activated microgliacytes
活化的小膠質細胞
resting microgliacyte
靜止的小膠質細胞
microgliacyte activation
小膠質細胞活化
ramified microgliacytes
樹枝狀小膠質細胞
microgliacyte markers
小膠質細胞標記物
reactive microgliacyte
反應性小膠質細胞
microgliacyte proliferation
小膠質細胞增殖
senescent microgliacytes
衰老的小膠質細胞
microgliacyte density
小膠質細胞密度
phagocytic microgliacyte
吞噬性小膠質細胞
activated microgliacytes release pro-inflammatory cytokines that contribute to neuroinflammation.
活化的小膠質細胞會釋放促炎性細胞因子,促進神經發炎。
microgliacyte activation plays a dual role in both protecting and damaging the central nervous system.
小膠質細胞的活化在保護和損害中樞神經系統方面具有雙重作用。
researchers observed increased microgliacyte proliferation in the hippocampus of alzheimer's disease models.
研究人員在阿茲海默病模型的海馬體中觀察到小膠質細胞增殖增加。
microgliacyte migration toward injury sites is guided by chemotactic signals from damaged tissue.
小膠質細胞向受損部位的遷移是由受損組織的化學趨向信號所引導。
the morphology of microgliacytes changes dramatically from ramified to amoeboid during activation.
小膠質細胞在活化過程中,其形態會從分枝狀劇烈改變為阿米巴狀。
microgliacytes express specific markers such as iba1 and cd68 that indicate their activation state.
小膠質細胞表達特定的標記物,如iba1和cd68,這些標記物可指示其活化狀態。
chronic microgliacyte activation is associated with progressive neuronal loss in multiple sclerosis.
慢性小膠質細胞活化與多發性硬化症中的進行性神經元損失有關。
microgliacytes communicate with neurons through direct cell-to-cell contact and soluble factors.
小膠質細胞通過細胞間直接接觸和可溶性因子與神經元進行溝通。
resting microgliacytes continuously survey their microenvironment for signs of injury or infection.
靜止的小膠質細胞會持續監測其微環境,以尋找損傷或感染的跡象。
the density of microgliacytes varies across different regions of the brain.
小膠質細胞的密度在大腦的不同區域中有所不同。
neuroinflammation involves the coordinated response of microgliacytes and peripheral immune cells.
神經發炎涉及小膠質細胞和周圍免疫細胞的協調反應。
microgliacytes are the primary resident immune cells of the central nervous system.
小膠質細胞是中樞神經系統的主要常駐免疫細胞。
activated microgliacytes
活化的小膠質細胞
resting microgliacyte
靜止的小膠質細胞
microgliacyte activation
小膠質細胞活化
ramified microgliacytes
樹枝狀小膠質細胞
microgliacyte markers
小膠質細胞標記物
reactive microgliacyte
反應性小膠質細胞
microgliacyte proliferation
小膠質細胞增殖
senescent microgliacytes
衰老的小膠質細胞
microgliacyte density
小膠質細胞密度
phagocytic microgliacyte
吞噬性小膠質細胞
activated microgliacytes release pro-inflammatory cytokines that contribute to neuroinflammation.
活化的小膠質細胞會釋放促炎性細胞因子,促進神經發炎。
microgliacyte activation plays a dual role in both protecting and damaging the central nervous system.
小膠質細胞的活化在保護和損害中樞神經系統方面具有雙重作用。
researchers observed increased microgliacyte proliferation in the hippocampus of alzheimer's disease models.
研究人員在阿茲海默病模型的海馬體中觀察到小膠質細胞增殖增加。
microgliacyte migration toward injury sites is guided by chemotactic signals from damaged tissue.
小膠質細胞向受損部位的遷移是由受損組織的化學趨向信號所引導。
the morphology of microgliacytes changes dramatically from ramified to amoeboid during activation.
小膠質細胞在活化過程中,其形態會從分枝狀劇烈改變為阿米巴狀。
microgliacytes express specific markers such as iba1 and cd68 that indicate their activation state.
小膠質細胞表達特定的標記物,如iba1和cd68,這些標記物可指示其活化狀態。
chronic microgliacyte activation is associated with progressive neuronal loss in multiple sclerosis.
慢性小膠質細胞活化與多發性硬化症中的進行性神經元損失有關。
microgliacytes communicate with neurons through direct cell-to-cell contact and soluble factors.
小膠質細胞通過細胞間直接接觸和可溶性因子與神經元進行溝通。
resting microgliacytes continuously survey their microenvironment for signs of injury or infection.
靜止的小膠質細胞會持續監測其微環境,以尋找損傷或感染的跡象。
the density of microgliacytes varies across different regions of the brain.
小膠質細胞的密度在大腦的不同區域中有所不同。
neuroinflammation involves the coordinated response of microgliacytes and peripheral immune cells.
神經發炎涉及小膠質細胞和周圍免疫細胞的協調反應。
microgliacytes are the primary resident immune cells of the central nervous system.
小膠質細胞是中樞神經系統的主要常駐免疫細胞。
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