Light‐to‐Heat Photothermal Dynamic Properties of Polypyrrole‐Based Coating for Regenerative Therapy and Lab‐on‐a‐Chip Applications

Abstract Targeted delivery and release of biomolecules, e.g., bone morphogenetic protein (BMP‐2), are gaining high interest due to the application for tissue engineering, diagnostics, surface‐enhanced therapy and lab‐on‐a‐chip. Here, a new hybrid temperature‐responsive system consisting of polypyrro...

Full description

Bibliographic Details
Main Authors: Sviatlana Ulasevich, Nikolay V. Ryzhkov, Daria V. Andreeva, Dilek Sura Özden, Erhan Piskin, Ekaterina V. Skorb
Format: Article
Language:English
Published: Wiley-VCH 2020-11-01
Series:Advanced Materials Interfaces
Subjects:
Online Access:https://doi.org/10.1002/admi.202000980
_version_ 1797730872935317504
author Sviatlana Ulasevich
Nikolay V. Ryzhkov
Daria V. Andreeva
Dilek Sura Özden
Erhan Piskin
Ekaterina V. Skorb
author_facet Sviatlana Ulasevich
Nikolay V. Ryzhkov
Daria V. Andreeva
Dilek Sura Özden
Erhan Piskin
Ekaterina V. Skorb
author_sort Sviatlana Ulasevich
collection DOAJ
description Abstract Targeted delivery and release of biomolecules, e.g., bone morphogenetic protein (BMP‐2), are gaining high interest due to the application for tissue engineering, diagnostics, surface‐enhanced therapy and lab‐on‐a‐chip. Here, a new hybrid temperature‐responsive system consisting of polypyrrole (PPy) layer, mesoporous titania surface (TMS), and BMP‐2 is proposed. The PPy layer has the light‐to‐heat photothermal property. Dynamic behavior of the PPy layer in response to light can regulate release of BMP‐2. The PPy‐based coatings on TMS have shown to be efficient for storage of BMP‐2 and can be tuned to release BMP‐2 under irradiation. Moreover, the possibility of local delivery and generation of a gradual release of BMP‐2 for regulated cell growth is shown. Furthermore, the fabricated surfaces possess excellent biocompatibility and low cytotoxicity for MC3T3‐E1 cells. It is shown that the released BMP‐2 can effectively promote osteogenic differentiation of MC3T3‐E1 cells. Thus, the TMS/PPy–BMP‐2 is suggested to prolong targeted release of the BMP‐2 for more than 25 days which stimulates osteoblasts’ proliferation. The new stimuli‐responsive hybrid system is promising for targeted, localized, sustained drug release and application in bone tissue engineering.
first_indexed 2024-03-12T11:50:30Z
format Article
id doaj.art-4b3e54d79411427b904adf147bb0be28
institution Directory Open Access Journal
issn 2196-7350
language English
last_indexed 2024-03-12T11:50:30Z
publishDate 2020-11-01
publisher Wiley-VCH
record_format Article
series Advanced Materials Interfaces
spelling doaj.art-4b3e54d79411427b904adf147bb0be282023-08-31T08:56:02ZengWiley-VCHAdvanced Materials Interfaces2196-73502020-11-01721n/an/a10.1002/admi.202000980Light‐to‐Heat Photothermal Dynamic Properties of Polypyrrole‐Based Coating for Regenerative Therapy and Lab‐on‐a‐Chip ApplicationsSviatlana Ulasevich0Nikolay V. Ryzhkov1Daria V. Andreeva2Dilek Sura Özden3Erhan Piskin4Ekaterina V. Skorb5Infochemistry Scientific Center of ITMO University ITMO University Lomonosova str. 9 St. Petersburg 191002 RussiaInfochemistry Scientific Center of ITMO University ITMO University Lomonosova str. 9 St. Petersburg 191002 RussiaDepartment of Materials Science and Engineering National University of Singapore Singapore 117575 SingaporeChemical Engineering Department and Bioengineering Division Center for Bioengineering and Biyomedtek/Nanobiyomedtek Hacettepe University Beytepe Ankara 06800 TurkeyNanoBMT Nanobiyomedtek Biyomedikal and Biyoteknoloji San.Tic., Ltd.Sti. Bilkent University 56 Cyberpark, Bilkent Ankara 06800 TurkeyInfochemistry Scientific Center of ITMO University ITMO University Lomonosova str. 9 St. Petersburg 191002 RussiaAbstract Targeted delivery and release of biomolecules, e.g., bone morphogenetic protein (BMP‐2), are gaining high interest due to the application for tissue engineering, diagnostics, surface‐enhanced therapy and lab‐on‐a‐chip. Here, a new hybrid temperature‐responsive system consisting of polypyrrole (PPy) layer, mesoporous titania surface (TMS), and BMP‐2 is proposed. The PPy layer has the light‐to‐heat photothermal property. Dynamic behavior of the PPy layer in response to light can regulate release of BMP‐2. The PPy‐based coatings on TMS have shown to be efficient for storage of BMP‐2 and can be tuned to release BMP‐2 under irradiation. Moreover, the possibility of local delivery and generation of a gradual release of BMP‐2 for regulated cell growth is shown. Furthermore, the fabricated surfaces possess excellent biocompatibility and low cytotoxicity for MC3T3‐E1 cells. It is shown that the released BMP‐2 can effectively promote osteogenic differentiation of MC3T3‐E1 cells. Thus, the TMS/PPy–BMP‐2 is suggested to prolong targeted release of the BMP‐2 for more than 25 days which stimulates osteoblasts’ proliferation. The new stimuli‐responsive hybrid system is promising for targeted, localized, sustained drug release and application in bone tissue engineering.https://doi.org/10.1002/admi.202000980mesoporous titaniapolyelectrolytespolymer coatingpolypyrroleultrasonic treatment
spellingShingle Sviatlana Ulasevich
Nikolay V. Ryzhkov
Daria V. Andreeva
Dilek Sura Özden
Erhan Piskin
Ekaterina V. Skorb
Light‐to‐Heat Photothermal Dynamic Properties of Polypyrrole‐Based Coating for Regenerative Therapy and Lab‐on‐a‐Chip Applications
Advanced Materials Interfaces
mesoporous titania
polyelectrolytes
polymer coating
polypyrrole
ultrasonic treatment
title Light‐to‐Heat Photothermal Dynamic Properties of Polypyrrole‐Based Coating for Regenerative Therapy and Lab‐on‐a‐Chip Applications
title_full Light‐to‐Heat Photothermal Dynamic Properties of Polypyrrole‐Based Coating for Regenerative Therapy and Lab‐on‐a‐Chip Applications
title_fullStr Light‐to‐Heat Photothermal Dynamic Properties of Polypyrrole‐Based Coating for Regenerative Therapy and Lab‐on‐a‐Chip Applications
title_full_unstemmed Light‐to‐Heat Photothermal Dynamic Properties of Polypyrrole‐Based Coating for Regenerative Therapy and Lab‐on‐a‐Chip Applications
title_short Light‐to‐Heat Photothermal Dynamic Properties of Polypyrrole‐Based Coating for Regenerative Therapy and Lab‐on‐a‐Chip Applications
title_sort light to heat photothermal dynamic properties of polypyrrole based coating for regenerative therapy and lab on a chip applications
topic mesoporous titania
polyelectrolytes
polymer coating
polypyrrole
ultrasonic treatment
url https://doi.org/10.1002/admi.202000980
work_keys_str_mv AT sviatlanaulasevich lighttoheatphotothermaldynamicpropertiesofpolypyrrolebasedcoatingforregenerativetherapyandlabonachipapplications
AT nikolayvryzhkov lighttoheatphotothermaldynamicpropertiesofpolypyrrolebasedcoatingforregenerativetherapyandlabonachipapplications
AT dariavandreeva lighttoheatphotothermaldynamicpropertiesofpolypyrrolebasedcoatingforregenerativetherapyandlabonachipapplications
AT dileksuraozden lighttoheatphotothermaldynamicpropertiesofpolypyrrolebasedcoatingforregenerativetherapyandlabonachipapplications
AT erhanpiskin lighttoheatphotothermaldynamicpropertiesofpolypyrrolebasedcoatingforregenerativetherapyandlabonachipapplications
AT ekaterinavskorb lighttoheatphotothermaldynamicpropertiesofpolypyrrolebasedcoatingforregenerativetherapyandlabonachipapplications