使用3-溴丙酮酸治疗转移性黑色素瘤的安全性和结果:一个简明的文献回顾和案例研究。

Q Medicine 癌症 Pub Date : 2014-07-01 Epub Date: 2014-03-14 DOI:10.5732/cjc.013.10111
Salah Mohamed El Sayed, Walaa Gamal Mohamed, Minnat-Allah Hassan Seddik, Al-Shimaa Ahmed Ahmed, Asmaa Gamal Mahmoud, Wael Hassan Amer, Manal Mohamed Helmy Nabo, Ahmed Roshdi Hamed, Nagwa Sayed Ahmed, Ali Abdel-Rahman Abd-Allah
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引用次数: 67

摘要

3-溴丙酮酸(3BP)是一种新型的抗癌烷化剂,具有多种显著的功能。除了抑制包括己糖激酶II和乳酸脱氢酶(LDH)在内的关键糖酵解酶外,3BP还选择性地抑制线粒体氧化磷酸化、血管生成和癌细胞中的能量产生。此外,3BP诱导癌细胞生成过氧化氢(氧化应激效应),并与LDH底物丙酮酸和乳酸竞争。只有一项已发表的人类临床研究表明3BP对纤维板层性肝细胞癌有效。LDH是评估肿瘤的一个很好的指标,与肿瘤残余肿块的存在相比,它能更好地预测治疗结果。根据Warburg效应,LDH负责乳酸合成,乳酸合成促进癌细胞存活、进展、侵袭性、转移和血管生成。通过乳酸脱氢酶活性产生的乳酸通过代谢共生为肿瘤内的有氧细胞群提供燃料。在最致命的皮肤癌黑色素瘤中,3BP诱导敏感细胞坏死细胞死亡,而高谷胱甘肽(GSH)含量使其他黑色素瘤细胞对3BP产生抗性。同时使用GSH消耗剂与3BP杀死耐药黑色素瘤细胞。黑色素瘤患者的生存率与高血清LDH水平呈负相关,据报道,在随机临床试验中,这是黑色素瘤治疗的高度预测指标。在这里,我们报告了一位28岁的男性,他患有IV期转移性黑色素瘤,累及背部、左侧胸膜和肺部。该病导致左肺完全破坏,血清LDH水平高(4283 U/L)。经伦理委员会批准和患者书面同意后,患者接受3BP静脉输注(1-2.2 mg/kg),但由于血清LDH水平较高,抗癌效果很小。这可能是由于肿瘤中谷胱甘肽含量高。口服能消耗肿瘤GSH的扑热息痛与3BP联合治疗时,血清LDH水平下降最大。虽然缓慢静脉输注3BP似乎具有最小的细胞毒性,但通过这种给药方式其抗癌效果较低。这可能是由于肿瘤GSH含量高,同时使用GSH消耗剂扑热息痛后,GSH含量增加。如果3BP的抗癌效果不如预期,可能需要与扑热息痛联合使用,以使癌细胞对3BP诱导的作用敏感。
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Safety and outcome of treatment of metastatic melanoma using 3-bromopyruvate: a concise literature review and case study.

3-Bromopyruvate (3BP) is a new, promising anticancer alkylating agent with several notable functions. In addition to inhibiting key glycolysis enzymes including hexokinase II and lactate dehydrogenase (LDH), 3BP also selectively inhibits mitochondrial oxidative phosphorylation, angiogenesis, and energy production in cancer cells. Moreover, 3BP induces hydrogen peroxide generation in cancer cells (oxidative stress effect) and competes with the LDH substrates pyruvate and lactate. There is only one published human clinical study showing that 3BP was effective in treating fibrolamellar hepatocellular carcinoma. LDH is a good measure for tumor evaluation and predicts the outcome of treatment better than the presence of a residual tumor mass. According to the Warburg effect, LDH is responsible for lactate synthesis, which facilitates cancer cell survival, progression, aggressiveness, metastasis, and angiogenesis. Lactate produced through LDH activity fuels aerobic cell populations inside tumors via metabolic symbiosis. In melanoma, the most deadly skin cancer, 3BP induced necrotic cell death in sensitive cells, whereas high glutathione (GSH) content made other melanoma cells resistant to 3BP. Concurrent use of a GSH depletor with 3BP killed resistant melanoma cells. Survival of melanoma patients was inversely associated with high serum LDH levels, which was reported to be highly predictive of melanoma treatment in randomized clinical trials. Here, we report a 28-year-old man presented with stage IV metastatic melanoma affecting the back, left pleura, and lung. The disease caused total destruction of the left lung and a high serum LDH level (4,283 U/L). After ethics committee approval and written patient consent, the patient received 3BP intravenous infusions (1-2.2 mg/kg), but the anticancer effect was minimal as indicated by a high serum LDH level. This may have been due to high tumor GSH content. On combining oral paracetamol, which depletes tumor GSH, with 3BP treatment, serum LDH level dropped maximally. Although a slow intravenous infusion of 3BP appeared to have minimal cytotoxicity, its anticancer efficacy via this delivery method was low. This was possibly due to high tumor GSH content, which was increased after concurrent use of the GSH depletor paracetamol. If the anticancer effectiveness of 3BP is less than expected, the combination with paracetamol may be needed to sensitize cancer cells to 3BP-induced effects.

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来源期刊
癌症
癌症 ONCOLOGY-
CiteScore
3.47
自引率
0.00%
发文量
9010
审稿时长
12 weeks
期刊介绍: In July 2008, Landes Bioscience and Sun Yat-sen University Cancer Center began co-publishing the international, English-language version of AI ZHENG or the Chinese Journal of Cancer (CJC). CJC publishes original research, reviews, extra views, perspectives, supplements, and spotlights in all areas of cancer research. The primary criteria for publication in CJC are originality, outstanding scientific merit, and general interest. The Editorial Board is composed of members from around the world, who will strive to maintain the highest standards for excellence in order to generate a valuable resource for an international readership.
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