Zobrazeno 1 - 10
of 19
pro vyhledávání: '"David, Vetvicka"'
Publikováno v:
Life, Vol 13, Iss 2, p 305 (2023)
This updated review aims to describe the current status in the development of liposome-based systems for the targeted delivery of phthalocyanines for photodynamic therapy (PDT). Although a number of other drug delivery systems (DDS) can be found in t
Externí odkaz:
https://doaj.org/article/6dead8b87881453da0771b5ea1d24f10
Autor:
David Vetvicka, Ladislav Sivak, Yu Hang, David Oupický, Raj Kumar, Rubayat Islam Khan, Chinmay M. Jogdeo
Publikováno v:
Journal of Controlled Release. 331:246-259
Despite intensive research efforts and development of numerous new anticancer drugs and treatment strategies over the past decades, there has been only very limited improvement in overall patient survival and in effective treatment options for pancre
Autor:
Michal Zabrodsky, Pavla Pouckova, Martina Kabesova, Jiri Benes, Tomas Olejar, Jan Bouček, David Vetvicka
Publikováno v:
Anticancer Research. 40:349-356
BACKGROUND/AIM Follicle-stimulating hormone receptor (FSHr), expressed on endothelial cells of vessels in different malignant tumors, has been recently investigated as a potential pan-receptor of cancer treatment. However, the expression of this rece
Publikováno v:
Anticancer Research. 39:3323-3339
The focus of this review is to describe the state-of-art in the development of innovative drug delivery systems for phthalocyanines as photosensitizers for photodynamic therapy (PDT). PDT is a medical treatment combining photosensitizers (PSs) activa
Autor:
Jiri Panek, David Vetvicka, Michaela Nováková, Sergey K. Filippov, Hana Macková, Jan Kučka, Martin Hruby, Karel Ulbrich
Publikováno v:
Macromolecular Bioscience. 10:916-924
Thermoresponsive polymer micelles are promising drug and radionuclide carriers with a strong passive targeting effect into solid tumors. We have synthesized ABA triblock copolymers poly[2-methyl-2-oxazoline-block-(2-isopropyl-2-oxazoline-co-2-butyl-2
Autor:
Marek Kovar, Miroslav Vetrik, Ondrej Hovorka, Blanka Rihova, Tomáš Etrych, David Vetvicka, Martin Hruby, Lubomir Kovar, Karel Ulbrich
Publikováno v:
Bioconjugate Chemistry. 20:2090-2097
The main limitation of contemporary anticancer chemotherapy remains to be the insufficient specificity of the drugs for tumor tissue, which decreases the maximum tolerated dose due to severe side effects. Micellar drug delivery systems based on amphi
Autor:
Göran Karlsson, Karel Ulbrich, Jan Kučka, Miroslav Vetrik, Sergey K. Filippov, David Vetvicka, Cestmir Konak, Hana Macková, Martin Hruby, Blanka Rihova, Katarina Edwards
Publikováno v:
Macromolecular Bioscience. 9:1016-1027
Novel polymer micelles, prepared by self-assembling thermoresponsive poly(N-isopropylacrylamide)-graft-poly[N-(2-hydroxypropyl)methacrylamide] copolymers with hydrolytically degradable N-glycosylamine groups between the polymer blocks are proposed fo
Autor:
Tomas, Olejar, David, Vetvicka, Marie, Zadinova, Pavla, Pouckova, Jaromir, Kukal, Petr, Jezek, Radoslav, Matej
Publikováno v:
Anticancer research. 34(7)
We investigated differences of metastatic spread of normal proteinase-activated receptor-2 (Par2+/+) melanoma B16 in Par2-/- (knock-out) animals compared to C57Bl6 mice.Nine knock-out mice B6.Cg-F2rl1tm1Mslb/J (Par2-/-) and nine C57Bl6/J controls wer
Autor:
Karol, Sutoris, Jan, Rakusan, Marie, Karaskova, Jana, Mattova, Jiri, Benes, Milos, Nekvasil, Petr, Jezek, Marie, Zadinova, Pavla, Pouckova, David, Vetvicka
Publikováno v:
Anticancer research. 33(4)
Clinically-approved anticancer photodynamic therapy (PDT) is now extensively studied for various cancer diagnoses. We focused on the treatment efficacy of topical administration of hydroxy-aluminum phthalocyanine (AlOH-PC) entrapped in liposomes agai
Ellipticine-aimed polymer-conjugated auger electron emitter: multistage organelle targeting approach
Autor:
Martin Hruby, Lubomir Kovar, David Vetvicka, Martin Studenovsky, Blanka Rihova, Ondrej Sedlacek, Karel Ulbrich, Jan Kučka
Publikováno v:
Bioconjugate chemistry. 22(6)
Radioactive decay of some radionuclides produces a shower of Auger electrons, potent ionizing radiation within a very short range in living tissue (typically ca. 100 nm). Therefore, they must be brought to DNA-containing cell compartments and prefere