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Biomedical subjects

J de Mendoza

Publications and source records attributed to J de Mendoza.

3 recordsLinked to original sources

A calix[4]arene ureidopeptide dimer self-assembled through two superposed hydrogen bond arrays.

Dimerization of calix[4]arene ureidopeptides is demonstrated for the first time. Two calix[4]arenes tetrasubstituted in the upper rim with -NHCONH(L)LeuNHC(8)H(17) (1) and -NHCONH(L)Leu(D)Leu-OMe (2) were prepared and studied by NMR, circular dicroism, and gel permeation chromatography. Compound 2 self-assembles through urea-urea hydrogen bonds, as well as by an additional set of hydrogen bonds provided by the peptide side chains, with participation of the ester carbonyls. The absence of such group in 1 causes the monomer structure to be favored in this case.

Journal Article↗

Toward an artifical acetylcholinesterase.

The methanolysis of choline p-nitrophenylcarbonate in chloroform containing 1% methanol is catalyzed with turnover by ditopic receptors 1 and 2, consisting of a calix[6]arene connected to a bicyclic guanidinium by means of a short spacer. The calix[6]arene subunit strongly binds to the trimethylammonium head group through cation-pi interactions, whereas the guanidinium moiety is deputed to stabilize through hydrogen bonding reinforced by electrostatic attraction the anionic tetrahedral intermediate resulting from methoxide addition to the ester carbonyl. The observed cholinesterase activity had been anticipated on the basis of the ability of the ditopic receptors 1 and 2 to bind strongly to the choline phosphate DOPC, which is a transition state analogue for the BAc2-type cleavage of choline esters.

Acetylcholinesterase↗

Autoencapsulation through intermolecular forces: a synthetic self-assembling spherical complex.

The synthesis and characterization of a system for the study of molecular recognition phenomena are described. The system involves a tetraurea molecule that is capable of assembly into various associated states through hydrogen bonding. In organic solvents, the dynamic transition between a low-ordered (aggregate) state and a highly ordered dimeric assembly can be induced by the introduction of smaller molecules of appropriate size and shape. These smaller molecules, such as benzene, adamantanes, and ferrocenes, act as guests that occupy the pseudospherical capsule formed by the dimeric host. Among various guests, those that best fill the cavity and offer chemical complementarity to the host are preferentially encapsulated.

Adamantane↗