16.2
여드름은 주로 청소년과 젊은 성인에게 영향을 미치는 다요인 피부 질환으로, 전 세계적으로 이 인구 집단에서 75%를 넘는 유병률로 추정됩니다. 이 질환은 흑점과 백두기, 구진, 농포, 결절, 그리고 심한 경우 특히 얼굴, 목, 가슴, 등 피지선이 풍부한 부위에 낭종이…
여드름은 모낭 염증이 특징인 피부 질환입니다. 큐티박테리움 여드름의 과증식과 기타 요인들이 이러한 염증에 기여합니다.
C. acnes 는 그람 양성 판상체 모양의 박테리아로, 지질이 풍부한 피지선 환경에서 잘 자랍니다.
청소년기에는 안드로겐 활성이 증가하여 과도한 피지 분비를 자극합니다.
일부 개인에서는 각질혈구의 과증식과 모낭에 갇힌 피지가 미세코미돈(microcomedone)이라는 플러그를 형성합니다.
이 막힌 난포 안에서 C. acnes 는 리파아제, 프로테아제, 히알루론다제 같은 효소를 증식하고 분비합니다.
이 효소들은 피지와 세포외 기질 성분을 분해합니다. 이 과정은 주변 조직을 자극하고 면역 신호 분자의 방출을 촉진하여 염증을 유발합니다.
이 염증은 피부 표면 근처에 붉은 구진이나 고름이 찬 고름이 섞인 고름이 형성될 수 있습니다.
압력에 의해 여포벽이 파열되면 내용물이 진피로 퍼집니다. 이러한 전개는 더 깊은 염증과 결절 또는 낭종의 형성을 유발할 수 있습니다.
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Q1: What role does Cutibacterium acnes play in acne development?
Cutibacterium acnes is a Gram-positive, anaerobic rod bacterium that colonizes sebaceous follicles and drives acne pathogenesis. The bacterium secretes enzymes like lipases and proteases that break down sebum and extracellular matrix components, irritating surrounding tissue. C. acnes also produces factors that recruit leukocytes, triggering inflammatory mediators such as IL-1β and TNF-α, which sustain the inflammatory response characteristic of acne lesions.
Q2: How does sebum production contribute to acne formation?
During adolescence, increased androgen activity stimulates excessive sebum production in sebaceous glands. This lipid-rich environment provides an ideal habitat for C. acnes growth. When keratinocytes hyperproliferate and trap sebum in hair follicles, a microcomedone forms. Inside this blocked follicle, bacteria multiply and release enzymes that further irritate tissue and trigger inflammation.
Q3: What happens when a follicular wall ruptures during acne inflammation?
When pressure builds inside a blocked follicle, the follicular wall may rupture, allowing contents including bacteria, sebum, and immune cells to spread into the dermis. This deeper tissue invasion causes more severe inflammation and can lead to the formation of nodules or cysts. These deeper lesions are more likely to result in permanent scarring compared to surface-level papules or pustules.
Q4: How do immune cells contribute to pustule formation in acne?
Leukocytes are recruited to acne follicles by bacterial factors and phagocytize C. acnes. During this process, they release inflammatory mediators and accumulate as dead cells within the follicle. This accumulation of dead leukocytes, combined with bacterial debris and sebum, forms the characteristic pus seen in pustules. Toll-like receptor activation further amplifies this inflammatory cascade.
Q5: What is the difference between comedones and inflammatory acne lesions?
Comedones are non-inflammatory lesions formed by blocked sebaceous follicles. Blackheads result from oxidized sebum and keratin in open follicles, while whiteheads form from retained material in closed follicles. Inflammatory lesions like papules and pustules develop when C. acnes colonizes the follicle and triggers immune activation. Severe cases progress to nodules and cysts, which penetrate deeper into skin layers.
Q6: Why are topical and systemic treatments used for acne management?
Mild acne often resolves without intervention, but persistent cases require targeted treatment. Topical therapies like benzoyl peroxide reduce bacteria and normalize keratinization, while antibiotics such as doxycycline target C. acnes directly. Severe cystic acne may require systemic agents like isotretinoin, which significantly reduces sebum production. Treatment choice depends on lesion severity and the underlying pathogenic factors involved.
Q7: How does acne differ from other bacterial skin infections?
Acne is a multifactorial condition originating from within sebaceous follicles, involving sebum overproduction, keratinocyte hyperproliferation, and C. acnes colonization. Unlike staphylococcal skin infections, which result from direct bacterial invasion of skin tissue, acne develops through follicular obstruction and internal inflammation. Acne is not significantly influenced by surface hygiene, whereas other bacterial skin infections may spread through external contamination.