<div><p>The formation of new blood vessels is an essential therapeutic target in many diseases such as cancer, ischemic diseases, and chronic inflammation. In this regard<b>,</b> extremely low-frequency (ELF) electromagnetic fields (EMFs) seem able to inhibit vessel growth when used in a specific window of amplitude. To investigate the mechanism of anti-angiogenic action of ELF-EMFs we tested the effect of a sinusoidal magnetic field (MF) of 2 mT intensity and frequency of 50 Hz on endothelial cell models HUVEC and MS-1 measuring cell status and proliferation, motility and tubule formation ability. MS-1 cells when injected in mice determined a rapid tumor-like growth that was significantly reduced in mice inoculated with MF-exposed cells. I...
A number of studies have reported that extremely low frequency magnetic fields (ELF-MF) can modulate...
Electrical stimulation induces significant neovessel formation in vivo. We have shown that electrica...
Microvesicles are released from cell surfaces constitutively during early apoptosis or upon activati...
The formation of new blood vessels is an essential therapeutic target in many diseases such as cance...
The formation of new blood vessels is an essential therapeutic target in many diseases such as cance...
Effects of extremely low frequency (ELF) electromagnetic fields (EMFs) on activation of angiogenesis...
Introduction Over the last decades, considerable levels of electromagnetic fields (EMFs) have been c...
Abstract. Background: A new approach to cancer therapy based 011 the application of therapeutic elec...
Introduction: Chronic exposure of non-ionizing extremely low-frequency magnetic fields (ELF-EMF) is ...
In accordance with the classification of the International Agency for Research on Cancer, extremely ...
Purpose: Emerging evidence implies that electromagnetic fields (EMFs) can negatively affect angiogen...
The aim of the present study was to investigate the influence of 50 Hz sinusoidal magnetic field on ...
Purpose: Emerging evidence implies that electromagnetic fields (EMFs) can negatively affect angiogen...
Objective(s): It is known that extremely low frequency-pulsed electromagnetic fields (ELF-PEMF) infl...
project PTDC/EDM-EDM/30828/2017 SFRH/BD/114043/2015 co-financed by the ERDF under the PT2020 Partn...
A number of studies have reported that extremely low frequency magnetic fields (ELF-MF) can modulate...
Electrical stimulation induces significant neovessel formation in vivo. We have shown that electrica...
Microvesicles are released from cell surfaces constitutively during early apoptosis or upon activati...
The formation of new blood vessels is an essential therapeutic target in many diseases such as cance...
The formation of new blood vessels is an essential therapeutic target in many diseases such as cance...
Effects of extremely low frequency (ELF) electromagnetic fields (EMFs) on activation of angiogenesis...
Introduction Over the last decades, considerable levels of electromagnetic fields (EMFs) have been c...
Abstract. Background: A new approach to cancer therapy based 011 the application of therapeutic elec...
Introduction: Chronic exposure of non-ionizing extremely low-frequency magnetic fields (ELF-EMF) is ...
In accordance with the classification of the International Agency for Research on Cancer, extremely ...
Purpose: Emerging evidence implies that electromagnetic fields (EMFs) can negatively affect angiogen...
The aim of the present study was to investigate the influence of 50 Hz sinusoidal magnetic field on ...
Purpose: Emerging evidence implies that electromagnetic fields (EMFs) can negatively affect angiogen...
Objective(s): It is known that extremely low frequency-pulsed electromagnetic fields (ELF-PEMF) infl...
project PTDC/EDM-EDM/30828/2017 SFRH/BD/114043/2015 co-financed by the ERDF under the PT2020 Partn...
A number of studies have reported that extremely low frequency magnetic fields (ELF-MF) can modulate...
Electrical stimulation induces significant neovessel formation in vivo. We have shown that electrica...
Microvesicles are released from cell surfaces constitutively during early apoptosis or upon activati...