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1.
Braz. J. Pharm. Sci. (Online) ; 58: e18630, 2022. tab, graf
Article in English | LILACS | ID: biblio-1364418

ABSTRACT

Abstract The objective of the present investigation was to design, optimize and characterize the gastro retentive floating levofloxacin tablets and perform in-vivo evaluation using radiographic imaging. The floating tablets were prepared by using polymers i.e hydroxy propyl methyl cellulose (HPMC-K4M) and carbopol-940 individually and in combination by nonaquous granulation method. All the Formulations were evaluated for swelling index (S.I), floating behavior and in-vitro drug release kinetics. The compatibility study of levofloxacin with other polymers was investigated by FTIR, DSC, TGA and XRD. Results from FTIR and DSC revealed no chemical interaction amongst the formulation components. The optimized formulation (F11) showed floating lag time (FLT), total floating time (TFT) swelling index (S.I) of 60 sec, >16h and approximately 75 %, respectively. Moreover, F11 showed zero order levofloxacin release in simulated gastric fluid over the period of 6 h. X-ray studies showed that total buoyancy time was able to delay the gastric emptying of levofloxacin floating tablets in rabbits for more than 4 hours. In conclusion the optimized formulation (F11) can be used for the sustained delivery of levofloxacin for the treatment of peptic ulcer.


Subject(s)
Drug Liberation , Peptic Ulcer/classification , Tablets/pharmacology , X-Rays/adverse effects , In Vitro Techniques/instrumentation , Spectroscopy, Fourier Transform Infrared , Drug Compounding/instrumentation , Process Optimization/analysis , Levofloxacin/analysis , Gastric Emptying/drug effects
2.
Acta sci., Biol. sci ; Acta sci., Biol. sci;43: e54966, 2021. tab, graf
Article in English | LILACS, VETINDEX | ID: biblio-1460983

ABSTRACT

Many food, cosmetic and pharmaceutical industries have increased their interest in short-chain esters due to their flavor properties. From the industrial standpoint, enzyme reactions are the most economical strategy to reach green products with neither toxicity nor damage to human health. Isoamyl butyrate (pear flavor) was synthesized by isoamyl alcohol (a byproduct of alcohol production) and butyric acid with the use of the immobilized lipase Lipozyme TL IM and hexane as solvents. Reaction variables (temperature, butyric acid concentration, isoamyl alcohol:butyric acid molar ratio and enzyme concentration) were investigated in ester conversion (%), concentration (mol L-1) and productivity (mmol ester g-1 mixture . h), by applying a sequential strategy of the Fractional Factorial Design (FFD) and the Central Composite Rotatable Design (CCRD). High isoamyl butyrate conversion of 95.8% was achieved at 24 hours. At 3 hours, the highest isoamyl butyrate concentration (1.64 mol L-1) and productivity (0.19 mmol ester g-1 mixture . h) were obtained under different reaction conditions. Due to high specificity and selectivity of lipases, process parameters of this study and their interaction with the Lipozyme TL IM are fundamental to understand and optimize the system so as to achieve maximum yield to scale up. Results show that fusel oil may be recycled by the green chemistry process proposed by this study.


Subject(s)
Enzyme Activation , Butyrates/administration & dosage , Butyrates/analysis , Isoamylase , Process Optimization/analysis
4.
São Paulo; s.n; s.n; 2018. 126 p. graf, tab.
Thesis in Portuguese | LILACS | ID: biblio-996255

ABSTRACT

Os protetores solares (PS) são os grandes responsáveis pela proteção da pele quando exposta à radiação solar, por isso a importância sanitária de se otimizar o desenvolvimento deste cosmético tipo II e monitorar para que seja eficaz em seu propósito. O principal objetivo deste trabalho é aplicar os conceitos de Qualidade por Design (QbD), ferramentas estatísticas de desenho experimental (DoE - Design of Experiments) e o conceito de tecnologia analítica de processo (PAT - Process Analytical Technology) para desenvolver uma formulação e processo produtivo de um PS de modo a modernizar os processos da indústria cosmética, fazendo as análises durante o processo e eliminando o controle de qualidade final. Trata-se de um sistema de desenvolvimento sistematizado, onde se executa as ferramentas de QbD para avaliar os dados obtidos ao longo da fase experimental. Para a fase experimental, empregou-se o desenho fatorial e desenho do compósito central (CCD - Central Composite Design) como ferramenta estatística, para a execução do planejamento de experimentos (DoE - Design of Experiments). As respostas foram analisadas através da metodologia de superfície resposta (RSM - Response Surface Methodology). Tais ferramentas são fundamentais para a determinação do desenho de concepção (design space), para se obter o PS com as melhores características físico-químicas e de processo dentro do escopo delineado. Para o desenvolvimento da metodologia de análise in line, optou-se pela utilização da espectrometria UV, utilizando-se ferramentas como análise de regressão dos mínimos quadrados (PLS) devido a praticidade em transforma-la em uma ferramenta PAT, para isto, a quimiometria foi empregada para modelar sistemas que são desconhecidos e complexos, como um PS, e trazendo respostas diretas como a aprovação do produto antes de ser embalado, por exemplo. A abordagem apresentada baseia-se na construção da qualidade ao longo do desenvolvimento e otimização de PS e torna possível o monitoramento da qualidade em tempo real


The sunscreens are great responsible for the skin protection when it is exposed to direct sunlight, so it means a great importance of health to optimize the development of type II cosmetic and monitor for it to be effective in its purpose. The objective of this work is to apply the concepts of Quality by Design and statistical tools of experimental design (DoE - Design of experiments), as well as applying the process analytical technology (PAT - Process Analytical Technology) concept for formulation and manufacturing process development of a topical sunscreen being able to modernize the cosmetic industry processing, including real time analyses and eliminating quarantine step, which waits analysis approval performed by the quality assurance, and then release the product for sale. As it is a systematic development, where critical quality attributes and risk assessment were performed to evaluate over obtained data. During experimental phase, the factorial design was used as a statistical tool for design of experiments implementation, and the responses were analyzed by response surface methodology (RSM - Response Surface Methodology). This mapping is critical to determination of the product design (design space), i.e. get sunscreen with the best physical and chemical characteristics and processing within the outlined scope. For in line methodology development, UV spectrometry was opted to be used due to less effort in sample preparation and due to great easiness to turn it into a PAT tool. For this, chemometrics was used, which brings together chemical and statistical elements to obtain three main elements: empirical modeling, multivariate modeling and chemical data, making it able to model systems that are unknown and complex, as a sunscreen, getting direct answers as product release approval before being packed, for example. The presented approach was based on the construction of quality throughout the sunscreen development and optimization making possible the real time quality monitoring


Subject(s)
Sunscreening Agents/analysis , Drug Compounding , /analysis , Process Optimization/analysis , Research Design , Statistics
5.
Rev. cuba. enferm ; 22(4)sept.-dic. 2006.
Article in Spanish | CUMED, LILACS | ID: lil-465328

ABSTRACT

Asumimos este trabajo sobre la optimización de la enseñanza considerando la importancia que tienen los criterios que se presentan, para optimizar el proceso de enseñanza en la formación de los profesionales de enfermería en Cuba. Consideramos como optimización a la selección por parte de los profesores de la mejor variante de su organización, orientada hacia un fin que sugiere, en un tiempo determinado, la mayor efectividad posible para resolver las tareas de la instrucción y la educación. Se hace referencia, partiendo del análisis de la organización del proceso de enseñanza, a los eslabones que deben ser considerados para lograrse optimización. Concluimos que sólo se puede lograr una optimización del proceso de enseñanza sobre la base de la dirección en que se organiza, las regularidades y principios de enseñanza, la utilización de formas y métodos modernos de enseñanza y aprendizaje, así como también del estudio y las particularidades de las condiciones internas y externas de cada grupo de estudiantes. Se analizan en una mayor interacción orgánica, todas las categorías principales de la didáctica, las regularidades, principios, formas, métodos y tipos de enseñanza, potenciando la individualidad creadora en los profesores de enfermería(AU)


We made this paper on teaching optimisation considering the importance of the criteria presented to optimise the teaching process in the training of nursing professionals in Cuba. We consider optimisation as the selection made by professors of the best variant of organization, directed to a goal that suggests, in a particular time, the greatest possible effectiveness to resolve the learning and teaching tasks. By analysing the organization of the teaching process, we refer to the characteristics needed to achieve optimal results. We conclude that it is only possible to obtain results in the teaching process on the basis of the direction in which the teaching and learning regularities and principles are organized, as well as on the study and peculiarities of the internal and external conditions of each group of students. All the main categories of didactics, the regularities, principles, ways, methods, and types of teaching are analyzed in a greater organic interaction, potentiating the creative individuality of the nursing professors(AU)


Subject(s)
Humans , Education, Nursing/methods , Process Optimization/analysis , Faculty , Learning
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