This review highlights hydrogel-based #scaffolds as promising strategies for #TendonRepair, combining natural & synthetic materials, MSCs, #exosomes, and self-healing properties to enhance regeneration, prevent adhesion, and improve clinical outcomes.
Read: doi.org/10.1016/j.ge...
Piezoelectric scaffold for tissue engineering: material, structure, fabrication and function
This review explores #piezoelectric #scaffolds for #TissueEngineering, summarizing ceramics, polymers, and natural materials, fabrication and structural design strategies, and their roles in #SmartSensing, while outlining challenges and future research.
#IJEM: doi.org/10.1088/2631...
This study compares natural #scaffolds #Oridonin and ammosamide B as #theranostic probes for #Alzheimers targets, revealing aromaticity-driven optics and tunable binding to BACE1, #ADAM10, and #Neprilysin for early detection and precision intervention.
#STTT: doi.org/10.1038/s413...
Near-infrared IR780 dye-loaded poloxamer 407 micelles: Preparation and in vitro assessment of anticancer activity
IR780-loaded #Poloxamer407 #micelles show high #encapsulation efficiency, long-term stability, and enhanced #anticancer activity in MCF-7 cells, highlighting their potential as durable #scaffolds for broad #Cancer Therapy applications.
Open Chemistry: doi.org/10.1515/chem...
This review summarizes how #macrophage-driven #neurovascularization supports nerve regeneration after #PeripheralNerveInjury & outlines in vitro #prevascularization, in vivo prevascularization, and in situ stimulation strategies. #scaffolds
#OpenAccess #IJEM: doi.org/10.1088/2631...
This review covers low-temperature-field-assisted fabrication methods— #FreezeCasting, #cryogenic #3DPrinting, and freeze spinning—that use ice templating, enabling cross-scale #scaffolds that better mimic natural tissues in #TissueEngineering.
#IJEM: doi.org/10.1088/2631...
Researchers developed superelastic NiTi #scaffolds with tunable mechanical and #MassTransfer properties via multiscale optimization and gyroid-sheet design, offering solutions for #BoneRepair & multifunctional #Metamaterials.
#MaterialsScience
#IJEM: doi.org/10.1088/2631...
#SymbolicPersonaCoding framework where anchors act as low-energy #attractors and resonance #scaffolds stabilize alignment. Mitigates persona collapse via identity stability, tonal coherence, and adversarial resistance. Paper: zenodo.org/records/1716...
#LLM #SPC #RLHF #Alignment #AISafety #AGI #ASI
Reminds me of a game screen
#photography #construction #scaffolds
🔥 A green, oxidant-free electrosynthesis forms indole-fused polycyclics 𝘷𝘪𝘢 radical #domino-coupling of N-methacryloylindoles and α-allyl methylenes. The method works in air, tolerates water/oxygen, and offers a practical route to #bioactive #scaffolds.
🔗 doi.org/10.1039/D5QO00353A
#Neuroregeneration #Biomaterials #TissueEngineering #Neuroscience #EngineeredRegeneration #Scaffolds #centralnervoussysteminjury #diamondscaffold
🧠 A new review in @intjextremmanuf.bsky.social highlights how #macrophage-triggered #angiogenesis supports nerve regeneration and compares three strategies to engineer vascularized nerve #scaffolds.
🔗 doi.org/10.1088/2631-7990/ad92c8
#OpenAccess #IJEM #ExtremeManufacturing #Neurovascularization
#DNA #scaffolds enable #self-#assembling #3D #electronic #devices
Researchers at Columbia Engineering have for the first time used DNA to help create 3D electronically operational devices with #nanometer-size features. techxplore.com/news/...
Introducing #HaloScreening: a ready-to-use 96-well #cellculture plate embedded with microfibrous 3D PLLA #scaffolds, produced with patented HaloSpin technology!
Specifically designed for #HTS in industrial or research settings.
ilexlife.com/products/gel...
#3Dcellculture #drugscreening #toxicology
Visible light-induced 3D #bioprinting of mesenchymal stem cell spheroids facilitates the creation of composite #scaffolds for comprehensive intervertebral #disc (IVD) repair.
Open Access #IJEM👉: doi.org/10.1088/2631...
#ExtremeManufacturing #addictivemanufacturing #3dprinting #biotechnology
3D-printed coiled poly(ε-caprolactone) (PCL) #microfibers improved elasticity, cell proliferation, cytoskeletal tension, and osteogenic activities in stem cells.
Open Access #IJEM👉: doi.org/10.1088/2631-7990/ad91fa
#ExtremeManufacturing #3DPrinting #AdditiveManufacturing #scaffolds #bio #bone
🧩Inspired by #LEGO®, modular #scaffolds with 135 MPa compressive strength and 17 MPa bending strength offer a fast, personalized solution for #bone regeneration.
Open Access #IJEM:👉 doi.org/10.1088/2631-7990/ad943f
#ExtremeManufacturing #bio #BioMaterials #BoneRegeneration #MachineVision #Tissue
✨Visible light-induced 3D #bioprinting of mesenchymal stem cell spheroids facilitates the creation of composite #scaffolds for comprehensive intervertebral #disc (IVD) repair.
Open Access: #IJEM👉doi.org/10.1088/2631-7990/ad878e
#ExtremeManufacturing #AddictiveManufacturing #MayoClinic #3Dprinting
🚨 We are #hiring! Our #Biometals, #Coatings & #Devices research group is looking for a PhD candidate focused on the design, manufacture, and characterisation of biodegradable #scaffolds based on Zn alloys via #LPBF.
+info: jobs.materials.imdea.org/offer/view?i...