Cargando…

Impedimetric Detection and Electromediated Apoptosis of Vascular Smooth Muscle Using Microfabricated Biosensors for Diagnosis and Therapeutic Intervention in Cardiovascular Diseases

Cardiovascular diseases remain a significant global burden with 1‐in‐3 of all deaths attributable to the consequences of the disease. The main cause is blocked arteries which often remain undetected. Implantable medical devices (IMDs) such as stents and grafts are often used to reopen vessels but ov...

Descripción completa

Detalles Bibliográficos
Autores principales: Bussooa, Anubhav, Hoare, Daniel, Kirimi, Mahmut T., Mitra, Srinjoy, Mirzai, Nosrat, Neale, Steve L., Mercer, John R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7509665/
https://www.ncbi.nlm.nih.gov/pubmed/32999823
http://dx.doi.org/10.1002/advs.201902999
_version_ 1783585644034916352
author Bussooa, Anubhav
Hoare, Daniel
Kirimi, Mahmut T.
Mitra, Srinjoy
Mirzai, Nosrat
Neale, Steve L.
Mercer, John R.
author_facet Bussooa, Anubhav
Hoare, Daniel
Kirimi, Mahmut T.
Mitra, Srinjoy
Mirzai, Nosrat
Neale, Steve L.
Mercer, John R.
author_sort Bussooa, Anubhav
collection PubMed
description Cardiovascular diseases remain a significant global burden with 1‐in‐3 of all deaths attributable to the consequences of the disease. The main cause is blocked arteries which often remain undetected. Implantable medical devices (IMDs) such as stents and grafts are often used to reopen vessels but over time these too will re‐block. A vascular biosensor is developed that can report on cellularity and is amenable to being mounted on a stent or graft for remote reporting. Moreover, the device is designed to also receive currents that can induce a controlled form of cell death, apoptosis. A combined diagnostic and therapeutic biosensor would be transformational for the treatment of vascular diseases such as atherosclerosis and central line access. In this work, a cell sensing and cell apoptosing system based on the same interdigitated electrodes (IDEs) is developed. It is shown that the device is scalable and that by miniaturizing the IDEs, the detection sensitivity is increased. Apoptosis of vascular smooth muscle cells is monitored using continuous impedance measurements at a frequency of 10 kHz and rates of cell death are tracked using fluorescent dyes and live cell imaging.
format Online
Article
Text
id pubmed-7509665
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-75096652020-09-29 Impedimetric Detection and Electromediated Apoptosis of Vascular Smooth Muscle Using Microfabricated Biosensors for Diagnosis and Therapeutic Intervention in Cardiovascular Diseases Bussooa, Anubhav Hoare, Daniel Kirimi, Mahmut T. Mitra, Srinjoy Mirzai, Nosrat Neale, Steve L. Mercer, John R. Adv Sci (Weinh) Full Papers Cardiovascular diseases remain a significant global burden with 1‐in‐3 of all deaths attributable to the consequences of the disease. The main cause is blocked arteries which often remain undetected. Implantable medical devices (IMDs) such as stents and grafts are often used to reopen vessels but over time these too will re‐block. A vascular biosensor is developed that can report on cellularity and is amenable to being mounted on a stent or graft for remote reporting. Moreover, the device is designed to also receive currents that can induce a controlled form of cell death, apoptosis. A combined diagnostic and therapeutic biosensor would be transformational for the treatment of vascular diseases such as atherosclerosis and central line access. In this work, a cell sensing and cell apoptosing system based on the same interdigitated electrodes (IDEs) is developed. It is shown that the device is scalable and that by miniaturizing the IDEs, the detection sensitivity is increased. Apoptosis of vascular smooth muscle cells is monitored using continuous impedance measurements at a frequency of 10 kHz and rates of cell death are tracked using fluorescent dyes and live cell imaging. John Wiley and Sons Inc. 2020-07-27 /pmc/articles/PMC7509665/ /pubmed/32999823 http://dx.doi.org/10.1002/advs.201902999 Text en © 2020 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Bussooa, Anubhav
Hoare, Daniel
Kirimi, Mahmut T.
Mitra, Srinjoy
Mirzai, Nosrat
Neale, Steve L.
Mercer, John R.
Impedimetric Detection and Electromediated Apoptosis of Vascular Smooth Muscle Using Microfabricated Biosensors for Diagnosis and Therapeutic Intervention in Cardiovascular Diseases
title Impedimetric Detection and Electromediated Apoptosis of Vascular Smooth Muscle Using Microfabricated Biosensors for Diagnosis and Therapeutic Intervention in Cardiovascular Diseases
title_full Impedimetric Detection and Electromediated Apoptosis of Vascular Smooth Muscle Using Microfabricated Biosensors for Diagnosis and Therapeutic Intervention in Cardiovascular Diseases
title_fullStr Impedimetric Detection and Electromediated Apoptosis of Vascular Smooth Muscle Using Microfabricated Biosensors for Diagnosis and Therapeutic Intervention in Cardiovascular Diseases
title_full_unstemmed Impedimetric Detection and Electromediated Apoptosis of Vascular Smooth Muscle Using Microfabricated Biosensors for Diagnosis and Therapeutic Intervention in Cardiovascular Diseases
title_short Impedimetric Detection and Electromediated Apoptosis of Vascular Smooth Muscle Using Microfabricated Biosensors for Diagnosis and Therapeutic Intervention in Cardiovascular Diseases
title_sort impedimetric detection and electromediated apoptosis of vascular smooth muscle using microfabricated biosensors for diagnosis and therapeutic intervention in cardiovascular diseases
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7509665/
https://www.ncbi.nlm.nih.gov/pubmed/32999823
http://dx.doi.org/10.1002/advs.201902999
work_keys_str_mv AT bussooaanubhav impedimetricdetectionandelectromediatedapoptosisofvascularsmoothmuscleusingmicrofabricatedbiosensorsfordiagnosisandtherapeuticinterventionincardiovasculardiseases
AT hoaredaniel impedimetricdetectionandelectromediatedapoptosisofvascularsmoothmuscleusingmicrofabricatedbiosensorsfordiagnosisandtherapeuticinterventionincardiovasculardiseases
AT kirimimahmutt impedimetricdetectionandelectromediatedapoptosisofvascularsmoothmuscleusingmicrofabricatedbiosensorsfordiagnosisandtherapeuticinterventionincardiovasculardiseases
AT mitrasrinjoy impedimetricdetectionandelectromediatedapoptosisofvascularsmoothmuscleusingmicrofabricatedbiosensorsfordiagnosisandtherapeuticinterventionincardiovasculardiseases
AT mirzainosrat impedimetricdetectionandelectromediatedapoptosisofvascularsmoothmuscleusingmicrofabricatedbiosensorsfordiagnosisandtherapeuticinterventionincardiovasculardiseases
AT nealestevel impedimetricdetectionandelectromediatedapoptosisofvascularsmoothmuscleusingmicrofabricatedbiosensorsfordiagnosisandtherapeuticinterventionincardiovasculardiseases
AT mercerjohnr impedimetricdetectionandelectromediatedapoptosisofvascularsmoothmuscleusingmicrofabricatedbiosensorsfordiagnosisandtherapeuticinterventionincardiovasculardiseases