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1.
Antioxidants (Basel) ; 10(1)2020 Dec 24.
Article in English | MEDLINE | ID: mdl-33374280

ABSTRACT

Resveratrol (RSV) is well known for its many beneficial activities, but its unfavorable physicochemical properties impair its effectiveness after systemic and topical administration; thus, several strategies have been investigated to improve RSV efficacy. With this aim, in this work, we synthesized a novel RSV triester with trolox, an analogue of vitamin E with strong antioxidant activity. The new RSV derivative (RSVTR) was assayed in vitro to evaluate its antioxidant and anti-glycation activity compared to RSV. RSVTR chemical stability was assessed at pH 2.0, 6.8, and 7.2 and different storage temperatures (5 °C, 22 °C, and 37 °C). An influence of pH stronger than that of temperature on RSVTR half-life values was pointed out, and RSVTR greatest stability was observed at pH 7.2 and 5 °C. RSVTR showed a lower antioxidant ability compared to RSV (determined by the oxygen radical absorbance capacity assay) while its anti-glycation activity (evaluated using the Maillard reaction) was significantly greater than that of RSV. The improved ability to inhibit the glycation process was attributed to a better interaction of RSVTR with albumin owing to its increased topological polar surface area value and H-bond acceptor number compared to RSV. Therefore, RSVTR could be regarded as a promising anti-glycation agent worthy of further investigations.

2.
Front Pharmacol ; 11: 708, 2020.
Article in English | MEDLINE | ID: mdl-32523529

ABSTRACT

Our study was aimed at assessing the retinal binding of a new synthetic Brilliant Blue G (BBG) derivative (pure benzyl-Brilliant Blue G; PBB) ophthalmic formulation, to improve vitreoretinal surgery procedure. Protein affinity of the new molecule was evaluated in vitro (cell-free assay) and in silico. Furthermore, an ex vivo model of vitreoretinal surgery was developed by using porcine eyes to assess the pharmacological profile of PBB, compared to commercial formulations based on BBG and methyl-BBG (Me-BBG). PBB showed a higher affinity for proteins (p < 0.05), compared to BBG and Me-BBG. In vitro and in silico studies demonstrated that the high selectivity of PBB could be related to high lipophilicity and binding affinity to fibronectin, the main component of the retinal internal limiting membrane (ILM). The PBB staining capabilities were evaluated in porcine eyes in comparison with BBG and Me-BBG. Forty microliters of each formulation were slowly placed over the retinal surface and removed after 30 s. After that, ILM peeling was carried out, and the retina collected. BBG, Me-BBG, and PBB quantification in ILM and retina tissues was carried out by HPLC analysis. PBB levels in the ILM were significantly (p < 0.05) higher compared to BBG and Me-BBG formulations. On the contrary, PBB showed a much lower (p < 0.05) distribution in retina (52 ng/mg tissue) compared to BBG and Me-BBG, in particular PBB levels were significantly (p < 0.05) lower. Therefore, the new synthetic Brilliant Blue derivative (PBB) showed a great ILM selectivity in comparison to underneath retinal layers. In conclusion, these findings had high translational impact with a tangible improving in ex vivo model of retinal surgery, suggesting a future use during surgical practice.

3.
J Med Chem ; 47(16): 3949-61, 2004 Jul 29.
Article in English | MEDLINE | ID: mdl-15267234

ABSTRACT

Understanding the molecular mechanisms governing albumin binding is a major challenge in absorption-distribution-metabolism-excretion prediction. To gain insight into this complex field, an ultracentrifugation method to measure the drug fraction bound to bovine serum albumin [%B(DAB)] is presented. The second part of the study shows the dependence of the experimental binding parameter on ionization and lipophilicity descriptors (pK(a) and log D(oct)(7.4) for a series of 14 structurally diverse drugs. Finally, a docking strategy is used to rationalize the findings; the results confirm the mostly nonspecific nature of the interaction of albumin with neutral ligands.


Subject(s)
Pharmaceutical Preparations/chemistry , Serum Albumin, Bovine/chemistry , Chromatography, Affinity , Hydrogen-Ion Concentration , Ions/chemistry , Models, Molecular , Molecular Conformation , Protein Binding , Quantitative Structure-Activity Relationship , Ultracentrifugation
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