Mus musculus musculus strain:C57BL/6 Genome sequencing and assembly. Mus musculus musculus strain:C57BL/6
收藏NIAID Data Ecosystem2026-05-01 收录
官方服务:
资源简介:
To study the mechanism of skeletal muscle regeneration.
应用场景:
创建时间:
2023-05-11
相关数据集
A Unique Twist-Dependent Progenitor Cell Contributes to Adult Skeletal Muscle [Tw2 overexpression]
Skeletal muscle possesses remarkable regenerative potential due to satellite cells, a stem cell population located beneath the muscle basal lamina. By lineage tracing of progenitor cells expressing th
干细胞与再生医学数据中心2022-02-20 更新70
MicroRNA-seq data of mouse during skeletal muscle regeneration after acute injury
MicroRNAs (miRNAs) are short noncoding RNAs that impact protein expression, regulating a variety of physiological processes. To date, a few miRNAs have been implicated in the process of muscle regener
NIAID Data Ecosystem30
Loss of STAT1 in Bone Marrow-Derived Cells Accelerates Skeletal Muscle Regeneration
BackgroundSkeletal muscle regeneration is a complex process which is not yet completely understood. Evidence suggested that the Janus kinase (JAK)–signal transducer and activator of transcription (STA
NIAID Data Ecosystem20
Dynamic lipid mediator changes support infiltrating macrophage subtype transitions during skeletal muscle injury and regeneration
Time-dependent profiles were recapitulated in sorted neutrophils and Ly6Chigh and Ly6Clow muscle macrophages, with a distinct pro-resolving signature observed in Ly6Clow reparative macrophages. RNA-se
NIAID Data Ecosystem40
Additional file 5 of Skeletal muscle regeneration failure in ischemic-damaged limbs is associated with pro-inflammatory macrophages and premature differentiation of satellite cells
Additional file 5: Table S4. The differentially expressed genes and their enriched GO terms in macrophages purified from BALB/c versus C57BL6 mice at 3 days post HLI surgery. Gene expression is quanti
NIAID Data Ecosystem30



