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Cold atmospheric plasma enhances osteoblast differentiation
by
Sasaki, Shota
, Niwano, Yoshimi
, Mokudai, Takayuki
, Kanetaka, Hiroyasu
, Tominami, Kanako
, Kaneko, Toshiro
in
3T3 Cells
/ Alizarin
/ Alkaline phosphatase
/ Alkaline Phosphatase - genetics
/ Alkaline Phosphatase - metabolism
/ Animals
/ Apoptosis
/ Assaying
/ Biocompatibility
/ Biology and Life Sciences
/ Biomedical engineering
/ Bone growth
/ Bone surgery
/ Cell culture
/ Cell Differentiation
/ Cold
/ Cold effects
/ Cold Temperature
/ Dentistry
/ Differentiation
/ Electron paramagnetic resonance
/ Electron spin
/ Electron spin resonance
/ Electron Spin Resonance Spectroscopy
/ Engineering
/ Gases
/ Gene expression
/ Infectious diseases
/ Irradiation
/ Medicine and Health Sciences
/ Mice
/ Mineralization
/ Osteoblastogenesis
/ Osteoblasts
/ Osteoblasts - cytology
/ Osteoblasts - enzymology
/ Osteocalcin - genetics
/ Penicillin
/ Phosphatases
/ Plasma Gases
/ Radiation
/ Radicals
/ Regeneration
/ Regeneration (physiology)
/ Research and Analysis Methods
/ Resonance
/ Spectrum analysis
/ Spin resonance
/ Staining
/ Time dependence
/ Trapping
/ Ulcers
/ Wound healing
2017
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Cold atmospheric plasma enhances osteoblast differentiation
by
Sasaki, Shota
, Niwano, Yoshimi
, Mokudai, Takayuki
, Kanetaka, Hiroyasu
, Tominami, Kanako
, Kaneko, Toshiro
in
3T3 Cells
/ Alizarin
/ Alkaline phosphatase
/ Alkaline Phosphatase - genetics
/ Alkaline Phosphatase - metabolism
/ Animals
/ Apoptosis
/ Assaying
/ Biocompatibility
/ Biology and Life Sciences
/ Biomedical engineering
/ Bone growth
/ Bone surgery
/ Cell culture
/ Cell Differentiation
/ Cold
/ Cold effects
/ Cold Temperature
/ Dentistry
/ Differentiation
/ Electron paramagnetic resonance
/ Electron spin
/ Electron spin resonance
/ Electron Spin Resonance Spectroscopy
/ Engineering
/ Gases
/ Gene expression
/ Infectious diseases
/ Irradiation
/ Medicine and Health Sciences
/ Mice
/ Mineralization
/ Osteoblastogenesis
/ Osteoblasts
/ Osteoblasts - cytology
/ Osteoblasts - enzymology
/ Osteocalcin - genetics
/ Penicillin
/ Phosphatases
/ Plasma Gases
/ Radiation
/ Radicals
/ Regeneration
/ Regeneration (physiology)
/ Research and Analysis Methods
/ Resonance
/ Spectrum analysis
/ Spin resonance
/ Staining
/ Time dependence
/ Trapping
/ Ulcers
/ Wound healing
2017
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Cold atmospheric plasma enhances osteoblast differentiation
by
Sasaki, Shota
, Niwano, Yoshimi
, Mokudai, Takayuki
, Kanetaka, Hiroyasu
, Tominami, Kanako
, Kaneko, Toshiro
in
3T3 Cells
/ Alizarin
/ Alkaline phosphatase
/ Alkaline Phosphatase - genetics
/ Alkaline Phosphatase - metabolism
/ Animals
/ Apoptosis
/ Assaying
/ Biocompatibility
/ Biology and Life Sciences
/ Biomedical engineering
/ Bone growth
/ Bone surgery
/ Cell culture
/ Cell Differentiation
/ Cold
/ Cold effects
/ Cold Temperature
/ Dentistry
/ Differentiation
/ Electron paramagnetic resonance
/ Electron spin
/ Electron spin resonance
/ Electron Spin Resonance Spectroscopy
/ Engineering
/ Gases
/ Gene expression
/ Infectious diseases
/ Irradiation
/ Medicine and Health Sciences
/ Mice
/ Mineralization
/ Osteoblastogenesis
/ Osteoblasts
/ Osteoblasts - cytology
/ Osteoblasts - enzymology
/ Osteocalcin - genetics
/ Penicillin
/ Phosphatases
/ Plasma Gases
/ Radiation
/ Radicals
/ Regeneration
/ Regeneration (physiology)
/ Research and Analysis Methods
/ Resonance
/ Spectrum analysis
/ Spin resonance
/ Staining
/ Time dependence
/ Trapping
/ Ulcers
/ Wound healing
2017
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Cold atmospheric plasma enhances osteoblast differentiation
Journal Article
Cold atmospheric plasma enhances osteoblast differentiation
2017
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Overview
This study was designed to assess the effects of cold atmospheric plasma on osteoblastic differentiation in pre-osteoblastic MC3T3-E1 cells. Plasma was irradiated directly to a culture medium containing plated cells for 5 s or 10 s. Alkaline phosphatase (ALP) activity assay and alizarin red staining were applied to assess osteoblastic differentiation. The plasma-generated radicals were detected directly using an electron spin resonance-spin trapping technique. Results show that plasma irradiation under specific conditions increased ALP activity and enhanced mineralization, and demonstrated that the yield of radicals was increased in an irradiation-time-dependent manner. Appropriate plasma irradiation stimulated the osteoblastic differentiation of the cells. This process offers the potential of promoting bone regeneration.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Alizarin
/ Alkaline Phosphatase - genetics
/ Alkaline Phosphatase - metabolism
/ Animals
/ Assaying
/ Cold
/ Electron paramagnetic resonance
/ Electron Spin Resonance Spectroscopy
/ Gases
/ Medicine and Health Sciences
/ Mice
/ Radicals
/ Research and Analysis Methods
/ Staining
/ Trapping
/ Ulcers
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