妊娠组织中人类和细菌细胞外囊泡之间的货物交换:通信和免疫发育的新范式。

Extracellular vesicles and circulating nucleic acids Pub Date : 2024-06-18 eCollection Date: 2024-01-01 DOI:10.20517/evcna.2024.21
Emmanuel Amabebe, Awanit Kumar, Madhuri Tatiparthy, Ananth Kumar Kammala, Brandie D Taylor, Ramkumar Menon
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引用次数: 0

摘要

人类和细菌细胞分泌的细胞外囊泡(EVs)可以促进宿主-细菌和细菌-细菌的相互作用。人类和细菌ev (bev)繁殖和转移免疫原性货物,可能在附近或远处的受体细胞/组织中引起免疫反应。因此,免疫原性刺激不需要细菌细胞直接定植组织。这种现象在胎儿-母体界面中很重要,因为母体和胎儿之间的最佳耐受性是成功怀孕所必需的。虽然宫内腔被广泛认为是无菌的,但在胎盘和羊膜腔中已经发现了来自不同来源的bev。这些bev可以被人类细胞内化,这可能有助于它们逃避宿主免疫监视。虽然这似乎合乎逻辑,但细菌细胞是否内化人类EV或人类EV货物尚未确定。然而,胎盘组织或羊膜腔中bev的存在被认为会引发低级别免疫反应,为胎儿体外生存提供免疫系统,但不足以破坏妊娠进展或引起不良妊娠事件所需的免疫不耐受。然而,人类和生物燃料之间的生物活性物质交换,以及这种相互作用的机械基础和健康影响,特别是在怀孕期间,仍然没有得到充分的研究。因此,在关注胎儿-母体界面的同时,我们讨论了人类细胞如何摄取BEV,细菌细胞是否摄取人类ev或其货物,人类和BEV之间的货物交换,宿主细胞(胎儿-母体)对BEV免疫原性刺激的炎症反应,以及这些相互作用与胎儿免疫启动和不良生殖结局(如子痫前期和早产)的关联。
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Cargo exchange between human and bacterial extracellular vesicles in gestational tissues: a new paradigm in communication and immune development.

Host-bacteria and bacteria-bacteria interactions can be facilitated by extracellular vesicles (EVs) secreted by both human and bacterial cells. Human and bacterial EVs (BEVs) propagate and transfer immunogenic cargos that may elicit immune responses in nearby or distant recipient cells/tissues. Hence, direct colonization of tissues by bacterial cells is not required for immunogenic stimulation. This phenomenon is important in the feto-maternal interface, where optimum tolerance between the mother and fetus is required for a successful pregnancy. Though the intrauterine cavity is widely considered sterile, BEVs from diverse sources have been identified in the placenta and amniotic cavity. These BEVs can be internalized by human cells, which may help them evade host immune surveillance. Though it appears logical, whether bacterial cells internalize human EVs or human EV cargo is yet to be determined. However, the presence of BEVs in placental tissues or amniotic cavity is believed to trigger a low-grade immune response that primes the fetal immune system for ex-utero survival, but is insufficient to disrupt the progression of pregnancy or cause immune intolerance required for adverse pregnancy events. Nevertheless, the exchange of bioactive cargos between human and BEVs, and the mechanical underpinnings and health implications of such interactions, especially during pregnancy, are still understudied. Therefore, while focusing on the feto-maternal interface, we discussed how human cells take up BEVs and whether bacterial cells take up human EVs or their cargo, the exchange of cargos between human and BEVs, host cell (feto-maternal) inflammatory responses to BEV immunogenic stimulation, and associations of these interactions with fetal immune priming and adverse reproductive outcomes such as preeclampsia and preterm birth.

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