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1.
Int J Mol Sci ; 25(8)2024 Apr 16.
Article in English | MEDLINE | ID: mdl-38673967

ABSTRACT

Breast cancer is one of the leading causes of death in the female population because of the resistance of cancer cells to many anticancer drugs used. Curcumin has cytotoxic activities against breast cancer cells, although it has limited use due to its poor bioavailability and rapid metabolic elimination. The synthesis of metal complexes of curcumin and curcuminoids is a relevant topic in the search for more active and selective derivatives of these molecular scaffolds. However, solubility and bioavailability are concomitant disadvantages of these types of molecules. To overcome such drawbacks, the preparation of inclusion complexes offers a chemical and pharmacologically safe option for improving the aqueous solubility of organic molecules. Herein, we describe the preparation of the inclusion complex of dimethoxycurcumin magnesium complex (DiMeOC-Mg, (4)) with beta-cyclodextrin (DiMeOC-Mg-BCD, (5)) in the stoichiometric relationship 1:1. This new inclusion complex's solubility in aqueous media phosphate buffer saline (PBS) was improved by a factor of 6x over the free metal complex (4). Furthermore, 5 affects cell metabolic rate, cell morphology, cell migration, induced apoptosis, and downregulation of the matrix metalloproteinase-2 (MMP-2) and matrix metalloproteinase-9 (MMP-9), interleukin-6 (IL-6), and signal transducer and activator of transcription-3 (STAT3) expression levels on MD Anderson metastasis breast-231 cancer (MDA-MB-231) cell lines. Results of an antitumor assay in an in ovo model showed up to 30% inhibition of tumor growth for breast cancer (MDA-MB-231) when using (5) (0.650 mg/kg dose) and 17.29% inhibition with the free homoleptic metal complex (1.5 mg/kg dose, (4)). While the formulation of inclusion complexes from metal complexes of curcuminoids demonstrates its usefulness in improving the solubility and bioavailability of these metallodrugs, the new compound (5) exhibits excellent potential for use as a therapeutic agent in the battle against breast cancer.


Subject(s)
Antineoplastic Agents , Curcumin , Curcumin/analogs & derivatives , Magnesium , beta-Cyclodextrins , beta-Cyclodextrins/chemistry , Curcumin/pharmacology , Curcumin/chemistry , Curcumin/pharmacokinetics , Humans , Animals , Antineoplastic Agents/pharmacology , Antineoplastic Agents/chemistry , Magnesium/chemistry , Apoptosis/drug effects , Female , Cell Line, Tumor , STAT3 Transcription Factor/metabolism , Breast Neoplasms/drug therapy , Breast Neoplasms/pathology , Breast Neoplasms/metabolism , Cell Movement/drug effects , Solubility , Coordination Complexes/pharmacology , Coordination Complexes/chemistry , Coordination Complexes/chemical synthesis , Chick Embryo , Matrix Metalloproteinase 9/metabolism
2.
Int J Mol Sci ; 24(22)2023 Nov 15.
Article in English | MEDLINE | ID: mdl-38003515

ABSTRACT

The crystal structure determination of metal complexes of curcuminoids is a relevant topic to assess their unequivocal molecular structure. We report herein the first two X-ray crystal structures of homoleptic metal complexes of a curcuminoid, namely Dimethoxycurcumin (DiMeOC), with gallium and indium. Such successful achievement can be attributed to the suppression of interactions from the phenolic groups, which favor an appropriate molecular setup, rendering Dimethoxycurcumin gallium ((DiMeOC)2-Ga) and Dimethoxycurcumin indium ((DiMeOC)3-In) crystals. Surprisingly, the conformation of ligands in the crystal structures shows differences in each metal complex. Thus, the ligands in the (DiMeOC)2-Ga complex show two different conformers in the two molecules of the asymmetric unit. However, the ligands in the (DiMeOC)3-In complex exhibit three different conformations within the same molecule of the asymmetric unit, constituting the first such case described for an ML3 complex. The cytotoxic activity of the (DiMeOC)2-Ga complex is 4-fold higher than cisplatin against the K562 cell line and has comparable activity towards U251 and PC-3 cell lines. Interestingly, this complex exhibit three times lesser toxicity than cisplatin and even slightly lesser cytotoxicity than curcumin itself.


Subject(s)
Antineoplastic Agents , Coordination Complexes , Gallium , Gallium/pharmacology , Gallium/chemistry , Coordination Complexes/pharmacology , Coordination Complexes/chemistry , Cisplatin , Indium/chemistry , Diarylheptanoids , Cell Line, Tumor , Ligands , Antineoplastic Agents/pharmacology
3.
Molecules ; 28(16)2023 Aug 12.
Article in English | MEDLINE | ID: mdl-37630284

ABSTRACT

The first single crystal structure of the homoleptic copper (II) ML2 complex (M=Cu (II), L = curcumin) was obtained and its structure was elucidated by X-ray diffraction showing a square planar geometry, also confirmed by EPR. The supramolecular arrangement is supported by C-H···O interactions and the solvent (MeOH) plays an important role in stabilizing the crystal packing Crystallinity was additionally assessed by XRD patterns. The log P value of the complex (2.3 ± 0.15) was determined showing the improvement in water solubility. The cytotoxic activity of the complex against six cancer cell lines substantially surpasses that of curcumin itself, and it is particularly selective against leukemia (K562) and human glioblastoma (U251) cell lines, with similar antioxidant activity to BHT. This constitutes the first crystal structure of pristine curcumin complexed with a metal ion.

4.
Acta Med Centro ; 10(2)abr.-jun. 2016.
Article in Spanish | CUMED | ID: cum-66652

ABSTRACT

El presente trabajo tiene como objetivo argumentar el modelo atómico de Bohr y el desarrollo de la nanociencia en el cuidado de la salud. La nanotecnología constituye un ensamblaje interdisciplinario de varios campos de las ciencias naturales que están altamente especializados. Alcanzar la estructura del material deseado y las configuraciones de ciertos átomos hacen jugar a la Química un papel importante; en Medicina el desarrollo específico dirigido a nanopartículas promete ayuda al tratamiento de ciertas enfermedades. Las enfermedades pueden ser identificadas al utilizar biomarcadores que interactúan con las moléculas relacionadas con la enfermedad, presentes en la sangre, en los fluidos corporales o en los tejidos. En la actualidad los métodos de análisis genético, de análisis proteómico y los nanodispositivos son los pilares para la prevención, la detección, el diagnóstico por imagen, la terapéutica multifuncional y la mejora de la calidad de vida de los pacientes afectados por cáncer. Hay una creciente necesidad de mejorar la tecnología y la instrumentación relacionada con dichos métodos para realizar diagnósticos con mayor velocidad, resolución y sensibilidad(AU)


Subject(s)
Nanotechnology , Nanomedicine , Disease Prevention
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