1.Conservative management (marsupialization) of unicystic ameloblastoma: literature review and a case report.
Jwayoung KIM ; Eunkyung NAM ; Sukho YOON
Maxillofacial Plastic and Reconstructive Surgery 2017;39(12):38-
BACKGROUND: In this study, we present a case of unicystic ameloblastoma (UA) treated by marsupialization followed by surgical enucleation as a conservative approach. UA is a rare, benign, less aggressive, and less invasive variant of ameloblastoma that is observed quite often in younger patients. Radical approaches have effects on the physical and psychological development of a growing young patient; therefore, conservative approaches are widely used for UA management in children. CASE PRESENTATION: This report described a case of an 11-year-old girl with UA of the mandibular molar–ramus area, which also involved impaction of the second and third molars. The lesion was marsupialized, and 31 months after marsupialization, surgical enucleation was performed with extraction of the impacted third molar. The second molar, which was preserved, spontaneously and completely erupted. No recurrence was observed during a 49-month follow-up. CONCLUSIONS: Conservative treatments for UA in young patients have more advantages. Our results provide evidence that marsupialization is effective in regressing the lesion size to ease complete removal, preserving mandibular growth, maintaining involved second molar, and promoting the eruption of the tooth.
Ameloblastoma*
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Child
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Female
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Follow-Up Studies
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Humans
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Molar
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Molar, Third
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Recurrence
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Tooth
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Tooth Eruption
2.Exercise Training Attenuates Ovariectomy-Induced Alterations in Skeletal Muscle Remodeling, Apoptotic Signaling, and Atrophy Signaling in Rat Skeletal Muscle
Eun-Jeong CHO ; Youngju CHOI ; Jiyeon KIM ; Jun Hyun BAE ; Jinkyung CHO ; Dong-Ho PARK ; Ju-Hee KANG ; Jin Hwan YOON ; Eunmi PARK ; Dae Yun SEO ; Sukho LEE ; Hyo-Bum KWAK
International Neurourology Journal 2021;25(Suppl 2):S47-54
Purpose:
The effects of aerobic exercise training on soleus muscle morphology, mitochondria-mediated apoptotic signaling, and atrophy/hypertrophy signaling in ovariectomized rat skeletal muscle were investigated.
Methods:
Female Sprague-Dawley rats were divided into control (CON), ovariectomy (OVX), and ovariectomy plus exercise (OVX+EX) groups. After ovarian excision, exercise training was performed using a rat treadmill at 20 m/min, 50 min/day, 5 days/week for 12 weeks. Protein levels of mitochondria-mediated apoptotic signaling and atrophy/hypertrophy signaling in the skeletal muscle (soleus) were examined through western immunoblot analysis.
Results:
The number of myocytes and myocyte cross-sectional area (CSA) were increased and the extramyocyte space was decreased in the OVX group compared to those in the CON group. However, aerobic exercise training significantly increased myocyte CSA and decreased extramyocyte space in the OVX+EX group compared to those in the OVX group. The protein levels of proapoptotic signaling and muscle atrophy signaling were significantly increased, whereas the protein levels of muscle hypertrophy signaling were significantly decreased in the OVX group compared to that in the CON group. Aerobic exercise training significantly decreased the protein levels of proapoptotic signaling and increased the protein level of antiapoptotic protein in the OVX+EX group compared to that in the OVX group. Aerobic exercise training significantly increased the protein levels of hypertrophy signaling and decreased protein levels of atrophy signaling in the OVX+EX group compared to those in the OVX group.
Conclusions
Treadmill exercise improved estrogen deficiency-induced impairment in skeletal muscle remodeling, mitochondria-mediated apoptotic signaling, and atrophy/hypertrophy signaling in skeletal muscle.