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Magnetic hyperthermia therapy in glioblastoma tumor on-a-Chip model.
Mamani, Javier Bustamante; Marinho, Bruna Souto; Rego, Gabriel Nery de Albuquerque; Nucci, Mariana Penteado; Alvieri, Fernando; Santos, Ricardo Silva Dos; Ferreira, João Victor Matias; Oliveira, Fernando Anselmo de; Gamarra, Lionel Fernel.
Affiliation
  • Mamani JB; Hospital Israelita Albert Einstein, São Paulo, SP, Brazil.
  • Marinho BS; Hospital Israelita Albert Einstein, São Paulo, SP, Brazil.
  • Rego GNA; Hospital Israelita Albert Einstein, São Paulo, SP, Brazil.
  • Nucci MP; Hospital das Clínicas, Faculdade de Medicina, Universidade de São Paulo, São Paulo, SP, Brazil.
  • Alvieri F; Hospital Israelita Albert Einstein, São Paulo, SP, Brazil.
  • Santos RSD; Hospital Israelita Albert Einstein, São Paulo, SP, Brazil.
  • Ferreira JVM; Hospital Israelita Albert Einstein, São Paulo, SP, Brazil.
  • Oliveira FA; Hospital Israelita Albert Einstein, São Paulo, SP, Brazil.
  • Gamarra LF; Hospital Israelita Albert Einstein, São Paulo, SP, Brazil.
Einstein (Sao Paulo) ; 18: eAO4954, 2020.
Article in En, Pt | MEDLINE | ID: mdl-31939525
ABSTRACT

OBJECTIVE:

To evaluate the magnetic hyperthermia therapy in glioblastoma tumor-on-a-Chip model using a microfluidics device.

METHODS:

The magnetic nanoparticles coated with aminosilane were used for the therapy of magnetic hyperthermia, being evaluated the specific absorption rate of the magnetic nanoparticles at 300 Gauss and 305kHz. A preculture of C6 cells was performed before the 3D cells culture on the chip. The process of magnetic hyperthermia on the Chip was performed after administration of 20µL of magnetic nanoparticles (10mgFe/mL) using the parameters that generated the specific absorption rate value. The efficacy of magnetic hyperthermia therapy was evaluated by using the cell viability test through the following fluorescence staining calcein acetoxymethyl ester (492/513nm), for live cells, and ethidium homodimer-1 (526/619nm) for dead cells dyes.

RESULTS:

Magnetic nanoparticles when submitted to the alternating magnetic field (300 Gauss and 305kHz) produced a mean value of the specific absorption rate of 115.4±6.0W/g. The 3D culture of C6 cells evaluated by light field microscopy imaging showed the proliferation and morphology of the cells prior to the application of magnetic hyperthermia therapy. Fluorescence images showed decreased viability of cultured cells in organ-on-a-Chip by 20% and 100% after 10 and 30 minutes of the magnetic hyperthermia therapy application respectively.

CONCLUSION:

The study showed that the therapeutic process of magnetic hyperthermia in the glioblastoma on-a-chip model was effective to produce the total cell lise after 30 minutes of therapy.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Glioblastoma / Cell Culture Techniques / Lab-On-A-Chip Devices / Magnetite Nanoparticles / Hyperthermia, Induced Type of study: Evaluation_studies / Prognostic_studies Limits: Animals Language: En / Pt Journal: Einstein (Sao Paulo) Year: 2020 Document type: Article Affiliation country: Brazil

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Glioblastoma / Cell Culture Techniques / Lab-On-A-Chip Devices / Magnetite Nanoparticles / Hyperthermia, Induced Type of study: Evaluation_studies / Prognostic_studies Limits: Animals Language: En / Pt Journal: Einstein (Sao Paulo) Year: 2020 Document type: Article Affiliation country: Brazil