TY - JOUR
T1 - Endotoxemia and circulating bacteriome in severe COVID-19 patients
AU - Sirivongrangson, Phatadon
AU - Kulvichit, Win
AU - Payungporn, Sunchai
AU - Pisitkun, Trairak
AU - Chindamporn, Ariya
AU - Peerapornratana, Sadudee
AU - Pisitkun, Prapaporn
AU - Chitcharoen, Suwalak
AU - Sawaswong, Vorthon
AU - Worasilchai, Navaporn
AU - Kampunya, Sarinya
AU - Putcharoen, Opass
AU - Thawitsri, Thammasak
AU - Leelayuwatanakul, Nophol
AU - Kongpolprom, Napplika
AU - Phoophiboon, Vorakamol
AU - Sriprasart, Thitiwat
AU - Samransamruajkit, Rujipat
AU - Tungsanga, Somkanya
AU - Tiankanon, Kanitha
AU - Lumlertgul, Nuttha
AU - Leelahavanichkul, Asada
AU - Sriphojanart, Tueboon
AU - Tantawichien, Terapong
AU - Thisyakorn, Usa
AU - Chirathaworn, Chintana
AU - Praditpornsilpa, Kearkiat
AU - Tungsanga, Kriang
AU - Eiam-Ong, Somchai
AU - Sitprija, Visith
AU - Kellum, John A.
AU - Srisawat, Nattachai
N1 - Publisher Copyright:
© 2020, The Author(s).
PY - 2020/12
Y1 - 2020/12
N2 - Background: When severe, COVID-19 shares many clinical features with bacterial sepsis. Yet, secondary bacterial infection is uncommon. However, as epithelium is injured and barrier function is lost, bacterial products entering the circulation might contribute to the pathophysiology of COVID-19. Methods: We studied 19 adults, severely ill patients with COVID-19 infection, who were admitted to King Chulalongkorn Memorial Hospital, Bangkok, Thailand, between 13th March and 17th April 2020. Blood samples on days 1, 3, and 7 of enrollment were analyzed for endotoxin activity assay (EAA), (1 → 3)-β-d-glucan (BG), and 16S rRNA gene sequencing to determine the circulating bacteriome. Results: Of the 19 patients, 13 were in intensive care and 10 patients received mechanical ventilation. We found 8 patients with high EAA (≥ 0.6) and about half of the patients had high serum BG levels which tended to be higher in later in the illness. Although only 1 patient had a positive blood culture, 18 of 19 patients were positive for 16S rRNA gene amplification. Proteobacteria was the most abundant phylum. The diversity of bacterial genera was decreased overtime. Conclusions: Bacterial DNA and toxins were discovered in virtually all severely ill COVID-19 pneumonia patients. This raises a previously unrecognized concern for significant contribution of bacterial products in the pathogenesis of this disease.
AB - Background: When severe, COVID-19 shares many clinical features with bacterial sepsis. Yet, secondary bacterial infection is uncommon. However, as epithelium is injured and barrier function is lost, bacterial products entering the circulation might contribute to the pathophysiology of COVID-19. Methods: We studied 19 adults, severely ill patients with COVID-19 infection, who were admitted to King Chulalongkorn Memorial Hospital, Bangkok, Thailand, between 13th March and 17th April 2020. Blood samples on days 1, 3, and 7 of enrollment were analyzed for endotoxin activity assay (EAA), (1 → 3)-β-d-glucan (BG), and 16S rRNA gene sequencing to determine the circulating bacteriome. Results: Of the 19 patients, 13 were in intensive care and 10 patients received mechanical ventilation. We found 8 patients with high EAA (≥ 0.6) and about half of the patients had high serum BG levels which tended to be higher in later in the illness. Although only 1 patient had a positive blood culture, 18 of 19 patients were positive for 16S rRNA gene amplification. Proteobacteria was the most abundant phylum. The diversity of bacterial genera was decreased overtime. Conclusions: Bacterial DNA and toxins were discovered in virtually all severely ill COVID-19 pneumonia patients. This raises a previously unrecognized concern for significant contribution of bacterial products in the pathogenesis of this disease.
KW - Acute respiratory distress syndrome
KW - COVID-19
KW - Circulating bacteriome
KW - Critically ill
KW - Endotoxemia
KW - Sepsis
UR - https://www.scopus.com/pages/publications/85132483734
U2 - 10.1186/s40635-020-00362-8
DO - 10.1186/s40635-020-00362-8
M3 - Article
AN - SCOPUS:85132483734
SN - 2197-425X
VL - 8
JO - Intensive Care Medicine Experimental
JF - Intensive Care Medicine Experimental
IS - 1
M1 - 72
ER -