Nome |
# |
Tunable and Reversible Gelatin-Based Bonding for Microfluidic Cell Culture, file e309ade4-69b5-3969-e053-3a05fe0a2c94
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191
|
Liposome production by microfluidics: Potential and limiting factors, file e309ade1-30ba-3969-e053-3a05fe0a2c94
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152
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"Off-the-shelf" microfluidic devices for the production of liposomes for drug delivery, file e309ade4-69b4-3969-e053-3a05fe0a2c94
|
105
|
Suramin inhibits chikungunya virus replication through multiple mechanisms, file e309ade4-69b3-3969-e053-3a05fe0a2c94
|
78
|
Progesterone lipid nanoparticles: Scaling up and in vivo human study, file e309ade3-d317-3969-e053-3a05fe0a2c94
|
76
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Encapsulation of cannabinoid drugs in nanostructured lipid carriers, file e309ade3-b23c-3969-e053-3a05fe0a2c94
|
75
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Acute effects of lead on porcine neonatal Sertoli cells in vitro, file e309ade4-128e-3969-e053-3a05fe0a2c94
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74
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Cannabinoid antagonist in nanostructured lipid carriers (NLCs): design, characterization and in vivo study, file e309ade3-b234-3969-e053-3a05fe0a2c94
|
70
|
Dedifferentiated Chondrocytes in Composite Microfibers As Tool for Cartilage Repair, file e309ade1-9555-3969-e053-3a05fe0a2c94
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67
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Nanoformulations for dimethyl fumarate: Physicochemical characterization and in vitro/in vivo behavior, file e309ade3-ee77-3969-e053-3a05fe0a2c94
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61
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Facile and cost-effective production of microscale PDMS architectures using a combined micromilling-replica moulding (μMi-REM) technique, file e309ade0-b239-3969-e053-3a05fe0a2c94
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59
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A correlative imaging study of in vivo and ex vivo biodistribution of solid lipid nanoparticles, file e309ade2-9f5e-3969-e053-3a05fe0a2c94
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54
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Analysis of the diffusion process by pH indicator in microfluidic chips for liposome production, file e309ade2-87e3-3969-e053-3a05fe0a2c94
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53
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Lipid nanoparticles for administration of poorly water soluble neuroactive drugs, file e309ade3-a081-3969-e053-3a05fe0a2c94
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53
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Aminated polysaccharide microspheres as DNA delivery systems, file e309ade4-79d7-3969-e053-3a05fe0a2c94
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52
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Production and characterization of clotrimazole liposphere gel for candidiasis treatment, file e309ade3-91b7-3969-e053-3a05fe0a2c94
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46
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Lipid nanostructures for antioxidant delivery: A comparative preformulation study, file e309ade4-a066-3969-e053-3a05fe0a2c94
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43
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Decellularized extracellular matrix-based scaffold and hypoxic priming: A promising combination to improve the phenotype of degenerate intervertebral disc cells, file e309ade5-8779-3969-e053-3a05fe0a2c94
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43
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Long-term stability, functional competence, and safety of microencapsulated specific pathogen-free neonatal porcine Sertoli cells: A potential product for cell transplant therapy, file e309ade4-69ae-3969-e053-3a05fe0a2c94
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39
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Gelatin-coated microfluidic channels for 3D microtissue formation: On-chip production and characterization, file e309ade2-839e-3969-e053-3a05fe0a2c94
|
37
|
Biodistribution of nanostructured lipid carriers: a tomographic study, file e309ade3-e278-3969-e053-3a05fe0a2c94
|
28
|
Continuous-Flow Production of Liposomes with a Millireactor under Varying Fluidic Conditions, file e309ade5-92c7-3969-e053-3a05fe0a2c94
|
11
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DoE Analysis of Approaches for Hydrogel Microbeads' Preparation by Millifluidic Methods, file e309ade5-581f-3969-e053-3a05fe0a2c94
|
10
|
Gold hard anodized (GHA) materials with antimicrobial surface properties: mechanical, tribological, and microbiological characterization, file e309ade3-cc01-3969-e053-3a05fe0a2c94
|
8
|
Effects of simulated microgravity on the morphology and function of neonatal porcine cell clusters cultured with and without Sertoli cells, file e309ade0-9ca0-3969-e053-3a05fe0a2c94
|
7
|
Encapsulation of mesenchymal stem cells from Wharton's jelly in alginate microbeads, file e309ade0-34d4-3969-e053-3a05fe0a2c94
|
6
|
Microfluidic and lab-on-a-chip preparation routes for organic nanoparticles and vesicular systems for nanomedicine applications, file e309ade0-b144-3969-e053-3a05fe0a2c94
|
6
|
Biodistribution of nanostructured lipid carriers: a tomographic study, file e309ade2-cd7f-3969-e053-3a05fe0a2c94
|
5
|
Preparation and validation of low cost microfluidic chips using a shrinking approach, file e309ade0-b622-3969-e053-3a05fe0a2c94
|
3
|
Design production and characterization of drug delivery systems by Lab-on-a-Chip technology, file e309ade4-7e43-3969-e053-3a05fe0a2c94
|
3
|
null, file e309ade0-2fca-3969-e053-3a05fe0a2c94
|
2
|
null, file e309ade0-9e93-3969-e053-3a05fe0a2c94
|
2
|
Long-term stability, functional competence, and safety of microencapsulated specific pathogen-free neonatal porcine Sertoli cells: A potential product for cell transplant therapy, file e309ade0-b660-3969-e053-3a05fe0a2c94
|
2
|
"Off-the-shelf" microfluidic devices for the production of liposomes for drug delivery, file e309ade1-3419-3969-e053-3a05fe0a2c94
|
2
|
Liposomal Systems as Nanocarriers for the Antiviral Agent Ivermectin., file e309ade1-388c-3969-e053-3a05fe0a2c94
|
2
|
A statistical approach to optimize the spray drying of starch particles: Application to dry powder coating, file e309ade2-bd70-3969-e053-3a05fe0a2c94
|
2
|
Gold hard anodized (GHA) materials with antimicrobial surface properties: mechanical, tribological, and microbiological characterization, file f8c8039b-11c6-4d78-b916-cc78b0d2be92
|
2
|
Accelerated functional maturation of isolated neonatal porcine cell clusters: In vitro and in vivo results in NOD mice, file e309ade0-2259-3969-e053-3a05fe0a2c94
|
1
|
Effect of dynamic three-dimensional culture on osteogenic potential of human periodontal ligament-derived mesenchymal stem cells entrapped in alginate microbeads, file e309ade0-8f62-3969-e053-3a05fe0a2c94
|
1
|
null, file e309ade0-960b-3969-e053-3a05fe0a2c94
|
1
|
Optimised production of multifunctional microfibres by microfluidic chip technology for tissue engineering applications, file e309ade0-9ad1-3969-e053-3a05fe0a2c94
|
1
|
Human mesenchymal stem cells seeded on extracellular matrix scaffold: Viability and osteogenic potential, file e309ade0-9b9c-3969-e053-3a05fe0a2c94
|
1
|
Preparation of cell-encapsulation devices in confined microenvironment, file e309ade0-a318-3969-e053-3a05fe0a2c94
|
1
|
Suramin inhibits chikungunya virus replication through multiple mechanisms, file e309ade0-bf0d-3969-e053-3a05fe0a2c94
|
1
|
Complexation to cationic microspheres of double-stranded peptide nucleic acid-DNA chimeras exhibiting decoy activity, file e309ade0-ebe9-3969-e053-3a05fe0a2c94
|
1
|
Encapsulation of cannabinoid drugs in nanostructured lipid carriers, file e309ade0-ebf2-3969-e053-3a05fe0a2c94
|
1
|
Resistance of decoy PNA-DNA chimeras to enzymatic degradation in cellular extracts and serum, file e309ade0-ec29-3969-e053-3a05fe0a2c94
|
1
|
Peptide nucleic acids (PNA)-DNA chimeras targeting transcription factors as a tool to modify gene expression, file e309ade0-f509-3969-e053-3a05fe0a2c94
|
1
|
Cationic liposomes as delivery systems for double-stranded PNA-DNA chimeras exhibiting decoy activity against NF-kappa B transcription factors, file e309ade0-f553-3969-e053-3a05fe0a2c94
|
1
|
Testosterone and FSH modulate Sertoli cell extracellular secretion: Proteomic analysis, file e309ade2-1ac4-3969-e053-3a05fe0a2c94
|
1
|
Tunable and Reversible Gelatin-Based Bonding for Microfluidic Cell Culture, file e309ade2-839c-3969-e053-3a05fe0a2c94
|
1
|
Coins in microfluidics: From mere scale objects to font of inspiration for microchannel circuits, file e309ade2-83a0-3969-e053-3a05fe0a2c94
|
1
|
Progesterone lipid nanoparticles: Scaling up and in vivo human study, file e309ade2-ade1-3969-e053-3a05fe0a2c94
|
1
|
Cannabinoid antagonist in nanostructured lipid carriers (NLCs): design, characterization and in vivo study, file e309ade3-8e11-3969-e053-3a05fe0a2c94
|
1
|
Lipid nanoparticles for administration of poorly water soluble neuroactive drugs, file e309ade3-9844-3969-e053-3a05fe0a2c94
|
1
|
Acute effects of lead on porcine neonatal Sertoli cells in vitro, file e309ade4-3886-3969-e053-3a05fe0a2c94
|
1
|
In vitro stability of polymerase chain reaction-generated DNA fragments in serum and cell extracts, file e309ade4-e82f-3969-e053-3a05fe0a2c94
|
1
|
Totale |
1.549 |