Antecedentes: El liquen plano bucal es una enfermedad dermatológica inflamatoria crónica de base autoinmune, con infiltración de linfocitos T que destruyen el estrato basal, lo que ocasiona estrías blancas, erosiones, úlceras y diluciones epiteliales de continuidad.Reporte de caso: Mujer de 54 años con múltiples lesiones reticulares y erosivas en región de la mucosa yugal y bordes laterales de la lengua, así como gingivitis descamativa. Se inició tratamiento con mometasona tres veces al día por 20 días e intermitentemente con miconazol en gel, para prevenir micosis iatrogénica por el corticosteroide. La paciente fue revisada a los 20 días, al cabo de los cuales se observó mejoría de 80 % de las lesiones con ulceraciones centrales, lo que permitió la ingesta de alimentos y líquidos sin dolor y mejoró la calidad de vida.Conclusiones: En las enfermedades autoinmunes es importante la correlación clínico-histopatológica para establecer el diagnóstico definitivo. El seguimiento clínico de estos pacientes se debe realizar a largo plazo, para lograr la remisión de las lesiones, control de la enfermedad y evitar futuras complicaciones.
This paper presents the case of a woman of forty- four years old, wich go for volumen increase, violet color more tan ten years of evolution in lower lip, greather growth in tle last year. This papaer shows the treatment sequence by placling of cooper needles and subsecuent satisfactory resección restricting risk of bleeding to mínimum.
BACKGROUND: Bovine pericardium (BP) is a scaffold widely used in soft tissues regeneration; however, its calcification in contact with glutaraldehyde, represent an opportunity for its application in hard tissues, such as bone in the oral cavity. OBJECTIVE: To develop and to characterize decellularized and glutaraldehyde-crosslinked bovine pericardium (GC-BP) as a potential scaffold for guided bone regeneration GBR. METHODS: BP samples from healthy animals of the bovine zebu breed were decellularized and crosslinked by digestion with detergents and glutaraldehyde respectively. The resulting cell-free scaffold was physical, chemical, mechanical, and biologically characterized thought hematoxylin and eosin staining, DNA quantification, scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), uniaxial tensile test, cell viability and live and dead assay in cultures of dental pulp stem cells (DPSCs). RESULTS: The decellularization and crosslinking of BP appeared to induce conformational changes of the CLG molecules, which led to lower mechanical properties at the GC-BP scaffold, at the same time that promoted cell adhesion and viability of DPSCs. CONCLUSION: This study suggests that the decellularized and GC-BP is a scaffold with the potential to be used promoting DPSCs recruitment, which has a great impact on the dental area.
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