Electrospun Poly(acrylic acid-<i>co</i>-4-styrene sulfonate) as Potential Drug-Eluting Scaffolds for Targeted Chemotherapeutic Delivery Systems on Gastric (AGS) and Breast (MDA-Mb-231) Cancer Cell Lines

Potential drug-eluting scaffolds of electrospun poly(acrylic acid-<i>co</i>-styrene sulfonate) P(AA-<i>co</i>-SS) in clonogenic assays using tumorigenic gastric and ovarian cancer cells were tested in vitro. Electrospun polymer nanofiber (EPnF) meshes of PAA and PSSNa homo- a...

Full description

Bibliographic Details
Main Authors: Andrónico Neira-Carrillo, Ignacio A. Zárate, Eddie Nieto, Nicole Butto-Miranda, Lorena Lobos-González, Matias Del Campo-Smith, Daniel A. Palacio, Bruno F. Urbano
Format: Article
Language:English
Published: MDPI AG 2022-11-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/12/21/3903
_version_ 1827645860181180416
author Andrónico Neira-Carrillo
Ignacio A. Zárate
Eddie Nieto
Nicole Butto-Miranda
Lorena Lobos-González
Matias Del Campo-Smith
Daniel A. Palacio
Bruno F. Urbano
author_facet Andrónico Neira-Carrillo
Ignacio A. Zárate
Eddie Nieto
Nicole Butto-Miranda
Lorena Lobos-González
Matias Del Campo-Smith
Daniel A. Palacio
Bruno F. Urbano
author_sort Andrónico Neira-Carrillo
collection DOAJ
description Potential drug-eluting scaffolds of electrospun poly(acrylic acid-<i>co</i>-styrene sulfonate) P(AA-<i>co</i>-SS) in clonogenic assays using tumorigenic gastric and ovarian cancer cells were tested in vitro. Electrospun polymer nanofiber (EPnF) meshes of PAA and PSSNa homo- and P(AA-<i>co</i>-SS) copolymer composed of 30:70, 50:50, 70:30 acrylic acid (AA) and sodium 4-styrene sulfonate (SSNa) units were performed by electrospinning (ES). The synthesis, structural and morphological characterization of all EPnF meshes were analyzed by optical and electron microscopy (SEM-EDS), infrared spectroscopy (FTIR), contact angle, and X-ray diffraction (XRD) measurements. This study shows that different ratio of AA and SSNa of monomers in P(AA-<i>co</i>-SS) EPnF play a crucial role in clonogenic in vitro assays. We found that 50:50 P(AA-<i>co</i>-SS) EPnF mesh loaded with antineoplastic drugs can be an excellent suppressor of growth-independent anchored capacities in vitro assays and a good subcutaneous drug delivery system for chemotherapeutic medication in vivo model for surgical resection procedures in cancer research.
first_indexed 2024-03-09T18:47:03Z
format Article
id doaj.art-7c49eeb4ffd4496495d77f211b1acd0f
institution Directory Open Access Journal
issn 2079-4991
language English
last_indexed 2024-03-09T18:47:03Z
publishDate 2022-11-01
publisher MDPI AG
record_format Article
series Nanomaterials
spelling doaj.art-7c49eeb4ffd4496495d77f211b1acd0f2023-11-24T06:11:06ZengMDPI AGNanomaterials2079-49912022-11-011221390310.3390/nano12213903Electrospun Poly(acrylic acid-<i>co</i>-4-styrene sulfonate) as Potential Drug-Eluting Scaffolds for Targeted Chemotherapeutic Delivery Systems on Gastric (AGS) and Breast (MDA-Mb-231) Cancer Cell LinesAndrónico Neira-Carrillo0Ignacio A. Zárate1Eddie Nieto2Nicole Butto-Miranda3Lorena Lobos-González4Matias Del Campo-Smith5Daniel A. Palacio6Bruno F. Urbano7Department of Biological and Animal Sciences, Faculty of Veterinary and Animal Sciences, University of Chile, Santa Rosa 11735, La Pintana, Santiago 8820808, ChileDepartment of Biological and Animal Sciences, Faculty of Veterinary and Animal Sciences, University of Chile, Santa Rosa 11735, La Pintana, Santiago 8820808, ChileDepartment of Biological and Animal Sciences, Faculty of Veterinary and Animal Sciences, University of Chile, Santa Rosa 11735, La Pintana, Santiago 8820808, ChileDepartment of Biological and Animal Sciences, Faculty of Veterinary and Animal Sciences, University of Chile, Santa Rosa 11735, La Pintana, Santiago 8820808, ChileAdvanced Center for Chronic Diseases (ACCDIS), Santiago 380492, ChileAdvanced Center for Chronic Diseases (ACCDIS), Santiago 380492, ChileDepartment of Polymer Chemistry, Faculty of Chemical Science, University of Concepción, Concepción 3349001, ChileDepartment of Polymer Chemistry, Faculty of Chemical Science, University of Concepción, Concepción 3349001, ChilePotential drug-eluting scaffolds of electrospun poly(acrylic acid-<i>co</i>-styrene sulfonate) P(AA-<i>co</i>-SS) in clonogenic assays using tumorigenic gastric and ovarian cancer cells were tested in vitro. Electrospun polymer nanofiber (EPnF) meshes of PAA and PSSNa homo- and P(AA-<i>co</i>-SS) copolymer composed of 30:70, 50:50, 70:30 acrylic acid (AA) and sodium 4-styrene sulfonate (SSNa) units were performed by electrospinning (ES). The synthesis, structural and morphological characterization of all EPnF meshes were analyzed by optical and electron microscopy (SEM-EDS), infrared spectroscopy (FTIR), contact angle, and X-ray diffraction (XRD) measurements. This study shows that different ratio of AA and SSNa of monomers in P(AA-<i>co</i>-SS) EPnF play a crucial role in clonogenic in vitro assays. We found that 50:50 P(AA-<i>co</i>-SS) EPnF mesh loaded with antineoplastic drugs can be an excellent suppressor of growth-independent anchored capacities in vitro assays and a good subcutaneous drug delivery system for chemotherapeutic medication in vivo model for surgical resection procedures in cancer research.https://www.mdpi.com/2079-4991/12/21/3903electrospun fiberselectrospinningpoly(acrylic acid-<i>co</i>-styrene sulfonate)gastric and breast cancer cellsclonogenic assaypolymers
spellingShingle Andrónico Neira-Carrillo
Ignacio A. Zárate
Eddie Nieto
Nicole Butto-Miranda
Lorena Lobos-González
Matias Del Campo-Smith
Daniel A. Palacio
Bruno F. Urbano
Electrospun Poly(acrylic acid-<i>co</i>-4-styrene sulfonate) as Potential Drug-Eluting Scaffolds for Targeted Chemotherapeutic Delivery Systems on Gastric (AGS) and Breast (MDA-Mb-231) Cancer Cell Lines
Nanomaterials
electrospun fibers
electrospinning
poly(acrylic acid-<i>co</i>-styrene sulfonate)
gastric and breast cancer cells
clonogenic assay
polymers
title Electrospun Poly(acrylic acid-<i>co</i>-4-styrene sulfonate) as Potential Drug-Eluting Scaffolds for Targeted Chemotherapeutic Delivery Systems on Gastric (AGS) and Breast (MDA-Mb-231) Cancer Cell Lines
title_full Electrospun Poly(acrylic acid-<i>co</i>-4-styrene sulfonate) as Potential Drug-Eluting Scaffolds for Targeted Chemotherapeutic Delivery Systems on Gastric (AGS) and Breast (MDA-Mb-231) Cancer Cell Lines
title_fullStr Electrospun Poly(acrylic acid-<i>co</i>-4-styrene sulfonate) as Potential Drug-Eluting Scaffolds for Targeted Chemotherapeutic Delivery Systems on Gastric (AGS) and Breast (MDA-Mb-231) Cancer Cell Lines
title_full_unstemmed Electrospun Poly(acrylic acid-<i>co</i>-4-styrene sulfonate) as Potential Drug-Eluting Scaffolds for Targeted Chemotherapeutic Delivery Systems on Gastric (AGS) and Breast (MDA-Mb-231) Cancer Cell Lines
title_short Electrospun Poly(acrylic acid-<i>co</i>-4-styrene sulfonate) as Potential Drug-Eluting Scaffolds for Targeted Chemotherapeutic Delivery Systems on Gastric (AGS) and Breast (MDA-Mb-231) Cancer Cell Lines
title_sort electrospun poly acrylic acid i co i 4 styrene sulfonate as potential drug eluting scaffolds for targeted chemotherapeutic delivery systems on gastric ags and breast mda mb 231 cancer cell lines
topic electrospun fibers
electrospinning
poly(acrylic acid-<i>co</i>-styrene sulfonate)
gastric and breast cancer cells
clonogenic assay
polymers
url https://www.mdpi.com/2079-4991/12/21/3903
work_keys_str_mv AT androniconeiracarrillo electrospunpolyacrylicacidicoi4styrenesulfonateaspotentialdrugelutingscaffoldsfortargetedchemotherapeuticdeliverysystemsongastricagsandbreastmdamb231cancercelllines
AT ignacioazarate electrospunpolyacrylicacidicoi4styrenesulfonateaspotentialdrugelutingscaffoldsfortargetedchemotherapeuticdeliverysystemsongastricagsandbreastmdamb231cancercelllines
AT eddienieto electrospunpolyacrylicacidicoi4styrenesulfonateaspotentialdrugelutingscaffoldsfortargetedchemotherapeuticdeliverysystemsongastricagsandbreastmdamb231cancercelllines
AT nicolebuttomiranda electrospunpolyacrylicacidicoi4styrenesulfonateaspotentialdrugelutingscaffoldsfortargetedchemotherapeuticdeliverysystemsongastricagsandbreastmdamb231cancercelllines
AT lorenalobosgonzalez electrospunpolyacrylicacidicoi4styrenesulfonateaspotentialdrugelutingscaffoldsfortargetedchemotherapeuticdeliverysystemsongastricagsandbreastmdamb231cancercelllines
AT matiasdelcamposmith electrospunpolyacrylicacidicoi4styrenesulfonateaspotentialdrugelutingscaffoldsfortargetedchemotherapeuticdeliverysystemsongastricagsandbreastmdamb231cancercelllines
AT danielapalacio electrospunpolyacrylicacidicoi4styrenesulfonateaspotentialdrugelutingscaffoldsfortargetedchemotherapeuticdeliverysystemsongastricagsandbreastmdamb231cancercelllines
AT brunofurbano electrospunpolyacrylicacidicoi4styrenesulfonateaspotentialdrugelutingscaffoldsfortargetedchemotherapeuticdeliverysystemsongastricagsandbreastmdamb231cancercelllines