Ascorbic Acid Significantly Attenuates the Hyperoxia-Impaired Host Defense Against Pseudomonas Aeruginosa Infection in Mice by Decreasing Reactive Oxygen Species and HMGB1 Levels

Gespeichert in:
Autor*in:

Patel, Vivek [verfasserIn]

Sampat, Vaishali

Sitapara, Ravikumar

Yang, Xiaojing

Wang, Haichao

Espey, Michael

Thomas, Douglas

Ashby, Charles R

Mantell, Lin

Format:

E-Artikel

Sprache:

Englisch

Erschienen:

2015

Übergeordnetes Werk:

Enthalten in: New organic dyes with varied arylamine donors as effective co-sensitizers for ruthenium complex N719 in dye sensitized solar cells - Wu, Zhi-Sheng ELSEVIER, 2020, the official journal of the Oxygen Society, a constituent member of the International Society for Free Radical Research, New York, NY [u.a.]

Übergeordnetes Werk:

volume:87 ; year:2015 ; pages:94

Links:

Volltext

DOI / URN:

10.1016/j.freeradbiomed.2015.10.249

Katalog-ID:

ELV018662676

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