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1.
Rev Bras Ortop (Sao Paulo) ; 59(2): e228-e234, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38606141

ABSTRACT

Objective To evaluate the effects of estrogen, raloxifene and genistein on the expression of KISS1 (kisspeptin), KISS1R (kisspeptin receptor), AR (androgen receptor) and INSR (insulin receptor) in the bones of ovariectomized rats. Methods Forty-eight adult rats were randomly divided into 6 groups, containing 8 animals each: G1-nonovariectomized control; G2-ovariectomized and treated with conjugated equine estrogens (50 µg/Kg/day); G3-ovariectomized and treated with raloxifene (0.75 mg/kg/day); G4-ovariectomized animal that received soy extract with genistein (300 mg/kg/day); G5-ovariectomized animal that received estrogen and genistein; and G6-ovariectomized animal that received estrogen and raloxifene. Three months after surgery, the castrated animals received the drugs orally daily for 120 days. All animals were sacrificed after this period, by deepening the anesthesia. The left tibia was removed for total RNA extraction and analysis of gene expression of KISS1 , KISS1R , AR and INSR , by quantitative real-time polymerase chain reaction (qRT-PCR). Results KISS1 was not detected in any of the treated groups. KISS1R , INSR and AR showed higher expression in the G3 group ( p < 0.001), while lower levels of transcripts for these genes were observed in G4 and G5. G2 animals showed hypoexpression of the evaluated genes. Conclusion The results indicate that raloxifene, alone or combined with estrogen, was able to induce the expression of genes associated with the recovery of bone tissue homeostasis in ovariectomized rats.

2.
Rev. Bras. Ortop. (Online) ; 59(2): 228-234, 2024. graf
Article in English | LILACS | ID: biblio-1565381

ABSTRACT

Abstract Objective To evaluate the effects of estrogen, raloxifene and genistein on the expression of KISS1 (kisspeptin), KISS1R (kisspeptin receptor), AR (androgen receptor) and INSR (insulin receptor) in the bones of ovariectomized rats. Methods Forty-eight adult rats were randomly divided into 6 groups, containing 8 animals each: G1-nonovariectomized control; G2-ovariectomized and treated with conjugated equine estrogens (50 µg/Kg/day); G3-ovariectomized and treated with raloxifene (0.75 mg/kg/day); G4-ovariectomized animal that received soy extract with genistein (300 mg/kg/day); G5-ovariectomized animal that received estrogen and genistein; and G6-ovariectomized animal that received estrogen and raloxifene. Three months after surgery, the castrated animals received the drugs orally daily for 120 days. All animals were sacrificed after this period, by deepening the anesthesia. The left tibia was removed for total RNA extraction and analysis of gene expression of KISS1, KISS1R, AR and INSR, by quantitative real-time polymerase chain reaction (qRT-PCR). Results KISS1 was not detected in any of the treated groups. KISS1R, INSR and AR showed higher expression in the G3 group (p < 0.001), while lower levels of transcripts for these genes were observed in G4 and G5. G2 animals showed hypoexpression of the evaluated genes. Conclusion The results indicate that raloxifene, alone or combined with estrogen, was able to induce the expression of genes associated with the recovery of bone tissue homeostasis in ovariectomized rats.


Resumo Objetivo Avaliar os efeitos do estrogênio, raloxifeno e genisteína na expressão de KISS1 (kisspeptina), KISS1R (receptor da kisspeptina), AR (receptor de androgênio) e INSR (receptor de insulina) nos ossos de ratas ovariectomizadas. Métodos Quarenta e oito ratas adultas foram divididas aleatoriamente em 6 grupos, contendo 8 animais cada: G1-controle não ovariectomizado); G2-ovariectomizado e tratado com estrogênios conjugados equinos (50 µg/Kg/dia); G3-ovariectomizado e tratado com raloxifeno (0,75 mg/kg/dia); G4-ovariectomizado que recebeu extrato de soja com genisteína (300 mg/kg/dia); G5-ovariectomizado que recebeu estrogênio e genisteína; e G6-ovariectomizado que recebeu estrogênio e raloxifeno. Após 3 meses da cirurgia, os animais castrados receberam os fármacos diariamente por via oral, durante 120 dias. Todos os animais foram sacrificados após esse período, por aprofundamento da anestesia. A tíbia esquerda foi removida para extração de RNA total e análise da expressão gênica de KISS1, KISS1R, AR e INSR, por reação de cadeia de polimerase quantitativa em tempo real (quantitative real-time polymerase chain reaction, qRT-PCR, em inglês). Resultados KISS1 não foi detectado em nenhum dos grupos tratados. KISS1R, INSR e AR mostraram maior expressão no grupo G3 (p < 0,001), enquanto menores níveis de transcritos para esses genes foram observados em G4 e G5. Os animais de G2 apresentaram hipoexpressão dos genes avaliados. Conclusão Os resultados indicam que o raloxifeno, isolado ou combinado com estrogênio, foi capaz de induzir a expressão de genes associados à recuperação da homeostase do tecido ósseo em ratas ovariectomizadas.


Subject(s)
Animals , Rats , Osteoporosis , Genistein , Raloxifene Hydrochloride/therapeutic use , Estrogens , Kisspeptins
3.
Araçatuba; s.n; 2021. 39 p. graf, ilus, tab.
Thesis in Portuguese | LILACS, BBO - Dentistry | ID: biblio-1438505

ABSTRACT

Este estudo teve como objetivo analisar o processo de formação óssea, bem como a microarquitetura óssea promovido pela associação entre o BioGran® e diferentes concentrações de raloxifeno através do método da sonoquímica em defeitos críticos realizados em calvária de rato. Em um total de doze ratos machos, um defeito crítico de 5 mm de diâmetro foi feito e preenchido com BioGran® 100% (Bg), BioGran® 90% associado à Raloxifeno 10%, e BioGran® 80% associado à Raloxifeno 20%. Aos 14 e 24 dias pós-operatório, foram aplicados os fluorocromos calceína e alizarina, de modo respectivo. A eutanásia ocorreu aos 30 dias após a realização do procedimento cirúrgico para enxertia dos biomateriais. Análise de microtomografia computadorizada (micro-CT) através dos parâmetros de superfiície de intersecção (i.S), fração de volume ósseo (BV/TV) e densidade de conectividade (Conn.Dn) e por microscopia confocal a laser por meio da dinâmica óssea, superfície de mineralização ativa e a taxa de aposição mineral (MAR). Os dados foram analisados através de análise estatística utilizando o teste de normalidade Shapiro-Wilk e o pós teste de Turkey (p<0.05). Para os parâmetros de micro-CT avaliados os menores valores foram encontrados no grupo BG+RL10% (p<0,05), valores similares foram encontrados entre os grupos BG e BG+RL20%. A microscopia confocal evidenciou melhor mineralização óssea e maior taxa de aposição mineral (MAR) para o Grupo BG+RL20% (p<0,05%). Conclusão: A concentração de Raloxifeno a 20% combinado ao BioGran® pelo método da sonoquímica parece ter acelerado o reparo ósseo(AU)


This study aimed to analyze the bone formation process, as well as the bone microarchitecture promoted by the association between BioGran® and different concentrations of raloxifene through the sonochemistry method in critical defects performed in rat calvaria. In a total of twelve male rats, a critical defect of 5 mm in diameter was made and filled with BioGran® 100% (Bg), BioGran® 90% associated with Raloxifene 10%, and BioGran® 80% associated with Raloxifene 20%. At 14 and 24 days postoperatively, the fluorochromes calcein and alizarin were applied, respectively. Euthanasia occurred 30 days after the surgical procedure for grafting biomaterials. Analysis of computed microtomography (microCT) through the parameters of intersection surface (iS), bone volume fraction (BV / TV) and connectivity density (Conn.Dn) and by confocal microscopy through bone dynamics, surface of active mineralization and the mineral apposition rate (MAR). Data were analyzed through statistical using the Shapiro-Wilk normality test and the Turkey post-test (p <0.05). For the me microCT parameters evaluated, the lowest values were found in the BG + RL10% group (p<0.05), similar values were found between the BG and BG + RL20% groups. Confocal microscopy showed better bone mineralization and higher mineral apposition rate (MAR) for the BG + RL20% Group (p < 0.05%). Conclusion: The concentration of Raloxifene at 20% combined with BioGran® by the sonochemistry method seems to have accelerated bone repair(AU)


Subject(s)
Animals , Rats , Bone Regeneration , Sonication , Bone Transplantation , Rats, Wistar
4.
Eur J Pharm Sci ; 114: 146-154, 2018 Mar 01.
Article in English | MEDLINE | ID: mdl-29198613

ABSTRACT

Raloxifene hydrochloride is a benzothiophene derivative mainly used in the prevention and treatment of osteoporosis, but exhibits a low bioavailability hindered by its poor water solubility. In this study, a mechanochemical approach based on neat and liquid-assisted grinding was applied to produce new solid forms of raloxifene hydrochloride. The solids obtained were characterized by several solid-state techniques, such as powder X-ray diffraction, thermal analysis, infrared and Raman spectroscopy. These results showed that depending on the processing conditions solvated or amorphous forms can be produced. The thermal stability of the new forms was also investigated showing that the new forms convert back into the raw material form, as observed by Raman spectroscopy, which was successfully used to discriminate amorphous and crystalline forms, as well as, to monitor in situ the recrystallization process. Furthermore, the solubility of the new forms was evaluated, showing the clear advantage of the amorphous form, when compared with the currently marketed salt.


Subject(s)
Chemistry, Pharmaceutical/methods , Raloxifene Hydrochloride/analysis , Raloxifene Hydrochloride/chemistry , Drug Stability , Raloxifene Hydrochloride/metabolism , Solubility , Spectrum Analysis, Raman/methods , Vibration , X-Ray Diffraction/methods
5.
Araçatuba; s.n; 2017. 93 p. tab, graf, ilus.
Thesis in Portuguese | LILACS, BBO - Dentistry | ID: biblio-914549

ABSTRACT

A ocorrência de doenças crônicas e degenerativas é significativamente maior nos organismos durante o envelhecimento, dentre elas, a osteoporose, que resulta em aumento no número de fraturas. As fraturas são as consequências mais dramáticas da osteoporose, sendo que do colo do fêmur é a mais severa, com maior incidência de morbidades e mortalidade. A menor concentração plasmática de estrogênio nas mulheres menopausadas, exerce ação primordial no desenvolvimento desta doença. Desta maneira, o objetivo deste estudo foi estudar a prevenção da osteoporose em decorrência do envelhecimento reprodutivo feminino, especificamente no período de periestropausa, utilizando treinamento de força (TF), raloxifeno (Ral) ou combinação de TF e Ral. Durante 120 dias, ratas Wistar no período do envelhecimento (18 a 21 meses) realizaram TF em escada três vezes por semana, receberam Ral (1mg/Kg/dia) por gavagem, ou realizaram TF associado ao tratamento com Ral. Microarquitetura óssea cortical e trabecular, densidade mineral óssea areal (DMOa), força óssea, imunoistoquímica (OCN, TRAP e SOST) e superfície de osteoclastos do colo do fêmur foram avaliadas, além de PCR (Runx2, Sp7, Alp, Bsp, Ocn, Rank, Rankl, Opg, Trap e Ctsk) e Western Blot (p-ERα e TRAP) do tecido ósseo de todo o fêmur. Os resultados demonstram que os tratamentos modularam o ciclo de remodelamento ósseo de maneiras diferentes: TF estimulou RNAm de marcadores osteoblásticos e osteoclásticos, enquanto Ral diminuiu marcadores osteoclásticos e TF associado a Ral aumentou marcadores osteoblásticos e diminuiu osteoclásticos. Ambos tratamentos resultaram em melhora da microarquitetura trabecular do colo do fêmur de ratas na periestropausa, todavia, apenas o TF foi capaz de melhorar além da microarquitetura trabecular, a cortical e força óssea. Desta maneira, sugerimos que a realização de TF, utilização de Ral ou a associação de TF e Ral durante a periestropausa são intervenções válidas na prevenção de osteoporose em decorrência do envelhecimento reprodutivo feminino, porém os efeitos do TF parecem ser superiores. Levando em consideração que a carga mecânica gerada pelo TF age também em tecidos não esqueléticos, concluímos que TF pode ser intervenção sistêmica para osteoporose. Esses resultados adicionam novas informações à literatura sobre terapêuticas preventivas para osteoporose e fornecem informações relevantes para estudos pré-clínicos(AU)


The association of aging with osteoporosis results in an increased number of fractures. In these fractures, the femoral neck is involved in 75% of affected women and is one of the most dramatic possible consequences. The aim of this study was to prevent female osteoporosis using strength training (ST), raloxifene (Ral) or a combination of ST plus Ral during the natural female aging process, specifically in the periestropause period. For 120 total days, aging female Wistar rats at 18-21 months of age performed ST on three times per week, and Ral was administered daily by gavage (1mg/kg/day). Bone microarchitecture, areal bone mineral density (aBMD), bone strength of the femoral neck, immunohistochemistry, western blotting (p-ERα and TRAP) and RT-PCR were assessed. We found that the treatments modulate the bone remodeling cycle in different ways. Both ST and Ral treatment resulted in improved bone microarchitecture in the femoral neck of rats in late periestropause. However, only ST improved cortical microarchitecture and bone strength in the femoral neck. In addition, ST stimulated mRNA levels of osteoclastic and osteoblastic markers, while Ral decreased mRNA levels of osteoclastic markers. The combined ST plus Ral therapy increased osteoblastic markers and decreased osteoclast markers. In this way, we suggest that SF, the use of Ral or the association of ST and Ral during periestropause are valid interventions in the prevention of osteoporosis due to female reproductive aging, but the effects of ST seem to be superior, taking into account that the mechanical load generated by ST also acts on nonskeletal tissues, we conclude that ST can be a systemic intervention for osteoporosis. These results add new information to the literature on preventive therapies for osteoporosis and provide relevant information for preclinical studies(AU)


Subject(s)
Animals , Rats , Aging , Exercise , Osteoporosis , Raloxifene Hydrochloride , Bone and Bones , Rats, Wistar
6.
Int Endod J ; 48(11): 1059-68, 2015 Nov.
Article in English | MEDLINE | ID: mdl-25354165

ABSTRACT

AIM: To analyse the local regulatory mechanisms of osteoclastogenesis and angiogenesis during the progression of periapical lesions in female rats with oestrogen deficiency and treatment with raloxifene (RLX). METHODOLOGY: Female Wistar rats were distributed into groups: SHAM-veh, subjected to sham surgery and treated with a vehicle; OVX-veh, subjected to ovary removal and treated with a vehicle; and OVX-RLX, subjected to ovary removal and treated with RLX. Vehicle or RLX was administered orally for 90 days. During treatment, the dental pulp of mandibular first molars was exposed to the oral environment for induction of periapical lesions, which were analysed after 7 and 30 days. After the experimental periods, blood samples were collected for measurement of oestradiol, calcium, phosphorus and alkaline phosphatase. The rats were euthanized and the mandibles removed and processed for immunohistochemical detection of receptor activator of nuclear factor kappa-B ligand (RANKL), osteoprotegerin (OPG), hypoxia-inducible factor-1 alpha (HIF-1α) and bone-specific alkaline phosphatase (BALP). Data were compared using Kruskal-Wallis followed by Dunn test (nonparametric values) and anova followed by the Tukey's test (parametric values). RESULTS: The plasma concentration of oestradiol showed hypo-oestrogenism in the rats subjected to ovary removal. On day 7, alkaline phosphatase activity, calcium and phosphorus were higher in the OVX-RLX group than in the OVX-veh group (P < 0.001), but immunolabelling for RANKL and HIF-1α was lower in OVX-RLX group (P < 0.001). On day 30, the OVX-veh group had higher immunolabelling for RANKL than the OVX-RLX group (P < 0.05). There were no significant differences in the immunoreactivity of OPG and BALP between any groups at either time-point (P > 0.05). CONCLUSION: RLX therapy reversed the increased levels of the local regulators of both osteoclastogenesis and angiogenesis induced by oestrogen deficiency.


Subject(s)
Neovascularization, Physiologic/drug effects , Osteoclasts/drug effects , Osteogenesis/drug effects , Periapical Periodontitis/pathology , Raloxifene Hydrochloride/pharmacology , Alkaline Phosphatase/blood , Animals , Biomarkers/blood , Calcium/blood , Disease Models, Animal , Estradiol/blood , Female , Immunohistochemistry , Mandible , Organ Size , Ovariectomy , Phosphorus/blood , Rats , Rats, Wistar
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