首页> 外文期刊>Pathobiology: journal of immunopathology, molecular and cellular biology >Magnetic Hyperthermia Using Self-Controlled Heating Elements Consisting of Fe-Al Milling Alloy Induces Cancer Cell Apoptosis while Preserving Skeletal Muscle
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Magnetic Hyperthermia Using Self-Controlled Heating Elements Consisting of Fe-Al Milling Alloy Induces Cancer Cell Apoptosis while Preserving Skeletal Muscle

机译:磁体热疗使用由Fe-Al铣削合金组成的自控加热元件诱导癌细胞凋亡,同时保持骨骼肌

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Necrosis-inducing anticancer drugs enhance high-mobility group box 1 (HMGB1) release during cell necrosis, and HMGB1-induced autophagy in skeletal muscle induces muscle atrophy. We evaluated the efficacy of magnetic hyperthermia therapy (MHT) using a low-energy magnetic field and self-controlled heating elements in tumor treatment. MHT-induced apoptosis by heating mouse subcutaneous tumors at 43 degrees C using a heat-controlling iron-aluminum (Fe-Al) milling alloy. In contrast, MHT using Fe line-induced necrosis by heating to approximately 100 degrees C. Furthermore, MHT with Fe-Al milling alloy reduced stemness. In hyperthermia using age line or Fe-Al milling alloy, both of them provided histological degeneration in skeletal muscle; however, qualitative differences were observed. MHT using Fe-line induced pronounced autophagy, decrease of myosin heavy chain content, and increase in serum HMGB1. In contrast, MHT using Fe-Al milling alloy induced heat shock protein 90 but no autophagy and decreased serum HMGB1. Therefore, MHT using Fe-Al milling alloy might be a good method for local treatment of tumors to reduce skeletal muscle atrophy.
机译:诱导坏死抗癌药物增强高迁移率组箱1(HMGB1)在细胞坏死期间释放,HMGB1诱导的骨骼肌中的自噬诱导肌肉萎缩。我们使用低能磁场和肿瘤处理中的自控加热元件评估磁体热疗治疗(MHT)的疗效。使用热控制铁 - 铝(Fe-Al)铣削合金在43摄氏度下加热小鼠皮下肿瘤来诱导细胞凋亡。相比之下,MHT通过加热至约100℃的Fe系诱导的坏死。此外,使用Fe-Al铣削合金的MHT降低了茎。在使用年龄线或Fe-Al铣削合金的高温性中,它们都提供了骨骼肌的组织学变性;但是,观察到定性差异。 MHT使用Fe-Line诱导明显的自噬,肌球蛋白重链含量的减少,并增加血清HMGB1。相比之下,使用Fe-Al铣削合金诱导热休克蛋白90但没有自噬和血清HMGB1的MHT。因此,使用Fe-Al铣削合金的MHT可能是局部治疗肿瘤以减少骨骼肌萎缩的良好方法。

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