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research Self-healing and shape-adaptive nanocomposite hydrogels with anti-inflammatory, antioxidant, antibacterial activities and hemostasis for real-time visual regeneration of diabetic wounds
In this study, a novel nanocomposite hydrogel was developed for diabetic wound care, demonstrating superior tissue adhesion, antibacterial properties, and healing capabilities in vivo and in vitro, while also allowing real-time pH monitoring to aid clinical management.
research Film-trigger applicator (FTA) for improved skin penetration of microneedle using punching force of carboxymethyl cellulose film acting as a microneedle applicator
This study found that the film-trigger applicator system enhanced drug delivery efficiency and skin penetration of dissolving microneedles compared to traditional patch systems in both lab and animal models.
research Microemulsions as a Surrogate Carrier for Dermal Drug Delivery
This review discusses the use of microemulsions for transdermal drug delivery and emphasizes the importance of component selection for enhancing drug permeation and skin tolerance, without reporting new clinical results.
research Emergency Wound Infection Monitoring and Treatment Based on Wearable Electrochemical Detection and Drug Release with Conductive Hydrogel
This study developed a closed-loop system for emergency wound care that monitors infection in real-time using biomarkers and delivers amikacin-loaded liposomes for treatment, integrating a conductive hydrogel for environmental protection and antibacterial benefits.
research Label-free concurrent 5-modal microscopy (Co5M) resolves unknown spatio-temporal processes in wound healing
This study introduces a five-modal microscopy technique that allows label-free, in vivo observation and quantitative analysis of various wound healing processes.
research Branched Polymer Architecture for Modulating Interactions in Material-Bio Interface
research Chaotrope-Guided Protein Microneedles with High Drug-Loading Capacity, Ultrafast Dissolution, and High Mechanical Strength
research A Shapable Alginate Hydrogel Resolving the Conflicts between Multifunctionality and Fabrication Simplicity
This study reports that the newly developed SA-Ca(II) hydrogel has tunable mechanical properties, high biocompatibility, and potential applications in wearable protections and stimuli-responsive electronics.
research Bridging the organoid translational gap: integrating standardization and micropatterning for drug screening in clinical and pharmaceutical medicine
This study discusses the challenges in translating organoid models from laboratory settings to clinical and commercial applications, emphasizing the need for engineering approaches like environmental recapitulation and matrix engineering to bridge this gap.
research Micropore-Forming Photocurable Tissue Adhesive Promotes Cell Infiltration for Wound Healing
research Mesenchymal Stem Cell‐Inspired Microneedle Platform for NIR‐responsive Immunomodulation and Accelerated Chronic Wound Healing
This study found that a newly created biomimetic microneedle platform effectively expedited wound repair in diabetic animal models by reducing inflammation, enhancing angiogenesis, and promoting skin regeneration through targeted drug delivery and immune response modification.
research Remote loading of minoxidil in nano-reservoirs leads to polymorphism and controlled release
research Microemulsions as Carriers for Therapeutic Molecules
This review discusses various patent articles on microemulsion carriers in drug delivery systems and reports no new empirical findings.
research Skin‐Inspired and Self‐Regulated Hydrophobic Hydrogel for Diabetic Wound Therapy
This study developed a novel hydrogel dressing, QL@MAB, which facilitates accelerated healing of infected diabetic wounds in rats by offering prolonged drug release, water retention, and adaptive drug delivery in response to high glucose levels in the wound environment.
research Penetration Profile of Microspheres in Follicular Targeting of Terminal Hair Follicles
This study found that using a standardized protocol with microspheres of approximately 1.5 micrometers enhances penetration into hair follicles, particularly when skin is treated with cyanoacrylate skin surface stripping.
research Microneedles as a Promising Technology for Disease Monitoring and Drug Delivery: A Review
This article provides an overview of microneedle technology for transcutaneous drug delivery, discussing microneedle designs, materials, and activation methods that enhance drug stability and regulated release, and outlines considerations for their successful clinical implementation, such as biocompatibility and production cost.
research Biomedical applications of Janus membrane
This review discusses the potential biomedical applications of Janus membranes, especially in wound healing, and emphasizes the challenges and future prospects in their development, but reports no new experimental results.
research Non-small cell lung carcinoma spheroid models in agarose microwells for drug response studies
This study demonstrates that a 3D-printed agarose microwell platform supports the growth of size-uniform, viable NSCLC cancer spheroids, and can effectively evaluate drug responses using limited tumor material from biopsies, particularly with EGFR tyrosine kinase inhibitors gefitinib and osimertinib.
research Dissolving microneedle array patches containing mesoporous silica nanoparticles of different pore sizes as a tunable sustained release platform
This study found that dissolving microneedle array patches containing mesoporous silica nanoparticles can deliver antigen-loaded nanoparticles into mice effectively, inducing strong immune responses similar to traditional subcutaneous injection.
research A molecular systems architecture of the mesenchymal stromal cell microenvironment
This study developed a molecular systems architecture to map the complex interactions between mesenchymal stromal cells and their microenvironment, providing a framework for future predictive models that could enhance therapeutic strategies and reduce adverse effects.
research Dynamically Cross-Linked Granular Hydrogels for 3D Printing and Therapeutic Delivery
This study developed granular hydrogels with reversible interparticle cross-linking, finding they offer high mechanical stability and enhance cell recruitment, making them promising for injectable and 3D printable scaffolds in tissue engineering and therapeutic delivery.
research Thermoresponsive hydrogel of a synthetic oligopeptide and mesoporous silica modulates TGF-β/Smad and Wnt/β-catenin pathways for enhanced diabetic wound healing
research Microencapsulation of Poorly Water-soluble Finasteride in Polyvinyl Alcohol/chitosan Microspheres as a Long-term Sustained Release System for Potential Embolization Applications
This study suggests that finasteride-loaded polyvinyl alcohol/chitosan microspheres could be a promising embolic agent for benign prostatic hyperplasia, showing effective occlusion and sustained drug release in preclinical models.
research Abstract 80
In this study, researchers developed a 3D-printed vascular model to analyze how different shear stresses influence cell behavior and promote cellular organization around neovessels, offering insights into tissue engineering for wound reconstruction.
research Tannic acid-modified MoS 2 /silk fibroin hydrogel photothermal antibacterial synergistic macrophage M2 polarization regulation for the treatment of diabetic ulcers
This study developed a multifunctional TA-MoS2-SF hydrogel for diabetic ulcer treatment, demonstrating enhanced photothermal bactericidal effects, immune environment remodeling, and fibroblast proliferation, suggesting it may serve as an effective 'antibacterial-immunomodulatory-repair' strategy.
research Bioinspired multifunctional injectable hydrogel for hemostasis and infected wound management
This study reported that a new bioinspired injectable hydrogel, CQCS@gel, showed promise as a multifunctional wound dressing by achieving rapid hemostasis and promoting the healing of infected skin wounds in both in vitro and in vivo tests.
research Microencapsulated cell tracking
This study reports that microencapsulation of therapeutic cells with contrast agents enables visualization across multiple imaging modalities, potentially improving cellular immunoprotection and tracking after transplantation.
research Design and fabrication of customizable microneedles enabled by 3D printing for biomedical applications
This review highlights the promising potential of 3D printing for creating microneedles with precise customization and improved performance compared to traditional micromolding, emphasizing applications in personalized medical devices and advancements in biomedical fields.
research A Cu@ZIF-8 encapsulated antibacterial and angiogenic microneedle array for promoting wound healing
The microneedle arrays effectively promote wound healing and have potential for clinical use.