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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Desenvolvimento biotecnol?gico de uma emuls?o de uso t?pico a base de ?leo de r?-touro Rana catesbeiana Shaw

Machado, Lucas Amaral 11 March 2015 (has links)
Submitted by Automa??o e Estat?stica (sst@bczm.ufrn.br) on 2016-06-06T18:56:53Z No. of bitstreams: 1 LucasAmaralMachado_DISSERT.pdf: 675823 bytes, checksum: cd1bcc94212045a3a4738ef67078d1cf (MD5) / Approved for entry into archive by Arlan Eloi Leite Silva (eloihistoriador@yahoo.com.br) on 2016-06-07T23:51:14Z (GMT) No. of bitstreams: 1 LucasAmaralMachado_DISSERT.pdf: 675823 bytes, checksum: cd1bcc94212045a3a4738ef67078d1cf (MD5) / Made available in DSpace on 2016-06-07T23:51:14Z (GMT). No. of bitstreams: 1 LucasAmaralMachado_DISSERT.pdf: 675823 bytes, checksum: cd1bcc94212045a3a4738ef67078d1cf (MD5) Previous issue date: 2015-03-11 / Conselho Nacional de Desenvolvimento Cient?fico e Tecnol?gico (CNPq) / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior (CAPES) / O objetivo deste estudo foi realizar a extra??o ?leo de r?-touro ?leo de r?-touro e desenvolver uma emuls?o adequada para uso t?pico do mesmo. Duas amostras de ?leo fora obtidas por diferentes m?todos, sendo uma por extra??o a quente e outra utilizando solvente org?nico. As amostras foram fisioquimicamente caracterizadas por t?cnicas de titula??o e seus compostos identificados atrav?s de cromatografia gasosa acoplada a espectrometria de massas (GC/EM). O equil?brio hidrif?lico-lipof?lico requerido (EHLr) do ?leo de r?-touro foi determinado e em seguida um diagrama de fases constru?do. A estabilidade da emuls?o de uso t?pico contendo diferentes adjuvantes farmac?uticos foi determinada. A an?lise de citotoxicidade do ?leo de r?-touro in natura e na emuls?o de uso t?pico foi realizada atrav?s do ensaio de MTT, utilizando linhagem de fibroblastos normais (3T3) e de melanoma (B16F10). O rendimento da extra??o a quente foi de 60,6%. Os principais compostos insaturados encontrados foram o ?cido eicosapentaen?ico (17,6%) e ?cido araquid?nico (8,4%). O estudo de EHLr demonstrou a presen?a de sistemas est?veis com EHL entre 12 e 13,5 e o diagrama de fases revelou a predomin?ncia de sistemas caracterizados como emuls?o (62%). A emuls?o t?pica apresentou tamanho de got?cula igual a 390 nm, polidispers?o de 0,05, potencial zeta -25 mV e manteve-se est?vel durante os 90 dias avaliados. O ?leo de r?-touro e a emuls?o t?pica n?o apresentaram citotoxicidade frente ? linhagem de c?lulas 3T3. No entanto, estes sistemas inviabilizaram significativamente (p > 0,05) o crescimento das c?lulas B16F10. Em conclus?o, o ?leo de r?-touro apresenta caracter?sticas qu?micas desej?veis para o desenvolvimento de sistemas terap?uticos de uso farmac?utico e/ou cosm?tico. / The skin is one of the largest organs of the human body and accounts for about 16% of body weight. The body protection against the external environment microorganisms is one of its most important functions, however is necessary that the skin remain intact for this function be exercised, so that when there is an injury on the skin, the process of restructuring needs to be starts, however this restructuration may also be compromised due to some diseases, justifying even more the need for the development of topical products that promote or accelerate the skin healing. Thus the aim of this study was to extract bullfrog oil and to develop a suitable topical emulsion. Two different oil samples were extracted by hot or organic solvent process. Titration techniques and gas chromatography- mass spectrometry were used to characterize the bullfrog oil. The required hydrophile-lipophile balance (HLBr) of bullfrog oil was determined and a pseudo-ternary phase diagram was constructed. The stability of the topical emulsion was evaluated. Then, cellular viability was determined by MTT assay using normal fibroblasts (3T3) and melanoma (B16F10) cells lines. The hot extraction yield was 60.6%. The major polyunsaturated compounds found were Eicosapentaenoic acid (17.6%) and Arachidonic acid (8.4%). HLBr study demonstrated the presence of stable systems with HLB ranging from 12.1 to 13.5 and the pseudo-ternary phase diagram showed mainly emulsion systems (62%). Topical emulsion showed 390 nm, polydispersity 0.05, zeta potential -25 mV and remained stable for ninety days. The bullfrog oil and topical emulsion did not showed citotoxicity in normal fibroblasts cells. However, these systems showed significantly inhibition of melanoma cells growth. In conclusion, the bullfrog oil presented desirable chemical characteristics required to be used for the development of a pharmaceutical and cosmetic products.
2

Avalia??o da atividade antimicrobiana de sistemas emulsionados contendo ?leos naturais para o tratamento de infec??es cut?neas

Alencar, Everton do Nascimento 10 June 2013 (has links)
Made available in DSpace on 2014-12-17T14:16:33Z (GMT). No. of bitstreams: 1 EvertonNA_DISSERT.pdf: 1792705 bytes, checksum: 2091882fa52265fca623e2d01c142cfa (MD5) Previous issue date: 2013-06-10 / Conselho Nacional de Desenvolvimento Cient?fico e Tecnol?gico / Natural oils have shown a scientific importance due to its pharmacological activity and renewable character. The copaiba (Copaifera langsdorffii) and Bullfrog (Rana catesbeiana Shaw) oils are used in folk medicine particularly because the anti-inflammatory and antimicrobial activities. Emulsion could be eligible systems to improve the palatability and fragrance, enhance the pharmacological activities and reduce the toxicological effects of these oils. The aim of this work was to investigate the antimicrobial activity of emulsions based on copaiba (resin-oil and essential-oil) and bullfrog oils against fungi and bacteria which cause skin diseases. Firstly, the essential oil was extracted from copaiba oil-resin and the oils were characterized by gas chromatography coupled to a mass spectrometry (GC-MS). Secondly, emulsion systems were produced. A microbiological screening test with all products was performed followed (the minimum inhibitory concentration, the bioautography method and the antibiofilm determination). Staphylococcus aureus, S. epidermidis, Pseudomonas aeruginosa, Candida albicans, C. parapsilosis, C. glabrata, C. krusei and C. tropicalis American Type Culture Collection (ATCC) and clinical samples were used. The emulsions based on copaiba oil-resin and essential oil improved the antimicrobial activity of the pure oils, especially against Staphylococcus e Candida resistant to azoles. The bullfrog oil emulsion and the pure bullfrog oil showed a lower effect on the microorganisms when compared to the copaiba samples. All the emulsions showed a significant antibiofilm activity by inhibiting the cell adhesion. Thus, it may be concluded that emulsions based on copaiba and bullfrog oils are promising candidates to treatment of fungal and bacterial skin infections / Os ?leos naturais v?m chamando aten??o da comunidade cient?fica devido a suas atividades farmacol?gicas e seu car?ter renov?vel. Os ?leos de copa?ba (Copaifera langsdorffii) e de r?-touro (Rana catesbeiana Shaw) ganham destaque, especialmente devido a ampla utiliza??o na medicina popular como anti-inflamat?rios e antimicrobianos. Sistemas emulsionados a base destes ?leos podem ser produzidos com a finalidade de melhorar o odor e a palatabilidade dos mesmos, al?m de potencializar a??o e reduzir toxicidade dos seus componentes. O objetivo deste trabalho foi investigar a atividade antimicrobiana de emuls?es contendo ?leos de copa?ba (?leo-resina e ?leo essencial) e ?leo de r?-touro frente a cepas de micro-organismos causadores de infec??es cut?neas. Inicialmente, foi realizada a extra??o de ?leo essencial e sua caracteriza??o qu?mica por cromatografia gasosa acoplada a espectroscopia de massas. Em seguida, foram produzidas emuls?es, ensaios de triagem microbiol?gica, microdilui??o para determina??o de concentra??o inibit?ria m?nima, bioautografia para determina??o dos componentes antimicrobianos e avalia??o da atividade antibiofilme. Foram utilizadas cepas da American Type Culture Collection (ATCC) e cl?nicas de Staphylococcus aureus, S. epidermidis, Pseudomonas aeruginosa, Candida albicans, C. parapsilosis, C. glabrata, C. krusei e C. tropicalis. Foi observado que os sistemas emulsionados de ?leo-resina de copa?ba e ?leo essencial de copa?ba contribu?ram na potencializa??o da atividade antimicrobiana, especialmente contra cepas do g?nero Staphylococcus e Candida resistentes aos az?is. A emuls?o de ?leo de r?-touro assim como o ?leo puro, apresentou menor atividade que as amostras de copa?ba, por?m exibiu significativa a??o antibiofilme, demonstrando que este sistema ? um potencial inibidor da ades?o de micro-organismos. Deste modo, pode-se inferir que as emuls?es a base destes ?leos s?o promissores sistemas para o tratamento de infec??es cut?neas f?ngicas e bacterianas
3

Desenvolvimento de um sistema terap?utico emulsionado para uso oral a base de ?leo de r?-touro (Rana catesbeiana Shaw)

Moro, Renata Rutckeviski 22 June 2015 (has links)
Submitted by Automa??o e Estat?stica (sst@bczm.ufrn.br) on 2018-01-15T22:12:26Z No. of bitstreams: 1 RenataRutckeviskiMoro_DISSERT.pdf: 2237359 bytes, checksum: 38ee9b608bb33566f80348e060646864 (MD5) / Approved for entry into archive by Arlan Eloi Leite Silva (eloihistoriador@yahoo.com.br) on 2018-01-18T14:11:18Z (GMT) No. of bitstreams: 1 RenataRutckeviskiMoro_DISSERT.pdf: 2237359 bytes, checksum: 38ee9b608bb33566f80348e060646864 (MD5) / Made available in DSpace on 2018-01-18T14:11:18Z (GMT). No. of bitstreams: 1 RenataRutckeviskiMoro_DISSERT.pdf: 2237359 bytes, checksum: 38ee9b608bb33566f80348e060646864 (MD5) Previous issue date: 2015-06-22 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior (CAPES) / Fontes alternativas de ?leos naturais est?o sendo constantemente avaliadas para atender a demanda por mat?rias-primas naturais para o desenvolvimento de novos produtos. O objetivo deste trabalho foi estudar a estabilidade oxidativa e t?rmica do ?leo de r?-touro (Rana catesbeiana Shaw), assim como desenvolver uma emuls?o baseado em um planejamento experimental com aplica??o para via oral. O tecido adiposo da Rana catesbeiana Shaw foi utilizado como fonte para a produ??o de um ?leo natural a partir do m?todo de extra??o a quente, obtendo rendimento de 60 ? 0,9%. O ?leo de r?-touro foi fisicoquimicamente caracterizado e os ?ndices de per?xido, acidez, iodo e saponifica??o foram respectivamente 1,9 meq O2 / kg; 2,9 KOH / g de ?leo; 104,2 g de I / 100 g de ?leo e 171,2 mg de KOH / g de ?leo. A cromatografia gasosa acoplada a espectrometria de massas foi usada para a determina??o dos compostos presentes no ?leo de r?-touro, apresentando como principais constituintes o ?cido ol?ico (30 %) e o ?cido eicosapentaen?ico (17,6%), que s?o ?cidos graxos insaturados e poliinsaturados, respectivamente. A estabilidade oxidativa foi determinada na presen?a e aus?ncia dos antioxidantes butilhidroxianisol (BHA) e butilhidroxitolueno (BHT), a 60 ? 2 ?C durante 15 dias e a temperatura ambiente durante 120 dias. Foram avaliados os ?ndices de acidez, per?xido, iodo e saponifica??o; dienos e trienos conjugados, tempo de indu??o a oxida??o (Rancimat?) e mudan?as nos espectros de infravermelho. A taxa de oxida??o do ?leo de r?-touro foi dependente da temperatura e o ?leo apresentou-se mais estavel na presen?a de BHT. Durante a oxida??o do ?leo, mudan?as significativas no espectro de absor??o do ultravioleta vis?vel e infravermelho foram observadas. O ?leo apresentou-se est?vel at? 200?C atrav?s da determina??o da estabilidade t?rmica utilizando a calorimetria explorat?ria diferencial e an?lise termogravim?trica. Um produto farmac?utico emulsionado para uso oral a base do ?leo de r?-touro utilizando o planejamento fatorial completo 23 foi desenvolvido, caracterizado e sua estabilidade contendo diferentes adjuvantes farmac?uticos foi avaliada. A emuls?o oral apresentou tamanho de got?cula de 410 ? 8,3 nm, potencial zeta - 38,2 mV, condutividade 1913.8 ?S/cma e pH 6.4. O uso de adjuvantes foi respons?vel por melhorar a estabilidade termooxidativa do ?leo disperso na emuls?o por um per?odo superior a tr?s meses. Portanto, a formula??o desenvolvida exibiu caracter?sticas tecnol?gicas promissoras para estabilidade termooxidativa da emuls?o contendo o ?leo de r?-touro para uso oral. / Alternative sources of natural oils are constantly being investigated to meet the demand for natural raw materials used for the development of new products. The aim of this work was to study the oxidative and thermal stability of the bullfrog oil (Rana catesbeiana Shaw), as well as to develop an emulsion based on an experimental design with application to the oral route. The adipose tissue of Rana catesbeiana Shaw was used as a source for producing natural oil by a hot extraction method, with yield of 60 ? 0.9%. The bullfrog oil was characterized and peroxide, acidity, iodine and saponification values were respectively 1.92 meq O2 / kg; 2.95 KOH / g oil; 104.2 g of I / 100 g oil and 171.2 mg KOH / g of oil. The gas chromatography-mass spectrometry (GC / MS) was used to determine the compounds present in the bullfrog oil. The main constituents are oleic acid (30%) and eicosapentaenoic acid (17.6%), which are monounsaturated and polyunsaturated fatty acids respectively. Oxidative stability was determined in the presence or absence of the antioxidants BHA (butylhydroxyanisole) and BHT (butylhydroxytoluene) at 60 ? 2 ? C for 15 days and at room temperature for 120 days. Values of acidity, peroxide, iodine and saponification; conjugated dienes and trienes, oxidation induction time (Rancimat?) and changes in the infrared spectra were measured. The bullfrog oil oxidation rate was dependent on temperature, and the oil became more stable in the presence of BHT. During the oil oxidation, significant changes in the ultraviolet visible absorption spectrum and infrared were observed. Differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA) showed that the oil was stable up to 200 ?C.

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