Prenatal programming of the immune response induced by maternal periodontitis: Effects on the development of acute lung injury in rat pups
LIFE SCIENCES
Authors: Wuo, Alexandre do Valle; Klein, Simone; de Almeida, Patricia; Marcos, Rodrigo Labat; de Souza Setubal Destro, Maria Fernanda; de Fatma, Daniela Teixeira; Ratto Tempestini Horliana, Anna Carolina; Lino-dos-Santos-Franco, Adriana
Abstract
Aims: Oral cavity pathogens play an important systemic role, modulating the development of several diseases. Periodontitis is a very common oral disease associated with dental biofilm. It is characterized by gum inflammation, periodontal ligament degeneration, dental cementum and alveolar bone loss. Studies point to the association between maternal periodontitis and adverse outcomes during pregnancy. However, they did not evaluate the impact of maternal periodontitis in the offspring. Thus, our objective was to investigate the effects of maternal periodontitis in the immune system of offspring. Material and methods: For this evaluation we induced acute lung injury in rat pups. Pregnant rats were submitted or not to periodontitis by ligature technique. Thirty days after the birth, offspring was submitted to acute lung inflammation by administration of lipopolysaccharide (LPS, Salmonella abortus equi, 5 mg/kg, ip). Key findings: Our results showed that maternal periodontitis increased myeloperoxidase activity, the levels of TNF-alpha and IL-17A in the bronchoalveolar fluid, the gene expression of TNF-alpha, IL-17A, and cyclooxygenases 1 and 2. In addition, maternal periodontitis did not alter the number of leukocytes migrated into the lung, tracheal responsiveness, expression of TLR4 and NF-KB translocation. Significance: This study showed prenatal programming of the immune response induced by maternal period-ontitis, and reinforces the importance of oral health care during pregnancy.
A lateral flow strip combined with Cas9 nickase-triggered amplification reaction for dual food-borne pathogen detection
BIOSENSORS & BIOELECTRONICS
Authors: Wang, Luying; Shen, Xingying; Wang, Ting; Chen, Pinru; Qi, Nan; Yin, Bin-Cheng; Ye, Bang-Ce
Abstract
Nucleic acid-based detection methods are accurate and rapid, which are widely-used in food-borne pathogen detection. However, traditional nucleic acid-based detection methods usually rely on special instruments, weakening their practicality for on-site tests in resource-limited locations. In this work, we developed a convenient and affordable method for food-borne pathogen detection based on a lateral flow strip combined with Cas9 nickase-triggered isothermal DNA amplification, which allows instrument-free and dual target detection. The genomic DNAs of two most common foodborne pathogens, Salmonella typhimurium and Escherichia coli, were simultaneously amplified in a one-pot reaction using specific sgRNAs and primers. The amplicons of genomic DNAs were double-labelled by digoxin/biotin and FITC/biotin tags, respectively, and directly visualized on a simple lateral flow strip. Our method exhibited a high specificity and sensitivity with a detection limit of 100 copies for genomic DNAs and 100 CFU/mL for bacteria. We believe that this method has potential to provide a convenient and low-cost point-of-care test for pathogen detection in the food quality surveillance.