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datasets available to search
ShareScore release 0.9.0
Dataset results
23 results for “Electrospun”
Research data supporting "Enzyme Prodrug Therapy Engineered into Electrospun Fibers with Embedded Liposomes for Controlled, Localized Synthesis of Therapeutics"
<p>Research data supporting the publication: Chandrawati R. et al., 2017, Enzyme Prodrug Therapy Engineered into Electrospun Fibers with Embedded Liposomes for Controlled, Localized Synthesis of Therapeutics, Advanced Healthcare Materials. DOI: 10.1002/adhm.201700385</p>
Research data supporting "Electrospun aniline-tetramer-co-polycaprolactone fibres for conductive, biodegradable scaffolds"
<p>Research data supporting the publication: Guex, A.G. et al., 2017, "Electrospun aniline-tetramer-<em>co</em>-polycaprolactone fibres for conductive, biodegradable scaffolds", MRS Communications. https://doi.org/10.1557/mrc.2017.45</p> <p> </p>
Eumelanin-Enhanced Photothermal Disinfection of Contact Lenses Using a Sustainable Marine Nanoplatform Engineered with Electrospun Nanofibers_(antibacterial study - S.aureus)
<p>Eumelanin-Enhanced Photothermal Disinfection of Contact Lenses Using a Sustainable Marine Nanoplatform (antibacterial study - S.aureus)</p>
Dataset published in the article: "Electrospun poly(L-lactide-co-DL-lactide) nanofibrous scaffold as substrate for ex vivo limbal epithelial cell cultivation"
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Electrospun Fiber Experimental Attributes Dataset (FEAD)
<p>Understanding the intricate relationships between the structure and properties of electrospun PVDF fibers is crucial for designing effective devices. However, the complexity of these relationships makes them challenging to model through traditional trial-and-error experiments. Machine learning has emerged as a powerful tool for modeling multidimensional relationships, but it requires a diverse and high-quality training dataset to effectively learn these intricate connections.</p> <p>To comprehensively investigate the intricate relationships between the structure and properties of electrospun PVDF fibers, a high-quality training dataset is imperative, encompassing a wide array of experimental conditions. There is no single comprehensive source that provides a holistic understanding of how the various parameters impact the PVDF fiber properties. Existing studies predominantly present results from a limited range of parameter variations, necessitating the creation of a meta dataset for robust insights. In response to this gap, we introduce the "Electrospun Fiber Experimental Attributes Dataset (FEAD)," a meticulously curated compilation that collates data from diverse literature sources and complements with our own experimental findings and computations.</p> <p>FEAD comprises a total of 745 data points sourced from 52 distinct references. This dataset encapsulates a broad spectrum of solvents and solvent systems, including DMAC, DMF, DMAC/Acetone, DMSO/Acetone, DMF/Acetone, NMP/Acetone, among others. While certain parameters such as polymer concentration, solvent ratio, feed rate, and applied voltage were directly extracted from the literature, other critical factors like solubility parameters, interaction radii, and RED were computed.</p> <p>Experiments involving the use of surfactants and electrolytes to alter polymer viscosity and electrical conductivity are not included in the dataset. This exclusion ensures a focus on understanding the genuine impact of polymer concentration and solubility factors on the resulting fibers. The development of this novel materials database is an ongoing effort, and we anticipate its continual improvement over time as more datapoints are incorporated.</p>
Electrospun PVA semi-IPN_[Chemical and physical characteristics]
<p>Electrospun PVA semi-IPN_[Chemical and physical characteristics]</p>
Study on Regeneration of Skin Defects in Diabetic Ulcers Treated With New Electrospun Material PLCL/Fg
ClinicalTrials.gov study NCT06014437. IPD Sharing: NO. Countries: 1. Publications: 1.
Data from: Effect on electrospun fibers by synthesis of high branching poly-lactic (PLA)
Poly-lactic electrospun porous fibers have been widely used in tissue engineering scaffolds. However, the application of linear Poly-lactic is limited due to its poor hydrophilicity, which leads to phase separation and has been seldom used in porous fiber preparation. Instead, using of branching Poly-lactic acts as a new effective method to prepare porous fibers because it can increase Poly-lactic polar property and make it easy to be formulated in the following application. In current study, we prepared an ultra-high molecular weight of high branching Poly-lactic with glycerol as the initiator by controlling the ring-opening polymerization time, adding amount of catalyst and glycerol. The structure, molecular weight and thermal properties of copolymers were tested subsequently. The result showed that the surface of the high branching Poly-lactic films is smooth, hydrophilic and porous. This branching Poly-lactic formed electrospun porous fibers, possessed a strong adsorption of silver ion. Comparing with the application of linear Poly-lactic and 3-arm Poly-lactic materials, our study provided a simple and efficient way to synthesize branching Poly-lactic polymer and prepare electrospun porous fibers, which may provide potential applications in the field of biomaterials for tissue engineering or antibacterial dressing.
Data from: Halloysite nanotube-based electrospun ceramic nanofibre mat: a novel support for zeolite membranes
Some key parameters of supports such as porosity, pore shape and size are of great importance for fabrication and performance of zeolite membranes. In this study, we fabricated millimetre-thick, self-standing electrospun ceramic nanofibre mats and employed them as a novel support for zeolite membranes. The nanofibre mats were prepared by electrospinning a halloysite nanotubes/polyvinyl pyrrolidone composite followed by a programmed sintering process. The interwoven nanofibre mats possess up to 80% porosity, narrow pore size distribution, low pore tortuosity and highly interconnected pore structure. Compared with the commercial α-Al2O3 supports prepared by powder compaction and sintering, the halloysite nanotube-based mats (HNMs) show higher flux, better adsorption of zeolite seeds, adhesion of zeolite membranes and lower Al leaching. Four types of zeolite membranes supported on HNMs have been successfully synthesized with either in situ crystallization or a secondary growth method, demonstrating good universality of HNMs for supporting zeolite membranes.
NIR-light activated core-shell electrospun Drug Delivery Studies]
<p>Drug Delivery Studies of NIR-light activated core-shell electrospun</p>
NIR-light activated core-shell electrospun [Cell Studies]
<p>Cell Studies of NIR-light activated core-shell electrospun</p>
NIR-light activated core-shell electrospun [Photothermal Studies]
<p>Photothermal Studies of NIR-light activated core-shell electrospun.</p>
NIR-light activated core-shell electrospun [Structural Characterization]
<p>Structural Characterization of NIR-light activated core-shell electrospun nanofibers.</p>
Comparing Wound Complication Following TMA With Aid of Electrospun Fiber Matrix
ClinicalTrials.gov study NCT06063694. IPD Sharing: NO. Countries: 0. Publications: 3.
Data from: Effect on electrospun fibers by synthesis of high branching poly-lactic (PLA)
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Data from: Halloysite nanotube-based electrospun ceramic nanofibre mat: a novel support for zeolite membranes
Open the record for dataset details and reuse information.
In search for materials able to be colonized by a normal endothelium: сharacterization and NGS gene expression profiling of human primary endotheliocytes cultivated on electrospun 3D matrices
GEO Series GSE123045. Homo sapiens. 10 samples. Type: Expression profiling by high throughput sequencing.
Conductive Electrospun Polymer Platforms Improve Stem Cell-Derived Cardiomyocyte Function and Maturation
GEO Series GSE226541. Homo sapiens. 12 samples. Type: Expression profiling by high throughput sequencing.
A Prospective, Single-arm, Clinical Trial of Electrospun Fiber Matrix (Restrata) in the Treatment of Surgical Defects Secondary to Resection of Malignant Cutaneous Neoplasms
ClinicalTrials.gov study NCT06578650. IPD Sharing: NO. Countries: 1. Publications: 0.
Initial Feasibility Study of the STENTiT Resorbable Fibrillated Scaffold (RFS). The RFS is Intended to Restore Lumen Patency and Blood Flow to Infrapopliteal Arteries. The RFS is a Fully Electrospun T
ClinicalTrials.gov study NCT07006467. IPD Sharing: YES. Countries: 1. Publications: 0.
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International Brain Laboratory public data
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OpenNeuro
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