Cargando…

Data on peptidyl platform-based anticancer drug synthesis and triton-x-based micellar clusters (MCs) self-assembly peculiarities for enhanced solubilization, encapsulation of hydrophobic compounds and their interaction with HeLa cells

The data presented here refer to a research article entitled “Self-Assembled Micellar Clusters Based on Triton-X-family Surfactants for Enhanced Solubilization, Encapsulation, Proteins Permeability Control, and Anticancer Drug Delivery” Solomonov et al., 2019. The present article provides the Genera...

Descripción completa

Detalles Bibliográficos
Autores principales: Solomonov, Alexey V., Marfin, Yuriy S., Rumyantsev, Evgeniy V., Ragozin, Elena, Zahavi, Talia Shekhter, Gellerman, Gary, Tesler, Alexander B., Muench, Falk, Kumagai, Akiko, Miyawaki, Atsushi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6556622/
https://www.ncbi.nlm.nih.gov/pubmed/31198832
http://dx.doi.org/10.1016/j.dib.2019.104052
_version_ 1783425355583848448
author Solomonov, Alexey V.
Marfin, Yuriy S.
Rumyantsev, Evgeniy V.
Ragozin, Elena
Zahavi, Talia Shekhter
Gellerman, Gary
Tesler, Alexander B.
Muench, Falk
Kumagai, Akiko
Miyawaki, Atsushi
author_facet Solomonov, Alexey V.
Marfin, Yuriy S.
Rumyantsev, Evgeniy V.
Ragozin, Elena
Zahavi, Talia Shekhter
Gellerman, Gary
Tesler, Alexander B.
Muench, Falk
Kumagai, Akiko
Miyawaki, Atsushi
author_sort Solomonov, Alexey V.
collection PubMed
description The data presented here refer to a research article entitled “Self-Assembled Micellar Clusters Based on Triton-X-family Surfactants for Enhanced Solubilization, Encapsulation, Proteins Permeability Control, and Anticancer Drug Delivery” Solomonov et al., 2019. The present article provides the General Procedure for clusterization of Triton-X-based micelles and the effect of (i) metal ion, surfactant, and chelator concentration on the developed clusters formation, (ii) surfactant-chelator relation change, (iii) metal ion-micelles concertation ratio variation, (iv) metal ion replacement, (v) solvent replacement, (vi) kinetics of clusters formation, (vii) hydrophobic fluorescent dye (Coumarin 6) solubilization in aqueous MCs media, (viii) novel anticancer peptidyl drug synthesis and characterization and (ix) the viability of HeLa cells with and without the presence of drug-free Triton-X-based family MCs. These data provide additional insights useful for understanding all aspects of the micellar clusters formation, optimization, and control.
format Online
Article
Text
id pubmed-6556622
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-65566222019-06-13 Data on peptidyl platform-based anticancer drug synthesis and triton-x-based micellar clusters (MCs) self-assembly peculiarities for enhanced solubilization, encapsulation of hydrophobic compounds and their interaction with HeLa cells Solomonov, Alexey V. Marfin, Yuriy S. Rumyantsev, Evgeniy V. Ragozin, Elena Zahavi, Talia Shekhter Gellerman, Gary Tesler, Alexander B. Muench, Falk Kumagai, Akiko Miyawaki, Atsushi Data Brief Chemistry The data presented here refer to a research article entitled “Self-Assembled Micellar Clusters Based on Triton-X-family Surfactants for Enhanced Solubilization, Encapsulation, Proteins Permeability Control, and Anticancer Drug Delivery” Solomonov et al., 2019. The present article provides the General Procedure for clusterization of Triton-X-based micelles and the effect of (i) metal ion, surfactant, and chelator concentration on the developed clusters formation, (ii) surfactant-chelator relation change, (iii) metal ion-micelles concertation ratio variation, (iv) metal ion replacement, (v) solvent replacement, (vi) kinetics of clusters formation, (vii) hydrophobic fluorescent dye (Coumarin 6) solubilization in aqueous MCs media, (viii) novel anticancer peptidyl drug synthesis and characterization and (ix) the viability of HeLa cells with and without the presence of drug-free Triton-X-based family MCs. These data provide additional insights useful for understanding all aspects of the micellar clusters formation, optimization, and control. Elsevier 2019-05-24 /pmc/articles/PMC6556622/ /pubmed/31198832 http://dx.doi.org/10.1016/j.dib.2019.104052 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Chemistry
Solomonov, Alexey V.
Marfin, Yuriy S.
Rumyantsev, Evgeniy V.
Ragozin, Elena
Zahavi, Talia Shekhter
Gellerman, Gary
Tesler, Alexander B.
Muench, Falk
Kumagai, Akiko
Miyawaki, Atsushi
Data on peptidyl platform-based anticancer drug synthesis and triton-x-based micellar clusters (MCs) self-assembly peculiarities for enhanced solubilization, encapsulation of hydrophobic compounds and their interaction with HeLa cells
title Data on peptidyl platform-based anticancer drug synthesis and triton-x-based micellar clusters (MCs) self-assembly peculiarities for enhanced solubilization, encapsulation of hydrophobic compounds and their interaction with HeLa cells
title_full Data on peptidyl platform-based anticancer drug synthesis and triton-x-based micellar clusters (MCs) self-assembly peculiarities for enhanced solubilization, encapsulation of hydrophobic compounds and their interaction with HeLa cells
title_fullStr Data on peptidyl platform-based anticancer drug synthesis and triton-x-based micellar clusters (MCs) self-assembly peculiarities for enhanced solubilization, encapsulation of hydrophobic compounds and their interaction with HeLa cells
title_full_unstemmed Data on peptidyl platform-based anticancer drug synthesis and triton-x-based micellar clusters (MCs) self-assembly peculiarities for enhanced solubilization, encapsulation of hydrophobic compounds and their interaction with HeLa cells
title_short Data on peptidyl platform-based anticancer drug synthesis and triton-x-based micellar clusters (MCs) self-assembly peculiarities for enhanced solubilization, encapsulation of hydrophobic compounds and their interaction with HeLa cells
title_sort data on peptidyl platform-based anticancer drug synthesis and triton-x-based micellar clusters (mcs) self-assembly peculiarities for enhanced solubilization, encapsulation of hydrophobic compounds and their interaction with hela cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6556622/
https://www.ncbi.nlm.nih.gov/pubmed/31198832
http://dx.doi.org/10.1016/j.dib.2019.104052
work_keys_str_mv AT solomonovalexeyv dataonpeptidylplatformbasedanticancerdrugsynthesisandtritonxbasedmicellarclustersmcsselfassemblypeculiaritiesforenhancedsolubilizationencapsulationofhydrophobiccompoundsandtheirinteractionwithhelacells
AT marfinyuriys dataonpeptidylplatformbasedanticancerdrugsynthesisandtritonxbasedmicellarclustersmcsselfassemblypeculiaritiesforenhancedsolubilizationencapsulationofhydrophobiccompoundsandtheirinteractionwithhelacells
AT rumyantsevevgeniyv dataonpeptidylplatformbasedanticancerdrugsynthesisandtritonxbasedmicellarclustersmcsselfassemblypeculiaritiesforenhancedsolubilizationencapsulationofhydrophobiccompoundsandtheirinteractionwithhelacells
AT ragozinelena dataonpeptidylplatformbasedanticancerdrugsynthesisandtritonxbasedmicellarclustersmcsselfassemblypeculiaritiesforenhancedsolubilizationencapsulationofhydrophobiccompoundsandtheirinteractionwithhelacells
AT zahavitaliashekhter dataonpeptidylplatformbasedanticancerdrugsynthesisandtritonxbasedmicellarclustersmcsselfassemblypeculiaritiesforenhancedsolubilizationencapsulationofhydrophobiccompoundsandtheirinteractionwithhelacells
AT gellermangary dataonpeptidylplatformbasedanticancerdrugsynthesisandtritonxbasedmicellarclustersmcsselfassemblypeculiaritiesforenhancedsolubilizationencapsulationofhydrophobiccompoundsandtheirinteractionwithhelacells
AT tesleralexanderb dataonpeptidylplatformbasedanticancerdrugsynthesisandtritonxbasedmicellarclustersmcsselfassemblypeculiaritiesforenhancedsolubilizationencapsulationofhydrophobiccompoundsandtheirinteractionwithhelacells
AT muenchfalk dataonpeptidylplatformbasedanticancerdrugsynthesisandtritonxbasedmicellarclustersmcsselfassemblypeculiaritiesforenhancedsolubilizationencapsulationofhydrophobiccompoundsandtheirinteractionwithhelacells
AT kumagaiakiko dataonpeptidylplatformbasedanticancerdrugsynthesisandtritonxbasedmicellarclustersmcsselfassemblypeculiaritiesforenhancedsolubilizationencapsulationofhydrophobiccompoundsandtheirinteractionwithhelacells
AT miyawakiatsushi dataonpeptidylplatformbasedanticancerdrugsynthesisandtritonxbasedmicellarclustersmcsselfassemblypeculiaritiesforenhancedsolubilizationencapsulationofhydrophobiccompoundsandtheirinteractionwithhelacells