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1.
Ann Anat ; 229: 151464, 2020 May.
Artigo em Inglês | MEDLINE | ID: mdl-31978572

RESUMO

OBJECTIVE/BACKGROUND: The most frequently used animal model for human DMD (Duchenne muscular dystrophy) research is the mdx mouse. In both species, characteristic histological changes like inflammation, muscle fiber degeneration and fibrosis are the same, but in contrast to humans, in mdx mice, phases of muscle fiber degeneration are compensated by regeneration processes. AIM: Therefore, the interest of this study was to evaluate histological features in masticatory muscles after BTX-A injection into the right masseter muscle of wild type and dystrophic (mdx) mice, illustrating de- and regeneration processes induced by this substance. MATERIAL AND METHODS: The right masseter muscle of 100 days old healthy and mdx mice were selectively paralyzed by a single intramuscular BTX-A injection. Masseter as well as temporal muscle of injection and non-injection side were carefully dissected 21 days and 42 days after injection, respectively, and fiber diameter, cell nuclei position, necrosis and collagen content were analyzed histomorphologically in order to evaluate de- and regeneration processes in these muscles. Statistical analysis was performed using SigmaStat Software and Mann Whitney U-test (significance level: p < 0.05). RESULTS: At both investigation periods and in both mouse strains fiber diameter was significantly reduced and collagen content was significantly increased in the right injected masseter muscle whereas fiber diameters in mdx mice were much smaller, and these differences were even more apparent at the second investigation period. Necrosis and central located nuclei could generally be found in all mdx mice muscles investigated with an amount of centronucleation exceeding 60%, and a significant increase of necrosis six weeks after injection. In wild type mice central located nuclei could primarily be found in the treated masseter muscle with a portion of 2.7%, and this portion decreased after six weeks, whereas in mdx mice a decrease could also be seen in the non-injected muscles. In contrast, in wild type mice necrosis was not apparent at any time and in all muscles investigated. CONCLUSION: From our results it can be concluded that in mdx mice masticatory muscles de- and regeneration processes were extended, triggered by a selective BTX-A injection, or mdx mice at this age, independently of BTX-A treatment, went through another cycle of de- and regeneration as a characteristic of this disease.


Assuntos
Toxinas Botulínicas Tipo A/farmacologia , Distrofina/deficiência , Músculo Masseter/anatomia & histologia , Distrofia Muscular de Duchenne/patologia , Animais , Toxinas Botulínicas Tipo A/administração & dosagem , Colágeno/análise , Modelos Animais de Doenças , Feminino , Processamento de Imagem Assistida por Computador , Injeções Intramusculares , Masculino , Músculo Masseter/química , Músculo Masseter/efeitos dos fármacos , Músculo Masseter/patologia , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Endogâmicos mdx , Fatores de Tempo
2.
Adv Clin Exp Med ; 28(1): 11-18, 2019 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-30085421

RESUMO

BACKGROUND: The mdx mouse, the most approved animal model for basic research in Duchenne muscular dystrophy (DMD), has the ability to compensate muscle degeneration by regeneration process, which is obvious at approx. 3 months of age. Hence, this mouse model is only temporarily suitable to proof craniofacial changes which are usually evident in humans with the progression of the disease. OBJECTIVES: The purpose of our study was to examine the impact of botulinum toxin A (BTX-A) in influencing muscle regeneration in the masticatory muscles of healthy and mdx mice. MATERIAL AND METHODS: Chemo-denervation of the right masseter muscle was induced in 100-day-old, healthy and dystrophic mice by a specific intramuscular BTX-A injection. Gene expression and protein content of myogenic regulatory factors and muscle growth factor (MyoD1, myogenin and myostatin) in the right and left masseter, temporal and the tongue muscle were determined 4 and 21 days after injection, respectively, using quantitative reverse transcription polymerase chain reaction (qRT-PCR) and western blot technique. RESULTS: The 4 day and 21 day interval proved significant but varying changes of mRNA expression in both control and mdx mice. At the protein level, myogenin expression was increased in the temporal and masseter muscle on the injection side in controls, whereas dystrophic mice showed the same effect for MyoD1 expression. Additionally, increased protein expression of all studied genes could be found in dystrophic mice compared to controls, except the left temporal and the tongue muscle. CONCLUSIONS: Muscle regeneration is not constant in BTX-A injected mdx masticatory muscles, presumably due to the already exhausted capacity or functional loss of satellite cells caused by dystrophin deficiency, and, therefore, disturbed regeneration potential of myofibrils. Botulinum toxin A injection cannot fully break down regulatory processes at molecular level in 100-day-old mdx mice. Further investigations are necessary to fully understand the regeneration process following BTX-A injection into dystrophic muscles.


Assuntos
Toxinas Botulínicas/administração & dosagem , Distrofina/deficiência , Músculo Esquelético/efeitos dos fármacos , Músculo Esquelético/metabolismo , Distrofia Muscular Animal/metabolismo , Proteína MyoD/metabolismo , Miogenina/metabolismo , Animais , Western Blotting , Modelos Animais de Doenças , Distrofina/genética , Distrofina/metabolismo , Humanos , Músculo Masseter , Camundongos , Camundongos Endogâmicos mdx , Distrofia Muscular Animal/patologia , Proteína MyoD/genética , Fatores de Regulação Miogênica , Miogenina/genética , Miostatina/genética , Miostatina/metabolismo , Regeneração , Reação em Cadeia da Polimerase Via Transcriptase Reversa
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