Membrane Vesicles of Group B Streptococcus Disrupt Feto-Maternal Barrier Leading to Preterm Birth.
Manalee Vishnu SurveAnjali AnilKshama Ganesh KamathSmita BhutdaLakshmi Kavitha SthanamArpan PradhanRohit SrivastavaBhakti BasuSuryendu DuttaShamik SenDeepak ModiAnirban BanerjeePublished in: PLoS pathogens (2016)
Infection of the genitourinary tract with Group B Streptococcus (GBS), an opportunistic gram positive pathogen, is associated with premature rupture of amniotic membrane and preterm birth. In this work, we demonstrate that GBS produces membrane vesicles (MVs) in a serotype independent manner. These MVs are loaded with virulence factors including extracellular matrix degrading proteases and pore forming toxins. Mice chorio-decidual membranes challenged with MVs ex vivo resulted in extensive collagen degradation leading to loss of stiffness and mechanical weakening. MVs when instilled vaginally are capable of anterograde transport in mouse reproductive tract. Intra-amniotic injections of GBS MVs in mice led to upregulation of pro-inflammatory cytokines and inflammation mimicking features of chorio-amnionitis; it also led to apoptosis in the chorio-decidual tissue. Instillation of MVs in the amniotic sac also resulted in intrauterine fetal death and preterm delivery. Our findings suggest that GBS MVs can independently orchestrate events at the feto-maternal interface causing chorio-amnionitis and membrane damage leading to preterm birth or fetal death.
Keyphrases
- adipose tissue
- preterm birth
- gestational age
- low birth weight
- insulin resistance
- birth weight
- extracellular matrix
- oxidative stress
- biofilm formation
- high fat diet induced
- candida albicans
- pseudomonas aeruginosa
- escherichia coli
- umbilical cord
- staphylococcus aureus
- drug delivery
- cell death
- poor prognosis
- antimicrobial resistance
- pregnancy outcomes
- long non coding rna
- body mass index
- dengue virus
- gram negative
- ultrasound guided
- multidrug resistant
- weight loss
- wild type
- zika virus
- cell cycle arrest