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Facile Preparation of Internally Self-assembled Lipid Particles Stabilized by Carbon Nanotubes
Published on: February 19, 2016
Effects of preparation methods for multi-wall carbon nanotube (MWCNT) suspensions on MWCNT induced rat pulmonary
Kiyoshi Wako1, Yuri Kotani, Akihiko Hirose
1Kashima Laboratory, Mitsubishi Chemical Medience Corporation, Ibaraki, Japan. Wako.Kiyoshi@mv.medience.co.jp
Abstract:
Since there is a possibility of inhaling the fibers of multi-wall carbon nanotube (MWCNT) without any agglomeration, it is important that the pulmonary toxicity is evaluated by intratracheal instillation without agglomeration. MWCNT suspended in an artificial lung surfactant (ALS) with or without grinding in an agate mortar was instilled once intratracheally to rats to determine whether differences of the effects to pulmonary toxicity by different amounts of agglomerated MWCNT particle. The MWCNT suspension preparation method with grinding was effective at reducing agglomerates and in increasing uniform dispersion of the fibers. The ground MWCNT induced higher LDH levels and neutrophil ratios in the bronchoalveolar lavage fluid (BALF). There were no remarkable responses in rats in the non-ground MWCNT group, with the exception of inflammatory responses in the early phase. Some histopathological findings varied between rats given the ground MWCNT and non-ground MWCNT. A major difference was an MWCNT-laden macrophage infiltration site in the lung, which were in the alveolus in the ground MWCNT group, and in the interstitium in non-ground MWCNT group. Accordingly, the preparation method with grinding is considered to be effective at reducing agglomerates and ensuring uniform dispersion of the fibers. These findings lead us to conclude that the amount of agglomerates in the suspension is an important factor affecting the pulmonary toxicity of MWCNT.
Insights
Grinding multi-wall carbon nanotubes (MWCNT) reduces particle agglomeration, leading to increased pulmonary toxicity in rats. This highlights the critical role of MWCNT dispersion in assessing inhalation risks.
Area of Science:
- Nanomaterial toxicology
- Pulmonary pathology
Background:
- Multi-wall carbon nanotubes (MWCNT) pose inhalation risks.
- Evaluating MWCNT pulmonary toxicity requires understanding particle dispersion.
Purpose of the Study:
- To investigate the impact of MWCNT agglomeration on pulmonary toxicity.
- To assess the effectiveness of a grinding preparation method on MWCNT dispersion and toxicity.
Main Methods:
- MWCNT were suspended in artificial lung surfactant (ALS) with or without grinding.
- Suspensions were instilled intratracheally into rats.
- Pulmonary toxicity was evaluated via bronchoalveolar lavage fluid (BALF) analysis and histopathology.
Main Results:
- Grinding effectively reduced MWCNT agglomerates and improved fiber dispersion.
- Ground MWCNT induced higher LDH levels and neutrophil ratios in BALF.
- Histopathology revealed differences in MWCNT-laden macrophage infiltration sites between groups.
Conclusions:
- MWCNT suspension preparation significantly impacts pulmonary toxicity assessment.
- Reduced agglomeration and uniform dispersion enhance MWCNT-induced pulmonary inflammation and toxicity.
- Particle agglomeration is a critical factor influencing MWCNT pulmonary toxicity.
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