phagolysosomal fusion
溶酶体融合
phagolysosomal pathway
溶酶体途径
phagolysosomal degradation
溶酶体降解
phagolysosomal membrane
溶酶体膜
induced phagolysosomal
诱导的溶酶体
phagolysosomal compartment
溶酶体室
phagolysosomal process
溶酶体过程
altered phagolysosomal
改变的溶酶体
the study investigated the role of phagolysosomal fusion in bacterial clearance.
该研究调查了溶酶体吞噬体融合在细菌清除中的作用。
defective phagolysosomal trafficking contributes to impaired pathogen degradation.
溶酶体吞噬体运输缺陷导致病原体降解受损。
formation of phagolysosomal structures is crucial for effective autophagy.
溶酶体吞噬体结构的形成对有效的自噬至关重要。
we analyzed the dynamics of phagolysosomal membrane remodeling during infection.
我们分析了在感染期间溶酶体吞噬体膜重塑的动态变化。
the phagolysosomal pathway is essential for clearing cellular debris after apoptosis.
溶酶体吞噬体途径对于清除细胞凋亡后的细胞碎片至关重要。
mutations in genes affecting phagolysosomal function can lead to severe immunodeficiency.
影响溶酶体吞噬体功能的基因突变可能导致严重的免疫缺陷。
microbes often evade destruction by disrupting phagolysosomal maturation.
微生物通常通过干扰溶酶体吞噬体成熟来逃避破坏。
the phagolysosomal environment is highly acidic, facilitating enzymatic digestion.
溶酶体吞噬体环境呈高度酸性,有利于酶促消化。
we observed increased phagolysosomal biogenesis in response to inflammatory stimuli.
我们观察到对炎症刺激的反应中溶酶体吞噬体发生增加。
the efficiency of phagolysosomal degradation is influenced by lipid composition.
溶酶体吞噬体降解的效率受脂质组成的影响。
targeting phagolysosomal processes represents a potential therapeutic strategy.
针对溶酶体吞噬体过程代表了一种潜在的治疗策略。
phagolysosomal fusion
溶酶体融合
phagolysosomal pathway
溶酶体途径
phagolysosomal degradation
溶酶体降解
phagolysosomal membrane
溶酶体膜
induced phagolysosomal
诱导的溶酶体
phagolysosomal compartment
溶酶体室
phagolysosomal process
溶酶体过程
altered phagolysosomal
改变的溶酶体
the study investigated the role of phagolysosomal fusion in bacterial clearance.
该研究调查了溶酶体吞噬体融合在细菌清除中的作用。
defective phagolysosomal trafficking contributes to impaired pathogen degradation.
溶酶体吞噬体运输缺陷导致病原体降解受损。
formation of phagolysosomal structures is crucial for effective autophagy.
溶酶体吞噬体结构的形成对有效的自噬至关重要。
we analyzed the dynamics of phagolysosomal membrane remodeling during infection.
我们分析了在感染期间溶酶体吞噬体膜重塑的动态变化。
the phagolysosomal pathway is essential for clearing cellular debris after apoptosis.
溶酶体吞噬体途径对于清除细胞凋亡后的细胞碎片至关重要。
mutations in genes affecting phagolysosomal function can lead to severe immunodeficiency.
影响溶酶体吞噬体功能的基因突变可能导致严重的免疫缺陷。
microbes often evade destruction by disrupting phagolysosomal maturation.
微生物通常通过干扰溶酶体吞噬体成熟来逃避破坏。
the phagolysosomal environment is highly acidic, facilitating enzymatic digestion.
溶酶体吞噬体环境呈高度酸性,有利于酶促消化。
we observed increased phagolysosomal biogenesis in response to inflammatory stimuli.
我们观察到对炎症刺激的反应中溶酶体吞噬体发生增加。
the efficiency of phagolysosomal degradation is influenced by lipid composition.
溶酶体吞噬体降解的效率受脂质组成的影响。
targeting phagolysosomal processes represents a potential therapeutic strategy.
针对溶酶体吞噬体过程代表了一种潜在的治疗策略。
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