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1.
Artigo em Espanhol | LILACS-Express | LILACS | ID: biblio-1528852

RESUMO

El reposicionamiento labial es un procedimiento quirúrgico mínimamente invasivo que se utiliza para tratar una sonrisa gingival, la cual, es una afección en la que una cantidad significativa de la encía queda expuesta cuando una persona sonríe y puede deberse a una variedad de factores, como un exceso de tejido gingival, un labio superior corto o músculos hiperactivos del labio superior, entre otros. El alargamiento clínico de la corona, por otro lado, consiste en eliminar el exceso de tejido gingival y, si es necesario, el tejido óseo para exponer una mayor parte de la corona natural del diente. Se reporta un caso clínico de paciente femenino de 31 años que presentó una sonrisa gingival provocada por hipermovilidad de labio superior y un exceso de tejido gingival localizado. El plan de tratamiento involucró una combinación de reposicionamiento labial y alargamiento de corona. Los resultados estéticos fueron significativos, con la sonrisa del paciente más equilibrada y proporcionada. Se redujo la cantidad de tejido gingival expuesto cuando la paciente sonreía y la longitud de los dientes fue más visible, lo que dio como resultado una sonrisa de aspecto más natural, además de aumentar su aceptación al sonreír.


SUMMARY: Lip repositioning is a minimally invasive surgical procedure used to treat a gummy smile, which is a condition in which a significant amount of the gum is exposed when a person smiles and may be due to a variety of factors, such as excess gum tissue, a short upper lip or overactive muscles of the upper lip, among others. Clinical crown lengthening, on the other hand, involves removing excess gingival tissue and, if necessary, bone tissue to expose more of the natural crown of the tooth. Clinical case: A clinical case of a 31-year-old female patient who presented a gummy smile caused by hypermobility of the upper lip and an excess of localized gingival tissue is reported. The treatment plan involved a combination of lip repositioning and crown lengthening. The aesthetic results were significant, with the patient's smile more balanced and displayed. The amount of the patient's exposed gum tissue when smiled was reduced and the length of the teeth was more visible, resulting in a more natural-looking smile, as well as increasing their acceptance of smiling.

2.
Int J Mol Sci ; 22(9)2021 Apr 28.
Artigo em Inglês | MEDLINE | ID: mdl-33924804

RESUMO

Emulsifiers are gradually evolving from synthetic molecules of petrochemical origin to biomolecules mainly due to health and environmental concerns. Peptides represent a type of biomolecules whose molecular structure is composed of a sequence of amino acids that can be easily tailored to have specific properties. However, the lack of knowledge about emulsifier behavior, structure-performance relationships, and the implementation of different design routes have limited the application of these peptides. Some computational and experimental approaches have tried to close this knowledge gap, but restrictions in understanding the fundamental phenomena and the limited property data availability have made the performance prediction for emulsifier peptides an area of intensive research. This study provides the concepts necessary to understand the emulsifying behavior of peptides. Additionally, a straightforward description is given of how the molecular structure and conditions of the system directly impact the peptides' ability to stabilize emulsion droplets. Moreover, the routes to design and discover novel peptides with interfacial and emulsifying activity are also discussed, along with the strategies to address some of their major pitfalls and challenges. Finally, this contribution reviews methodologies to build and use data sets containing standard properties of emulsifying peptides by looking at successful applications in different fields.


Assuntos
Emulsificantes/química , Peptídeos/química , Desenho Assistido por Computador
3.
Polymers (Basel) ; 13(4)2021 Feb 22.
Artigo em Inglês | MEDLINE | ID: mdl-33671501

RESUMO

This work applies a multi-scale approach to the microencapsulation by interfacial polymerization. Such microencapsulation is used to produce fertilizers, pesticides and drugs. In this study, variations at three different scales (molecular, microscopic and macroscopic) of product design (i.e., product variables, process variables and properties) are considered simultaneously. We quantify the effect of the formulation, composition and pH change on the microcapsules' properties. Additionally, the method of measuring the strength of the microcapsules by crushing a sample of microcapsules' suspension was tested. Results show that the xylene release rate in the microcapsules decreases when the amine functionality is greater due to a stronger crosslinking. Such degree of crosslinking increases the compression force over the microcapsules and improves their appearance. When high levels of amine concentration are used, the initial pH values in the reaction are also high which leads to agglomeration. This study provides a possible explanation to the aggregation based on the kinetic and thermodynamic controls in reactions and shows that the pH measurements account for the polyurea reaction and carbamate formation, which is a reason why this is not a suitable method to study kinetics of polymerization. Finally, the method used to measure the compressive strength of the microcapsules detected differences in formulations and composition with low sensibility.

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