5.4
염증 반응은 세균, 외상, 독소 또는 열로부터의 감염, 손상 또는 자극에 대한 몸의 방어입니다. 염증은 병원체를 찾아내고 파괴하며 손상된 조직 성분을 제거하여 몸을 치유하는 데 도움이 됩니다. 이 초기 단계에서 피, 혈액 제품 및 영양소가 손상된 부위로 이동하면서 붉어…
염증 반응은 감염, 부상 또는 자극에 대한 신체의 방어 메커니즘입니다.
며칠 또는 몇 주 동안 지속되는 급성 또는 몇 달에서 몇 년 동안 지속되는 만성일 수 있습니다.
염증은 병원체를 식별하고 파괴하는 데 도움이 되며 손상된 조직 요소를 제거하여 신체가 치유될 수 있도록 합니다.
이 반응은 혈관 및 세포 수준에서 볼 수 있습니다. 둘 다 급성 염증 과정의 중요한 구성 요소입니다.
혈관 단계에서는 손상 부위 근처의 작은 혈관이 처음에는 출혈을 방지하기 위해 수축합니다.
해당 부위에 혈액을 공급하는 세동맥과 정맥이 확장되어 혈류가 증가하고 국소 발적과 열이 발생합니다.
또한 손상 부위에서 히스타민, 브래디키닌, 프로스타글란딘과 같은 세포 매개체가 방출되면 단백질 및 면역 세포가 풍부한 체액에 대한 혈관 투과성이 증가하여 부종, 통증 및 기능 상실을 유발합니다.
세포 단계에서 백혈구(WBC)는 혈관을 통과하여 손상 부위로 돌진하여 전체 WBC 수를 증가시킵니다.
호중구 및 단핵구와 같은 WBC는 병원체를 삼키고 세포 파편과 이물질을 섭취합니다. 병원체 식균작용의 결과로 발열원이 방출되어 열을 일으킵니다.
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Q1: What is the inflammatory response and why does the body trigger it?
The inflammatory response is a defense mechanism against infection, injury, or irritation from bacteria, trauma, toxins, or heat. It helps locate and destroy pathogens while removing damaged tissue elements to promote healing. This response occurs at both vascular and cellular levels, with fluid, blood products, and nutrients migrating to the injured area, resulting in redness, heat, swelling, pain, and loss of function.
Q2: What happens to blood vessels during the vascular stage of inflammation?
During the vascular stage, small blood vessels near the injury site initially constrict to prevent blood loss. The arterioles and venules then dilate, increasing blood flow and causing local redness and heat. Cell mediators like histamine and bradykinin are released, increasing vascular permeability and allowing protein-rich fluids to flow into the area, causing swelling and pain.
Q3: How do white blood cells respond during the cellular stage of inflammation?
During the cellular stage, white blood cells, including neutrophils and monocytes, pass through blood vessels and rush to the injury site, increasing overall WBC count. These cells engulf pathogens through phagocytosis and ingest cell debris and foreign material. This phagocytic activity releases pyrogens from bacterial cells, which trigger fever as part of the systemic inflammatory response.
Q4: What role do cell mediators play in the inflammatory response?
Cell mediators such as histamine, bradykinin, and prostaglandins are released in the injured area during inflammation. These mediators increase vascular permeability, allowing protein- and immune-cell-rich fluids to escape blood vessels and enter surrounding tissue. This fluid accumulation causes the characteristic swelling, pain, and temporary loss of function associated with acute inflammation.
Q5: How long can inflammation last and what are the different types?
Inflammation can be acute, lasting days or weeks, or chronic, lasting several months to years. Acute inflammation is the initial response to injury or infection, characterized by vascular and cellular changes. Chronic inflammation represents a prolonged response when the body cannot fully resolve the initial insult, potentially leading to tissue damage and systemic complications.
Q6: What systemic signs indicate that inflammation is occurring throughout the body?
Systemic inflammation produces signs beyond the local injury site, including fever, increased white blood cell count, malaise, anorexia, nausea, and vomiting. Lymph node enlargement may also occur as lymphoid tissues respond to infection. In severe cases, organ failure can develop, indicating that the inflammatory response has become widespread and potentially harmful.
Q7: Why does fever develop as part of the inflammatory response?
Fever develops when white blood cells engulf pathogens through phagocytosis during the cellular stage of inflammation. This phagocytic activity releases pyrogens from bacterial cells, which are fever-inducing substances. Pyrogens circulate through the bloodstream and act on the body's temperature-regulating center, raising the set point and causing fever as part of the systemic inflammatory defense.