Mini Review: Hyperthermia Treatment for Bone Cancers

O. Bretcanu
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Abstract

Bone is one of the most common sites for metastasis. Approximately 350,000 people die in the United States every year from bone metastases [1]. The most common site of bone metastases is the axial skeleton, with the lumbar region being the most frequently impacted site [2]. Bone cancer can lead to bone pain, hypercalcemia, spinal cord compression and bone fracture, decreasing the quality of life of cancer patients [3]. The most common treatments for bone cancers are surgical resection, radiotherapy and chemotherapy. Hyperthermia is another type of cancer treatment that is generally used for advanced cancers, in combination with radiotherapy or chemotherapy. Clinical trials have shown that hyperthermia reduces the size of tumours, enhancing the effect of radiation or anticancer drugs [4]. Hyperthermia affects both molecular and cellular levels. Alterations to the cytoskeleton and the cell membrane, as well as impairment of protein, Ribonucleic Acid (RNA) and Deoxyribonucleic Acid (DNA) synthesis, inhibition of DNA repair enzymes, altered gene expression and protein denaturation, unfolding and aggregation [5-7] are all changes caused by hyperthermia.
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小型综述:骨癌的热疗治疗
骨是最常见的转移部位之一。美国每年约有35万人死于骨转移[1]。骨转移最常见的部位是轴骨,腰椎区域是最常见的受累部位[2]。骨癌症可导致骨痛、高钙血症、脊髓压迫和骨折,降低癌症患者的生活质量[3]。骨癌最常见的治疗方法是手术切除、放疗和化疗。热疗是另一种癌症治疗方法,通常用于晚期癌症,与放疗或化疗相结合。临床试验表明,热疗可以缩小肿瘤的大小,增强辐射或抗癌药物的作用[4]。热疗影响分子和细胞水平。细胞骨架和细胞膜的改变,以及蛋白质、核糖核酸(RNA)和脱氧核糖核酸(DNA)合成的损伤,DNA修复酶的抑制,基因表达的改变和蛋白质变性、去折叠和聚集[5-7]都是高温引起的变化。
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