[HTML][HTML] The transcription factor NF-κB in stem cells and development
C Kaltschmidt, JFW Greiner, B Kaltschmidt - Cells, 2021 - mdpi.com
NF-κB (nuclear factor kappa B) belongs to a family of transcription factors known to regulate
a broad range of processes such as immune cell function, proliferation and cancer …
a broad range of processes such as immune cell function, proliferation and cancer …
Brief review of models of ectopic bone formation
MA Scott, B Levi, A Askarinam, A Nguyen… - Stem cells and …, 2012 - liebertpub.com
Ectopic bone formation is a unique biologic entity—distinct from other areas of skeletal
biology. Animal research models of ectopic bone formation most often employ rodent …
biology. Animal research models of ectopic bone formation most often employ rodent …
[HTML][HTML] Donor age and cell passage affects differentiation potential of murine bone marrow-derived stem cells
JD Kretlow, YQ Jin, W Liu, WJ Zhang, TH Hong, G Zhou… - BMC cell biology, 2008 - Springer
Background Bone marrow-derived mesenchymal stem cells (BMSCs) are a widely
researched adult stem cell population capable of differentiation into various lineages …
researched adult stem cell population capable of differentiation into various lineages …
Isolation of a slowly adhering cell fraction containing stem cells from murine skeletal muscle by the preplate technique
B Gharaibeh, A Lu, J Tebbets, B Zheng, J Feduska… - Nature protocols, 2008 - nature.com
This protocol details a procedure, known as the modified preplate technique, which is
currently used in our laboratory to isolate muscle cells on the basis of selective adhesion to …
currently used in our laboratory to isolate muscle cells on the basis of selective adhesion to …
[HTML][HTML] Donor sex and age influence the chondrogenic potential of human femoral bone marrow stem cells
OBJECTIVE: Damaged articular cartilage does not heal well and can progress to
osteoarthritis (OA). Human bone marrow stem cells (BMC) are promising cells for articular …
osteoarthritis (OA). Human bone marrow stem cells (BMC) are promising cells for articular …
Application of stem cells in regeneration medicine
Y Jin, S Li, Q Yu, T Chen, D Liu - MedComm, 2023 - Wiley Online Library
Regeneration is a complex process affected by many elements independent or combined,
including inflammation, proliferation, and tissue remodeling. Stem cells is a class of primitive …
including inflammation, proliferation, and tissue remodeling. Stem cells is a class of primitive …
[HTML][HTML] Bone tissue engineering using human cells: a comprehensive review on recent trends, current prospects, and recommendations
The use of proper cells for bone tissue engineering remains a major challenge worldwide.
Cells play a pivotal role in the repair and regeneration of the bone tissue in vitro and in vivo …
Cells play a pivotal role in the repair and regeneration of the bone tissue in vitro and in vivo …
[HTML][HTML] Precise immunomodulation of the M1 to M2 macrophage transition enhances mesenchymal stem cell osteogenesis and differs by sex
Objectives Up to 10% of fractures result in undesirable outcomes, for which female sex is a
risk factor. Cellular sex differences have been implicated in these different healing …
risk factor. Cellular sex differences have been implicated in these different healing …
Stem cells for the treatment of skeletal muscle injury
Skeletal muscle injuries are extremely common, accounting for up to 35%–55% of all sports
injuries and quite possibly affecting all musculoskeletal traumas. These injuries result in the …
injuries and quite possibly affecting all musculoskeletal traumas. These injuries result in the …
[HTML][HTML] Mesenchymal stem cells in the treatment of osteogenesis imperfecta
E Lang, JA Semon - Cell Regeneration, 2023 - Springer
Osteogenesis imperfecta (OI) is a disease caused by mutations in different genes resulting
in mild, severe, or lethal forms. With no cure, researchers have investigated the use of cell …
in mild, severe, or lethal forms. With no cure, researchers have investigated the use of cell …