17.7
아르보바이러스성 뇌염은 절지동물 매개 바이러스, 특히 모기 매개체를 통해 전파되는 바이러스에 의해 발생하는 뇌 염증을 의미합니다. 이 중 웨스트나일 바이러스(WNV)는 플라비바이러스과 에 속하는 중요한 공중보건 문제입니다. WNV는 포위를 가진 양성 의미의 단일 가닥…
아르보바이러스성 뇌염은 관절동물 매개 바이러스인 아르보바이러스에 의해 발생하는 뇌 염증입니다.
대표적인 예로는 주로 모기를 통해 전파하는 포위 양성 가닥 RNA 바이러스인 웨스트 나일 바이러스가 있습니다.
감염된 모기가 물면 바이러스를 피부에 주입하고, 바이러스는 수용체 매개 엔도사이토시스를 통해 수지돌리 세포로 침투합니다.
먼저 국소적으로 복제되고, 이후 인근 림프절로 퍼지고, 이후 혈류로 들어갑니다.
혈액 속으로 들어가면 바이러스는 뇌를 포함한 여러 장기로 이동할 수 있습니다.
여기서 바이러스는 여러 메커니즘을 통해 혈액-뇌 장벽을 통과합니다.
이는 내피 세포를 직접 감염시키거나, 밀착 접합부를 파괴하거나, 감염된 면역 세포를 통해 운반될 수 있습니다.
혈액-뇌 장벽을 통과한 후, 바이러스는 뉴런 내부에서 복제되어 강한 염증과 염증성 사이토카인 분비를 유발합니다.
바이러스 세포독성과 면역 반응의 복합 작용으로 뇌의 신경 손실과 염증이 발생하여 뇌염을 유발합니다.
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Q1: How does West Nile virus enter human cells after a mosquito bite?
When an infected mosquito bites, it injects West Nile virus into the skin's dermis. The virus targets dendritic cells and enters them through receptor-mediated endocytosis. It then replicates locally at the infection site before spreading to regional lymph nodes and eventually entering the bloodstream for systemic distribution.
Q2: What mechanisms allow arboviruses to cross the blood-brain barrier?
Arboviruses cross the blood-brain barrier through three main mechanisms. First, they directly infect and compromise endothelial cells, disrupting barrier function. Second, they disrupt tight junctions between endothelial cells, weakening structural integrity. Third, they use a 'Trojan horse' strategy, where infected immune cells transport the virus across the barrier into the central nervous system.
Q3: Why does West Nile virus cause inflammation in the brain?
Once inside the central nervous system, West Nile virus replicates in neurons, triggering strong immune responses. This replication releases pro-inflammatory cytokines like IL-6, TNF-α, and interferons. The combined effects of direct viral damage to neurons and this inflammatory environment lead to neuronal death and encephalitis.
Q4: What is the transmission cycle of West Nile virus in nature?
West Nile virus cycles primarily between birds as amplifying hosts and mosquitoes as vectors. Humans and other mammals are incidental, dead-end hosts who do not contribute to virus transmission. Infection in humans occurs when an infected mosquito introduces the virus during feeding, but humans cannot transmit the virus back to mosquitoes.
Q5: Which brain regions are most affected by West Nile virus infection?
West Nile virus shows a strong preference for neurons in the cerebral cortex, brainstem, and spinal cord. Viral replication in these regions triggers neuroinflammation and neuronal death. The extent of damage to these critical areas determines the severity of neurological symptoms, ranging from mild cognitive impairment to seizures, paralysis, or coma.
Q6: How does arboviral encephalitis differ from viral meningitis in terms of infection site?
Arboviral encephalitis involves inflammation of the brain tissue itself, caused by viral replication in neurons and subsequent immune responses. In contrast, viral meningitis affects the meninges, the membranes surrounding the brain and spinal cord. Both are serious viral infections of the central nervous system but target different anatomical structures.
Q7: Who is at highest risk for developing neuroinvasive West Nile virus disease?
Most West Nile virus infections are asymptomatic or present as mild febrile illness. However, a small proportion of cases progress to neuroinvasive disease, particularly among immunocompromised individuals and older adults. These populations have reduced immune capacity to control viral replication in the central nervous system.