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ATCC
mesenchymal stem cell basal medium Mesenchymal Stem Cell Basal Medium, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/result/mesenchymal stem cell basal medium/product/ATCC Average 99 stars, based on 1 article reviews
mesenchymal stem cell basal medium - by Bioz Stars,
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Dawley Inc
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bone marrow stem cells bmscs - by Bioz Stars,
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Geron Bio
embryonic stem cells escs ![]() Embryonic Stem Cells Escs, supplied by Geron Bio, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/result/embryonic stem cells escs/product/Geron Bio Average 86 stars, based on 1 article reviews
embryonic stem cells escs - by Bioz Stars,
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Procell Inc
rat bone marrow mesenchymal stem cells mscs ![]() Rat Bone Marrow Mesenchymal Stem Cells Mscs, supplied by Procell Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/result/rat bone marrow mesenchymal stem cells mscs/product/Procell Inc Average 86 stars, based on 1 article reviews
rat bone marrow mesenchymal stem cells mscs - by Bioz Stars,
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atcc
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acs-1020 - by Bioz Stars,
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ATCC
mesenchymal stem cells ascs ![]() Mesenchymal Stem Cells Ascs, supplied by ATCC, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/result/mesenchymal stem cells ascs/product/ATCC Average 96 stars, based on 1 article reviews
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Bluebird Bio
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ATCC
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Nanotherapeutics
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Journal: Regenerative Therapy
Article Title: Engineering cardiac regeneration using stem cells: Cellular sources, differentiation signatures, targeted delivery, and functional recovery
doi: 10.1016/j.reth.2026.101120
Figure Lengend Snippet: Pluripotency and differentiating capacity of embryonic stem cells (ESCs). ESCs are created from the inner cell mass (ICM) of the blastocyst stage. They can develop into all three germ layers: the ectoderm (which later gives rise to the brain, skin, and eyes), the endoderm (which gives rise to the lungs, liver, and gut), and the mesoderm (which gives rise to the bones, blood, and muscles). ESCs undergo in vitro differentiation using specific protocols, forming embryoid bodies that mimic early-stage embryogenesis. They may also be implanted in vivo, where they can assist in tissue regeneration. Still, they may, in rare cases, develop into teratomas: complex tumors that contain tissues from all three germ layers. ESCs may also assist in repairing organs, although they may be unregulated and pose risks such as teratocarcinoma.
Article Snippet:
Techniques: Muscles, In Vitro, In Vivo
Journal: Materials Today Bio
Article Title: Targeted antibacterial and mesenchymal stem cell-modulatory hydrogel for periodontitis treatment
doi: 10.1016/j.mtbio.2026.103043
Figure Lengend Snippet: Schematic diagram of the ACP@Z@C hydrogel for periodontitis treatment. The BA-modified CC hydrogel for the delivery of CAPE-loading MOF, which accomplishes the targeted and controlled release of ZIF-8@CAPE in oral microenvironment. The released ZIF-8@CAPE interferes with multiple periodontitis-driven factors, including anti-bacteria, ROS-scavenging, and anti-inflammation. These potency transforms into periodontal tissue regeneration via rescuing the impaired osteogenic differentiation of MSCs.
Article Snippet:
Techniques: Modification, Bacteria
Journal: Materials Today Bio
Article Title: Targeted antibacterial and mesenchymal stem cell-modulatory hydrogel for periodontitis treatment
doi: 10.1016/j.mtbio.2026.103043
Figure Lengend Snippet: Inhibiting inflammatory factor by adjusting mitochondrial dysfunction via SIRT1/p-AMPK/PGC-1α pathway. (A) Schematic illustration of the molecular mechanism by which Z@C regulates mitochondrial dysfunction and suppresses inflammatory factor production in MSCs. (B) Representative western blot bands and quantitative analysis of (C) SIRT1, (D) p-AMPK, (E) PGC-1α, (F) NLRP3, and (G) Pro-Caspase-1 protein expression. Data were presented as mean ± SD, n = 3, ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001. Expression levels of (H) SIRT1, (I) PGC-1α, (J) NLRP3, (K) IL-1β, (L) IL-6, and (M) TNF-α following Z@C treatment. Data were presented as mean ± SD, n = 5, ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001. (N) Immunofluorescence staining of SIRT1 expression in MSCs following different groups and (O) quantitative analysis. Data were presented as mean ± SD, n = 3, ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.
Article Snippet:
Techniques: Western Blot, Expressing, Immunofluorescence, Staining