5.12
궤양성 대장염은 대장의 만성 염증성 질환으로, 일반적으로 직장에서 시작하여 균일한 패턴으로 근위부로 이어지는 점막 염증이 특징입니다. 발병 기전은 유전적 소인, 면역 조절 장애, 환경적 영향이 복잡하게 얽혀 있습니다. 이 요인들이 결합되어 대장의 상피 방어를 약화시키고…
궤양성 대장염은 일반적으로 면역학적, 유전적, 환경적 요인이 복합적으로 작용하여 시작됩니다.
이러한 요인들은 대장을 보호하는 점액층을 손상시킵니다.
이와 함께 상피 밀착 접합부의 기능 장애가 나타나 장 투과성이 증가합니다.
이 침체에 대응하여 면역 체계가 활성화됩니다. 호중구, 림프구, 혈漿세포, 대식세포, 호산구 등 다양한 면역 세포가 대장 점막으로 모집됩니다.
이 세포들은 종양 괴사 인자-알파, 인터루킨-1, 인터루킨-6, 인터루킨-13과 같은 염증성 사이토카인을 분비합니다.
염증 과정이 진행됨에 따라 호중구가 대장의 관狀샘인 리버쿤 지하실에 침투하여 납골 농양이 형성되고 분비선 조직이 파괴됩니다.
이 손상은 대장이 수분과 전해질을 흡수하는 능력을 감소시켜 설사에 기여합니다. 동시에 점막 궤양과 모세혈관 취약성은 직장 출혈을 유발합니다.
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Q1: What causes the breakdown of the mucosal barrier in ulcerative colitis?
Ulcerative colitis begins when immunological, genetic, or environmental factors disrupt the protective mucus layer lining the colon. Defects in mucin production reduce the barrier's ability to shield epithelial cells from microbial antigens. Simultaneously, abnormalities in epithelial tight junctions increase intestinal permeability, allowing luminal bacteria and toxins to penetrate the mucosa and trigger immune activation.
Q2: Which immune cells are recruited during ulcerative colitis inflammation?
In response to mucosal barrier breach, neutrophils, lymphocytes, plasma cells, macrophages, and eosinophils are recruited to the colonic mucosa. These cells infiltrate the lamina propria and migrate into the crypts of Lieberkühn, forming characteristic crypt abscesses. Their accumulation and activation drive the inflammatory cascade that damages epithelial tissue and perpetuates disease progression.
Q3: What pro-inflammatory cytokines are released in ulcerative colitis?
Activated immune cells release pro-inflammatory cytokines including tumor necrosis factor-alpha, interleukin-1, interleukin-6, and interleukin-13. These cytokines amplify inflammation and further damage epithelial integrity. Their sustained release perpetuates the cycle of mucosal destruction and immune activation characteristic of ulcerative colitis pathophysiology.
Q4: How does neutrophil infiltration damage the colon's glandular tissue?
Neutrophils migrate into the crypts of Lieberkühn, tubular glands in the colon, forming crypt abscesses that destroy glandular tissue. This damage reduces the colon's ability to absorb water and electrolytes, contributing to diarrhea. The loss of epithelial cells and crypt architecture impairs normal colonic function and perpetuates fluid loss.
Q5: Why does ulcerative colitis cause rectal bleeding and diarrhea?
Mucosal ulceration combined with increased capillary fragility leads to rectal bleeding in ulcerative colitis. Concurrently, loss of epithelial cells and crypt architecture impairs water and electrolyte absorption, producing diarrhea. As inflammation persists, the mucosa becomes edematous, friable, and ulcerated, explaining the recurrent episodes of bloody diarrhea characteristic of the disease.
Q6: How does increased intestinal permeability initiate the immune response in ulcerative colitis?
Abnormalities in epithelial tight junctions increase intestinal permeability, allowing luminal bacteria and toxins to penetrate the mucosa. This breach activates innate and adaptive immune pathways within the gastrointestinal tract, triggering recruitment of immune cells to the colonic mucosa. The compromised barrier thus serves as the critical early step linking genetic and environmental factors to immune dysregulation.
Q7: What distinguishes ulcerative colitis from other inflammatory bowel conditions?
Ulcerative colitis is characterized by continuous mucosal inflammation that typically begins in the rectum and extends proximally in a uniform pattern. This distinguishes it from conditions like inflammatory bowel disease iii crohn s disease, which may involve discontinuous inflammation. The pathophysiology involves coordinated breakdown of mucosal defenses and sustained immune activation specific to the colonic mucosa.