptable salts are described. The compounds of formula I are useful in the treatment
Derivatives of 2-amino-1,2,3,4-tetrahydronaphthalene active on the cardiovascular system
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, (2008/06/13)
Compounds of formula STR1 wherein R, R', R", R1, R2, R3, R4, R5, R6, X, Y, m, n and p have the meanings reported in the description; and their pharmaceutically acceptable salts are described. The compounds of formula I are useful in the treatment of arterial hypertension and congestive heart failure, of renal failure, of peripheral arteriopathies, of cerebrovascular insufficiencies and of ischemic cardiopathy.
