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1.
J Am Chem Soc ; 140(30): 9581-9586, 2018 08 01.
Article in English | MEDLINE | ID: mdl-29989808

ABSTRACT

Poisoning and accidental oral intoxication are major health problems worldwide. Considering the insufficient efficacy of the currently available detoxification treatments, a pioneering oral detoxifying adsorbent agent based on a single biocompatible metal-organic framework (MOF) is here proposed for the efficient decontamination of drugs commonly implicated in accidental or voluntary poisoning. Furthermore, the in vivo toxicity and biodistribution of a MOF via oral administration have been investigated for the first time. Orally administered upon a salicylate overdose, this MOF is able to reduce the salicylate gastrointestinal absorption and toxicity more than 40-fold (avoiding histological damage) while exhibiting exceptional gastrointestinal stability (<9% degradation), poor intestinal permeation, and safety.


Subject(s)
Antidotes/therapeutic use , Aspirin/poisoning , Drug Overdose/prevention & control , Metal-Organic Frameworks/therapeutic use , Administration, Oral , Adsorption , Animals , Antidotes/administration & dosage , Antidotes/metabolism , Antidotes/toxicity , Aspirin/blood , Aspirin/chemistry , Aspirin/urine , Female , Gastrointestinal Absorption/drug effects , Jejunum/pathology , Liver/pathology , Metal-Organic Frameworks/administration & dosage , Metal-Organic Frameworks/metabolism , Metal-Organic Frameworks/toxicity , Rats, Wistar , Stomach/pathology , Tissue Distribution
2.
J Surfactants Deterg ; 16: 631-663, 2013.
Article in English | MEDLINE | ID: mdl-23946640

ABSTRACT

The minimum interfacial tension occurrence along a formulation scan at the so-called optimum formulation is discussed to be related to the interfacial curvature. The attained minimum tension is inversely proportional to the domain size of the bicontinuous microemulsion and to the interfacial layer rigidity, but no accurate prediction is available. The data from a very simple ternary system made of pure products accurately follows the correlation for optimum formulation, and exhibit a linear relationship between the performance index as the logarithm of the minimum tension at optimum, and the formulation variables. This relation is probably too simple when the number of variables is increased as in practical cases. The review of published data for more realistic systems proposed for enhanced oil recovery over the past 30 years indicates a general guidelines following Winsor's basic studies concerning the surfactant-oil-water interfacial interactions. It is well known that the major performance benefits are achieved by blending amphiphilic species at the interface as intermolecular or intramolecular mixtures, sometimes in extremely complex formulations. The complexity is such that a good knowledge of the possible trends and an experienced practical know-how to avoid trial and error are important for the practitioner in enhanced oil recovery.

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