ExtracellMatrix's profile picture. An online resource for the extracellular matrix and tissue engineering research community. Part of the @STEMCELLTech Science News service.

Extracellular Matrix News

@ExtracellMatrix

An online resource for the extracellular matrix and tissue engineering research community. Part of the @STEMCELLTech Science News service.

مثبتة

🥼 Science News by @STEMCELLTech can help you stay on top of the latest cell biology research! 💌 Our website and newsletters keep scientists current with the latest peer-reviewed research, as well as industry and policy news. Learn more 👉 //bit.ly/3Xn6mwV

ExtracellMatrix's tweet image. 🥼 Science News by @STEMCELLTech can help you stay on top of the latest cell biology research!

💌 Our website and newsletters keep scientists current with the latest peer-reviewed research, as well as industry and policy news. 

Learn more 👉 //bit.ly/3Xn6mwV

Drs. Georgia Squyres and Dianne Newman at @Caltech reveal how the architecture of extracellular DNA in the biofilm matrix is controlled by single-cell lysis during Pseudomonas aeruginosa biofilm development. @PNASNews | bit.ly/4n7Enve

ExtracellMatrix's tweet image. Drs. Georgia Squyres and Dianne Newman at @Caltech reveal how the architecture of extracellular DNA in the biofilm matrix is controlled by single-cell lysis during Pseudomonas aeruginosa biofilm development.

@PNASNews | bit.ly/4n7Enve
ExtracellMatrix's tweet image. Drs. Georgia Squyres and Dianne Newman at @Caltech reveal how the architecture of extracellular DNA in the biofilm matrix is controlled by single-cell lysis during Pseudomonas aeruginosa biofilm development.

@PNASNews | bit.ly/4n7Enve

🧫 Tissue engineering (TE) fundamentals were applied to mimic the bone ECM and cells' microenvironment. These findings demonstrate the potential of chitosan/MβCHNC biomaterial for TE as alveolar bone regeneration. 👉 bit.ly/4napgB3

ExtracellMatrix's tweet image. 🧫 Tissue engineering (TE) fundamentals were applied to mimic the bone ECM and cells' microenvironment.

These findings demonstrate the potential of chitosan/MβCHNC biomaterial for TE as alveolar bone regeneration.

👉 bit.ly/4napgB3

This study investigated the anti-fibrotic potential of celecoxib, a selective cyclooxygenase-2 inhibitor, and elucidated its underlying mechanisms. Check it out!👉 bit.ly/473vwpP

ExtracellMatrix's tweet image. This study investigated the anti-fibrotic potential of celecoxib, a selective cyclooxygenase-2 inhibitor, and elucidated its underlying mechanisms.

Check it out!👉 bit.ly/473vwpP

🔬 This study out of @KingsCollegeLon shows that fibronectin stimulates human VSMCs to secrete small extracellular vesicles by activating the β1 integrin/FAK/Src pathway as well as Arp2/3-dependent branching of the actin cytoskeleton. @eLife | bit.ly/3WsD2US

ExtracellMatrix's tweet image. 🔬 This study out of @KingsCollegeLon shows that fibronectin stimulates human VSMCs to secrete small extracellular vesicles by activating the β1 integrin/FAK/Src pathway as well as Arp2/3-dependent branching of the actin cytoskeleton.

@eLife | bit.ly/3WsD2US

This study from @KingsCollegeLon shows that fibronectin stimulates human vascular smooth muscle cells to secrete small extracellular vesicles by activating the β1 integrin/FAK/Src pathway and Arp2/3-dependent branching of the actin cytoskeleton. @eLife | bit.ly/3WsD2US

ExtracellMatrix's tweet image. This study from @KingsCollegeLon shows that fibronectin stimulates human vascular smooth muscle cells to secrete small extracellular vesicles by activating the β1 integrin/FAK/Src pathway and Arp2/3-dependent branching of the actin cytoskeleton.

@eLife | bit.ly/3WsD2US

🔬 Investigators assessed the potential mechanisms of an enriched Vitis vinifera in mediating mineralization using both constituted type-1 #collagen scaffolds and dentin matrix substrate. 🦷 bit.ly/4mRjNPz

ExtracellMatrix's tweet image. 🔬 Investigators assessed the potential mechanisms of an enriched Vitis vinifera in mediating mineralization using both constituted type-1 #collagen scaffolds and dentin matrix substrate.

🦷 bit.ly/4mRjNPz

🧫 Scientists used electrospun matrices to culture Jurkat T-cells and observed that the cells remain entrapped in these matrices, facilitating their growth and clustering, which are the key phenomena for their activation and expansion. 🔗 rsc.li/42yYStr

ExtracellMatrix's tweet image. 🧫 Scientists used electrospun matrices to culture Jurkat T-cells and observed that the cells remain entrapped in these matrices, facilitating their growth and clustering, which are the key phenomena for their activation and expansion. 

🔗 rsc.li/42yYStr

🧫 Investigators explored nine post-translational modifications—methylation, acetylation, SUMOylation, Neddylation, phosphorylation, crotonylation, glycosylation, lactylation, and ubiquitination—each implicated in the pathogenesis of hepatic fibrosis. 👉 bit.ly/4oddhE5

ExtracellMatrix's tweet image. 🧫 Investigators explored nine post-translational modifications—methylation, acetylation, SUMOylation, Neddylation, phosphorylation, crotonylation, glycosylation, lactylation, and ubiquitination—each implicated in the pathogenesis of hepatic fibrosis.

👉 bit.ly/4oddhE5

🥼 Investigators used proteomic and phenotypic analyses to compare human dermal fibroblasts, dental pulp stem cells, and adipose-derived mesenchymal stem cells in terms of morphology, cell surface markers, differentiation, and proteomic profile. 🔗 bit.ly/3IHUHVr

ExtracellMatrix's tweet image. 🥼 Investigators used proteomic and phenotypic analyses to compare human dermal fibroblasts, dental pulp stem cells, and adipose-derived mesenchymal stem cells in terms of morphology, cell surface markers, differentiation, and proteomic profile.

🔗 bit.ly/3IHUHVr

🦴 JAK2-mutated myeloproliferative neoplasms exhibit an intrinsic activation of IFN-γ signaling associated with changes in the bone marrow TME and patients’ outcome. @LeukemiaJnl | go.nature.com/46IN3n3

ExtracellMatrix's tweet image. 🦴 JAK2-mutated myeloproliferative neoplasms exhibit an intrinsic activation of IFN-γ signaling associated with changes in the bone marrow TME and patients’ outcome.

@LeukemiaJnl | go.nature.com/46IN3n3

🧫 Researchers investigated differences in ECM production and mechanical performance of tissue-engineered vascular grafts cultured with placental mesenchymal stem cells and smooth muscle cells in static and dynamic conditions. @BiomaterialsAdv | bit.ly/42Z4qNM

ExtracellMatrix's tweet image. 🧫 Researchers investigated differences in ECM production and mechanical performance of tissue-engineered vascular grafts cultured with placental mesenchymal stem cells and smooth muscle cells in static and dynamic conditions.

@BiomaterialsAdv | bit.ly/42Z4qNM

👇 Check this one out! 🦷 Scientists focused on the pathological changes of the gingival connective tissues from diabetic periodontitis and identified the ECM pathway as the key regulatory pathway. 👓 bit.ly/4nzO72q

ExtracellMatrix's tweet image. 👇 Check this one out!

🦷 Scientists focused on the pathological changes of the gingival connective tissues from diabetic periodontitis and identified the ECM pathway as the key regulatory pathway.

👓 bit.ly/4nzO72q

💪 Emily Roloson and scientists at @hseas further the understanding of the role of tissue mechanical properties in directing muscle cell function and provide a tool for guiding specific behaviors necessary for muscle regeneration. 🔗 bit.ly/4muD89f

ExtracellMatrix's tweet image. 💪 Emily Roloson and scientists at @hseas  further the understanding of the role of tissue mechanical properties in directing muscle cell function and provide a tool for guiding specific behaviors necessary for muscle regeneration.

🔗 bit.ly/4muD89f

🧫 Researchers optimize a method for complete decellularization of rat esophagus and to solubilize the decellularized extracellular matrix proteins to evaluate in vitro properties for scaffold fabrication. 🥼 bit.ly/4mIDUzA

ExtracellMatrix's tweet image. 🧫 Researchers optimize a method for complete decellularization of rat esophagus and to solubilize the decellularized extracellular matrix proteins to evaluate in vitro properties for scaffold fabrication.

🥼 bit.ly/4mIDUzA

🔬 Investigators leveraged RNA-seq data to predict tumor matrix stiffness, aiming to reveal mechanical properties by molecular signatures across various cancer types. @IntJCanc | bit.ly/3KDzHzv

ExtracellMatrix's tweet image. 🔬 Investigators leveraged RNA-seq data to predict tumor matrix stiffness, aiming to reveal mechanical properties by molecular signatures across various cancer types. 

@IntJCanc | bit.ly/3KDzHzv

🧫 This review evaluates hydrogels as ECM mimics for 3D cell cultures, revisiting key ECM properties to replicate and summarize the impact of biochemical, structural, and mechanical features on cell behavior. 👉 @BioMaterSci | rsc.li/4mAcQSX

ExtracellMatrix's tweet image. 🧫 This review evaluates hydrogels as ECM mimics for 3D cell cultures, revisiting key ECM properties to replicate and summarize the impact of biochemical, structural, and mechanical features on cell behavior.

👉 @BioMaterSci | rsc.li/4mAcQSX

💪 This study furthered the understanding of the role of tissue mechanical properties in directing muscle cell function and provided a tool for guiding specific behaviors necessary for muscle regeneration. 👉 bit.ly/4muD89f

ExtracellMatrix's tweet image. 💪 This study furthered the understanding of the role of tissue mechanical properties in directing muscle cell function and provided a tool for guiding specific behaviors necessary for muscle regeneration.

👉 bit.ly/4muD89f

🐟 Researchers demonstrate that Leucine could promote #collagen deposition by inhibiting autophagy, providing novel insights into the mechanism underlying amino acid-regulated protein metabolism in vertebrates. 🔗 bit.ly/46D86WF

ExtracellMatrix's tweet image. 🐟 Researchers demonstrate that Leucine could promote #collagen deposition by inhibiting autophagy, providing novel insights into the mechanism underlying amino acid-regulated protein metabolism in vertebrates.

🔗 bit.ly/46D86WF

📊 Researchers utilized single-cell RNA sequencing, spatial transcriptomics, and a combination of in vivo and in vitro models to decode the dynamics of tumor-stroma interactions during human #LUAD progression. @oncogenejournal | go.nature.com/4mz6d3k

ExtracellMatrix's tweet image. 📊 Researchers utilized single-cell RNA sequencing, spatial transcriptomics, and a combination of in vivo and in vitro models to decode the dynamics of tumor-stroma interactions during human #LUAD progression.

@oncogenejournal | go.nature.com/4mz6d3k

Loading...

Something went wrong.


Something went wrong.