0000000000054630

AUTHOR

Silvia Mir-palomo

showing 7 related works from this author

Sorbitol-penetration enhancer containing vesicles loaded with baicalin for the protection and regeneration of skin injured by oxidative stress and UV…

2018

Abstract Aiming at improving the protective effects of baicalin on the skin, new highly-biocompatible penetration enhancer containing vesicles (PEVs) were developed by modifying the base formulation of transfersomes with sorbitol, thus obtaining sorbitol-PEVs. An extensive evaluation of the physico-chemical features of both transfersomes and sorbitol-PEVs was carried out. Transfersomes were mainly close-packed, multi-compartment vesicles, while sorbitol-PEVs appeared mostly as single, spherical, unilamellar vesicles. All the vesicles were small in size (∼128 nm) and negatively charged (∼−67 mV), without significant differences between the formulations. The in vitro delivery of baicalin to i…

SwineUltraviolet RaysChemistry PharmaceuticalCellPharmaceutical Science02 engineering and technologymedicine.disease_cause030226 pharmacology & pharmacyCell LineExcipients03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineDrug Delivery SystemsCell MovementmedicineAnimalsHumansRegenerationSorbitolParticle SizeCell ProliferationSkinFlavonoidsWound HealingCell growthVesicleRegeneration (biology)fungi3T3 Cells021001 nanoscience & nanotechnologyIn vitroOxidative Stressmedicine.anatomical_structurechemistryBiophysicsSorbitol0210 nano-technologyBaicalinOxidative stressInternational journal of pharmaceutics
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Development of antibiotic loaded biodegradable matrices to prevent superficial infections associated to total knee arthroplasty.

2019

Abstract Development of a pharmaceutical form for the superficial infections related with arthroplasties would be helpful for clinical practice. In this context, we set out to evaluate ciprofloxacin and gentamicin elution from systems based on chitosan. Films and semisolid hydrogels containing chitosan alone (2%) or in combination with gelatin (6%) or different proportions (from 12% to 36%) of tetrakis-(hydroxymethyl)-phosphonium-chloride (THPC) were tested as delivery systems. Different antibiotic doses were assayed (0.5 mg/cm2,1 mg/cm2 and 2 mg/cm2). Antibiotic release was studied for each formulation. In vitro cytocompatibility studies and a simulation exercise for bioactivity evaluation…

food.ingredientmedicine.drug_classCell SurvivalSurface PropertiesAntibioticsContext (language use)macromolecular substances02 engineering and technologyPharmacology01 natural sciencesGelatinChitosanchemistry.chemical_compoundMiceColloid and Surface ChemistryfoodOrganophosphorus CompoundsCiprofloxacin0103 physical sciencesmedicineAnimalsPhysical and Theoretical ChemistryParticle SizeCytotoxicityArthroplasty Replacement KneeCell ProliferationChitosan010304 chemical physicstechnology industry and agricultureSurfaces and InterfacesGeneral MedicineFibroblasts021001 nanoscience & nanotechnologyAnti-Bacterial Agentscarbohydrates (lipids)CiprofloxacinchemistrySelf-healing hydrogelsNIH 3T3 CellsGentamicinGentamicins0210 nano-technologyBiotechnologymedicine.drugColloids and surfaces. B, Biointerfaces
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Inhibition of skin inflammation by baicalin ultradeformable vesicles.

2016

The topical efficacy of baicalin, a natural flavonoid isolated from Scutellaria baicalensis Georgi, which has several beneficial properties, such as antioxidative, antiviral, anti-inflammatory and antiproliferative, is hindered by its poor aqueous solubility and low skin permeability. Therefore, its incorporation into appropriate phospholipid vesicles could be a useful tool to improve its local activity. To this purpose, baicalin at increasing concentrations up to saturation, was incorporated in ultradeformable vesicles, which were small in size (∼67nm), monodispersed (PI<0.19) and biocompatible, regardless of the concentration of baicalin, as confirmed by in vitro studies using fibroblasts…

AdultCell SurvivalSkin AbsorptionPharmaceutical ScienceDermatitis02 engineering and technologyPharmacologyAdministration Cutaneous03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineIn vivomedicineAnimalsHumansDexamethasoneTransdermalFlavonoidsDrug CarriersbiologyEpidermis (botany)Vesicle3T3 CellsMiddle Aged021001 nanoscience & nanotechnologybiology.organism_classificationIn vitrochemistry030220 oncology & carcinogenesisScutellaria baicalensisFemale0210 nano-technologyBaicalinmedicine.drugInternational journal of pharmaceutics
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Baicalin and berberine ultradeformable vesicles as potential adjuvant in vitiligo therapy.

2018

0.5-1% of the world's population is affected by vitiligo, a disease characterized by a gradual depigmentation of the skin. Baicalin and berberine are natural compounds with beneficial activities, such as antioxidant, anti-inflammatory and proliferative effects. These polyphenols could be useful for the treatment of vitiligo symptoms, and their efficacy can be improved by loading in suitable carriers. The aim of this work was to formulate and characterize baicalin or berberine loaded ultradeformable vesicles, and demonstrate their potential as adjuvants in the treatment of vitiligo. The vesicles were produced using a previously reported simple, scalable method. Their morphology, size distrib…

KeratinocytesBerberineSwineUltraviolet Raysmedicine.medical_treatmentDrug CompoundingSkin AbsorptionPopulationStatic ElectricityVitiligo02 engineering and technologyVitiligoPharmacology01 natural sciencesAntioxidantsPermeabilityMelaninchemistry.chemical_compoundColloid and Surface ChemistryBerberineDepigmentation0103 physical sciencesmedicineAnimalsHumansPhysical and Theoretical ChemistryeducationCell Line TransformedSkinFlavonoidsMelaninseducation.field_of_studyintegumentary system010304 chemical physicsChemistryMonophenol MonooxygenaseVesicleSurfaces and InterfacesGeneral Medicine021001 nanoscience & nanotechnologymedicine.diseaseLiposomesMelanocytesmedicine.symptom0210 nano-technologyBaicalinAdjuvantSunscreening AgentsBiotechnologyColloids and surfaces. B, Biointerfaces
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Nanodesign of new self-assembling core-shell gellan-transfersomes loading baicalin and in vivo evaluation of repair response in skin

2017

Gellan nanohydrogel and phospholipid vesicles were combined to incorporate baicalin in new self-assembling core-shell gellan-transfersomes obtained by an easy, scalable method. The vesicles were small in size (~107 nm) and monodispersed (P.I. ≤ 0.24), forming a viscous system (~24 mPa/s) as compared to transfersomes (~1.6 mPa/s), as confirmed by rheological studies. Gellan was anchored to the bilayer domains through cholesterol, and the polymer chains were distributed onto the outer surface of the bilayer, thus forming a core-shell structure, as suggested by SAXS analyses. The optimal carrier ability of core-shell gellan-transfersomes was established by the high deposition of baicalin in th…

3003SwinePharmaceutical ScienceMedicine (miscellaneous)02 engineering and technology01 natural sciencesMicechemistry.chemical_compoundDrug Delivery Systemsmaterials science (all)skin deliveryGeneral Materials ScienceSkinchemistry.chemical_classificationSkin repairSmall-angle X-ray scatteringBilayerVesicleAnti-Inflammatory Agents Non-SteroidalPolysaccharides BacterialPolymer021001 nanoscience & nanotechnologymedicine.anatomical_structureMolecular MedicineFemale0210 nano-technologytransfersomesSkin AbsorptionBiomedical EngineeringgellanBioengineeringAdministration Cutaneous010402 general chemistryIn vivo studiesDermisIn vivoSAXS analysismedicineAnimalsgellan; In vivo studies; rheological studies; SAXS analysis; skin delivery; transfersomes; bioengineering; medicine (miscellaneous); molecular medicine; biomedical engineering; materials science (all); 3003rheological studiesFlavonoidsInflammationWound Healing0104 chemical sciencesAnimals NewbornchemistryLiposomesBiophysicsNanoparticlesBaicalin
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A novel ultradeformable liposomes of Naringin for anti-inflammatory therapy

2018

[EN] Ultradeformable liposomes were formulated using naringin (NA), a flavanone glycoside, at different concentrations (3, 6 and 9 mg/mL). Nanovesicles were small size (similar to 100 nm), regardless of the NA concentration used, and monodisperse (PI<0.30). All formulations showed a high entrapment efficiency (similar to 88%) and a highly negative zeta potential (around -30 mV). The selected formulations were highly biocompatible as confirmed by in vitro studies using 3T3 fibroblasts. In vitro assay showed that the amounts (%) of NA accumulated in the epidermis (similar to 10%) could explain the anti-inflammatory properties of ultradeformable liposomes. In vivo studies confirmed the higher …

0301 basic medicineAnti-Inflammatory AgentsDermatitis02 engineering and technologyPharmacologyMicechemistry.chemical_compoundColloid and Surface ChemistryZeta potentialSkinLiposomeTransdermal penetrationPellSurfaces and InterfacesGeneral Medicine021001 nanoscience & nanotechnologyFlavanonesPhosphatidylcholinesTetradecanoylphorbol AcetateBetamethasoneFemale0210 nano-technologyFlavanoneBiotechnologymedicine.drugAntiinflamatorisCell Survivalmedicine.drug_classDrug CompoundingSkin AbsorptionAdministration CutaneousIn vivo studiesAnti-inflammatory03 medical and health sciencesIn vivomedicineAnimalsPhysical and Theoretical ChemistryNaringinUltradeformable liposomesPhosphatidylethanolaminesLysophosphatidylcholinesFibroblastsIn vitro030104 developmental biologychemistryLiposomesNIH 3T3 CellsAnti-inflammatoryNaringin
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Co-loading of finasteride and baicalin in phospholipid vesicles tailored for the treatment of hair disorders

2020

[EN] Hair loss affects a large number of people worldwide and it has a negative impact on the quality of life. Despite the availability of different drugs for the treatment of hair disorders, therapeutic options are still limited and scarcely effective. An innovative strategy to improve the efficacy of alopecia treatment is presented in this work. Finasteride, the only oral synthetic drug approved by Unites States Federal Drug Administration, was loaded in phospholipid vesicles. In addition, baicalin was co-loaded as an adjuvant. Their effect on hair growth was evaluatedin vitroandin vivo. Liposomes, hyalurosomes, glycerosomes and glycerol-hyalurosomes were manufactured by using a simple me…

medicine.medical_treatment02 engineering and technologyPharmacologyMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineIn vivomedicineAnimalsGeneral Materials SciencePhospholipidsFlavonoidsLiposomeintegumentary systemChemistryVesicleFinasteride021001 nanoscience & nanotechnologymedicine.diseaseMice Inbred C57BLHair loss030220 oncology & carcinogenesisHair DisorderQuality of LifeFinasteride0210 nano-technologyAdjuvantBaicalin
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