当社グループは 3,000 以上の世界的なカンファレンスシリーズ 米国、ヨーロッパ、世界中で毎年イベントが開催されます。 1,000 のより科学的な学会からの支援を受けたアジア および 700 以上の オープン アクセスを発行ジャーナルには 50,000 人以上の著名人が掲載されており、科学者が編集委員として名高い
。オープンアクセスジャーナルはより多くの読者と引用を獲得
700 ジャーナル と 15,000,000 人の読者 各ジャーナルは 25,000 人以上の読者を獲得
O’neil W. Guthrie *,Helen Xu
Research on the molecular bases of noise induced hearing loss has revealed that noise exposure produces multiple independent and complementary biochemical cascades that could damage DNA. The phosphorylation of Ser139 of histone variant H2Ax (γ-H2Ax) occurs within one minute following DNA damage and spans two million DNA bases on either side of the damage. In the current study we investigated whether noise exposure could induce γ-H2Ax within the organ of Corti. Cumulative signal strength was employed to quantify the absolute level of γ-H2Ax in mathematical energy units. The results indicated that noise exposure could increase the level of γ-H2Ax in the organ of Corti. Furthermore, treatment with a DNA repair enhancing chemotype (carboxy alkyl ester) reduced the noise induced increase of γ-H2Ax which was associated with an accelerated rate of functional recovery from the noise exposure. The combined results implicate molecular mechanisms of DNA damage and repair in the pathophysiology of noise induced hearing loss.