Zobrazeno 1 - 10
of 38
pro vyhledávání: '"Eleni Alexandratou"'
Autor:
Annita Katopodi, Nikolaos Nikolaou, Vasiliki Kakokefalou, Eleni Alexandratou, Manolis Matzapetakis, Maria Zervou, Anastasia Detsi
Publikováno v:
Molecules, Vol 29, Iss 18, p 4398 (2024)
A ligand-free approach for the Suzuki-Miyaura cross coupling reaction using Natural Deep Eutectic Solvents (NaDES) towards coumarin analogs is described. A model reaction between the synthetically prepared 3-(4-acetyloxy-phenyl)-6-bromo-4-methyl-coum
Externí odkaz:
https://doaj.org/article/7e8a6c9cc264436db50bfe195ae355c3
Autor:
Eleni Kavetsou, Charalampos Tsoukalas-Koulas, Annita Katopodi, Alexandros Kalospyros, Eleni Alexandratou, Anastasia Detsi
Publikováno v:
Bioengineering, Vol 10, Iss 2, p 244 (2023)
In this work, the preparation of inclusion complexes, (ICs) using magnesium phthalocyanine (MgPc) and various cyclodextrins (β-CD, γ-CD, HP-β-CD, Me-β-CD), using the kneading method is presented. Dynamic light scattering (DLS) indicated that the
Externí odkaz:
https://doaj.org/article/f9845b55c96e48a0a229c12850716d49
Autor:
Efstathios Giannakopoulos, Annita Katopodi, Michail Rallis, Konstantinos Politopoulos, Eleni Alexandratou
Publikováno v:
Lasers in Medical Science. 38
Wound treatment, especially for chronic and infected wounds, has been a permanent socio-economical challenge. This study aimed to investigate the ability of red light at 661 nm to accelerate wound healing an in vitro wound model using 3T3 fibroblasts
Autor:
Apostolos Segkos, Eleni Alexandratou, Ilias Sakellis, Nikolaos Boukos, Spiros Gardelis, Konstantinos Kordatos, Christos Tsamis
Publikováno v:
Functional Materials Letters. 15
In this work, we investigate the photoluminescence mechanisms of N-doped, CQD-based nanocomposites, in the form of aqueous suspensions as well as the transition to thin films, in order to facilitate their use for solid-state applications. The product
Publikováno v:
Lasers in surgery and medicineREFERENCES. 54(2)
Background and objectives Photodynamic therapy (PDT) is a cancer treatment modality mediated by reactive oxygen species (ROS). However, the intracellular antioxidant defense system antagonizes PDT-generated ROS, impeding PDT efficacy. This study aime
Autor:
Polyxeni Alexiou, Kostas Politopoulos, M Zachariadis, Barbara Mavroidi, Maria Pelecanou, K Koutsonikoli, Marina Sagnou, Eleni Alexandratou, K T Kazantzis
Publikováno v:
Photochemicalphotobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology. 19(2)
Photodynamic therapy (PDT) is a minimally invasive approach to treat various forms of cancer, based on the ability of certain non-toxic molecules (photosensitizers) to generate reactive oxygen species (ROS) after excitation by light of a certain wave
Autor:
Marina Sagnou, Eleni Alexandratou, Maria Pelecanou, Antonios G. Hatzidimitriou, E. Halevas, Konstantinos Politopoulos, Barbara Mavroidi, Maria Arvanitidou
Publikováno v:
Journal of Molecular Structure. 1240:130485
The synthesis, detailed structural and physicochemical characterization of a novel Ga(III)-curcumin complex with the ancillary aromatic chelator 1,10-phenanthroline is presented herein. The complex constitutes the only crystallographically characteri
Autor:
Antonios G. Hatzidimitriou, Dimitris Matiadis, Katarzyna E. Nowak, Marina Sagnou, Eleni Alexandratou, Raffaello Papadakis
Publikováno v:
Journal of Molecular Liquids. 331:115737
In this work we report the synthesis of two fluorescent 2-pyrazoline derivatives exhibiting remarkable (fluoro)solvatochromic behavior. The pyrazolines were synthesized in one step from the corresponding monocarbonyl curcuminoids and 4-hydrazinobenzo
Publikováno v:
Scanning, Vol 2019 (2019)
Scanning
Scanning
Atomic force microscopy (AFM) is an easy-to-use, powerful, high-resolution microscope that allows the user to image any surface and under any aqueous condition. AFM has been used in the investigation of the structural and mechanical properties of a w
Publikováno v:
Scanning
Scanning, Vol 2019 (2019)
Scanning, Vol 2019 (2019)