osteoclasts resorb
骨细胞吸收
osteoclast activity
骨细胞活性
osteoclasts function
骨细胞功能
osteoclast differentiation
骨细胞分化
osteoclasts degrade
骨细胞降解
osteoclast markers
骨细胞标志物
osteoclast inhibition
骨细胞抑制
osteoclast formation
骨细胞形成
osteoclasts mediate
骨细胞介导
osteoclast precursors
骨细胞前体
osteoclasts are responsible for bone resorption during remodeling.
成骨细胞负责在骨骼重塑过程中进行骨吸收。
excessive osteoclast activity can lead to osteoporosis.
过度活跃的成骨细胞可能导致骨质疏松症。
researchers are investigating ways to inhibit osteoclast formation.
研究人员正在研究抑制成骨细胞形成的方法。
the rankl/rank/opg pathway regulates osteoclast differentiation.
rankl/rank/opg通路调节成骨细胞分化。
bisphosphonates are drugs that target and inhibit osteoclast function.
双磷酸盐是靶向并抑制成骨细胞功能的药物。
osteoclast precursors reside in the bone marrow environment.
成骨细胞前体存在于骨髓环境中。
the fusion of osteoclast precursors forms mature osteoclasts.
成骨细胞前体的融合形成成熟的成骨细胞。
osteoclast activity is crucial for bone fracture healing.
成骨细胞的活性对骨折愈合至关重要。
increased osteoclast numbers are observed in some cancers.
在某些癌症中观察到成骨细胞数量增加。
macrophages and osteoclasts share some molecular mechanisms.
巨噬细胞和成骨细胞共享一些分子机制。
the differentiation of osteoclasts is a tightly regulated process.
成骨细胞的分化是一个严格调控的过程。
osteoclasts resorb
骨细胞吸收
osteoclast activity
骨细胞活性
osteoclasts function
骨细胞功能
osteoclast differentiation
骨细胞分化
osteoclasts degrade
骨细胞降解
osteoclast markers
骨细胞标志物
osteoclast inhibition
骨细胞抑制
osteoclast formation
骨细胞形成
osteoclasts mediate
骨细胞介导
osteoclast precursors
骨细胞前体
osteoclasts are responsible for bone resorption during remodeling.
成骨细胞负责在骨骼重塑过程中进行骨吸收。
excessive osteoclast activity can lead to osteoporosis.
过度活跃的成骨细胞可能导致骨质疏松症。
researchers are investigating ways to inhibit osteoclast formation.
研究人员正在研究抑制成骨细胞形成的方法。
the rankl/rank/opg pathway regulates osteoclast differentiation.
rankl/rank/opg通路调节成骨细胞分化。
bisphosphonates are drugs that target and inhibit osteoclast function.
双磷酸盐是靶向并抑制成骨细胞功能的药物。
osteoclast precursors reside in the bone marrow environment.
成骨细胞前体存在于骨髓环境中。
the fusion of osteoclast precursors forms mature osteoclasts.
成骨细胞前体的融合形成成熟的成骨细胞。
osteoclast activity is crucial for bone fracture healing.
成骨细胞的活性对骨折愈合至关重要。
increased osteoclast numbers are observed in some cancers.
在某些癌症中观察到成骨细胞数量增加。
macrophages and osteoclasts share some molecular mechanisms.
巨噬细胞和成骨细胞共享一些分子机制。
the differentiation of osteoclasts is a tightly regulated process.
成骨细胞的分化是一个严格调控的过程。
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