Search results for "Keratinocytes"

showing 4 items of 104 documents

Protective effect of trehalose-loaded liposomes against UVB-induced photodamage in human keratinocytes

2014

Trehalose, a naturally occurring non-reducing disaccharide, is known to act as a major protein stabilizer that can reduce ultraviolet B (UVB)-induced corneal damage when topically applied to the eye. However, due to the low skin permeability of trehalose, which makes the development of topical formulations difficult, its use as a skin photoprotective agent has been limited. Previous findings demonstrated that liposomes may significantly improve the intracellular delivery of trehalose. Therefore, the present study aimed to assess the protective effects of trehalose-loaded liposomes against UVB-induced photodamage using the immortalized human keratinocyte cell line, HaCaT. The effects were al…

Ultraviolet radiationKeratinocytesCienciaPyrimidine dimerBiologyPharmacologyPhotoprotective agentGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundmedicineGeneral Pharmacology Toxicology and PharmaceuticsCiencias médicasLiposomeintegumentary systemGeneral NeurosciencePiel - InvestigaciónTrehaloseArticlesGeneral Medicinemedicine.diseaseTrehaloseProtein carbonylationCyclobutane pyrimidine dimersHaCaTchemistryApoptosisPhotoprotectionImmunology8-hydroxy-2'-deoxyguanosineSkin cancerBiomedical Reports
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1,4-Naphthoquinones as inducers of oxidative damage and stress signaling in HaCaT human keratinocytes.

2010

Selected biological effects of 1,4-naphthoquinone, menadione (2-methyl-1,4-naphthoquinone) and structurally related quinones from natural sources--the 5-hydroxy-naphthoquinones juglone, plumbagin and the 2-hydroxy-naphthoquinones lawsone and lapachol--were studied in human keratinocytes (HaCaT). 1,4-naphthoquinone and menadione as well as juglone and plumbagin were highly cytotoxic, strongly induced reactive oxygen species (ROS) formation and depleted cellular glutathione. Moreover, they induced oxidative DNA base damage and accumulation of DNA strand breaks, as demonstrated in an alkaline DNA unwinding assay. Neither lawsone nor lapachol (up to 100 microM) were active in any of these assay…

chemistry.chemical_classificationKeratinocytesReactive oxygen speciesDose-Response Relationship DrugDNA damageBiophysicsPlumbaginBiochemistryMolecular biologyLawsoneCell Linechemistry.chemical_compoundHaCaTOxidative StresschemistryMenadioneBiochemistryHumansReactive Oxygen SpeciesMolecular BiologyJugloneLapacholNaphthoquinonesSignal TransductionArchives of biochemistry and biophysics
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Adenosine A2A and A2B Receptors Differentially Modulate Keratinocyte Proliferation: Possible Deregulation in Psoriatic Epidermis

2017

Adenosine is a potent regulator of inflammation and immunity, but the role of adenosine receptors in keratinocytes remains controversial. We determined that in addition to A2B receptors, human epidermal keratinocytes also express A2A receptors, although to a lower extent. Through the use of selective adenosine receptor agonists and antagonists, we showed that physiological concentrations of adenosine activate A2B receptors in normal human keratinocytes, inducing cell cycle arrest through the increase of intracellular calcium but not through cAMP signaling. In contrast, the selective activation of A2A receptors by CGS-21680 induces keratinocyte proliferation via p38–mitogen-activated protein…

keratinocytes0301 basic medicinemedicine.medical_specialtyAdenosinepsoriatic epidermisDermatologyBiologyBiochemistry03 medical and health scienceschemistry.chemical_compoundInternal medicinemedicineReceptorMolecular BiologyCGS-21680human epidermal keratinocytesMRS-1706Cell BiologyPurinergic signallingAdenosine A3 receptorAdenosine receptorAdenosineCell biology030104 developmental biologyEndocrinologymedicine.anatomical_structurechemistryKeratinocytemedicine.drugJournal of Investigative Dermatology
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Mammalian Epidermis: A Compendium of Lipid Functionality

2022

Mammalian epidermis is a striking example of the role of lipids in tissue biology. In this stratified epithelium, highly specialized structures are formed that leverage the hydrophobic properties of lipids to form an impermeable barrier and protect the humid internal environment of the body from the dry outside. This is achieved through tightly regulated lipid synthesis that generates the molecular species unique to the tissue. Beyond their fundamental structural role, lipids are involved in the active protection of the body from external insults. Lipid species present on the surface of the body possess antimicrobial activity and directly contribute to shaping the commensal microbiota. Lipi…

lipidskeratinocytesceramidesPhysiologyepidermisPhysiology (medical)QP1-981lipidomicslipids (amino acids peptides and proteins)Reviewsignalingfatty acidsFrontiers in Physiology
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