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苯氧芳酸类似物作为新型放射增敏剂的设计、合成与生物学评价。

Phenoxyaromatic Acid Analogues as Novel Radiotherapy Sensitizers: Design, Synthesis and Biological Evaluation.

机构信息

National Engineering Research Center for the Emergency Drug, Beijing Institute of Pharmacology and Toxicology, Beijing 100850, China.

State Key Laboratory of Toxicology and Medical Countermeasures, Beijing Institute of Pharmacology and Toxicology, Beijing 100850, China.

出版信息

Molecules. 2022 Apr 9;27(8):2428. doi: 10.3390/molecules27082428.

Abstract

Radiotherapy is a vital approach for brain tumor treatment. The standard treatment for glioblastoma (GB) is maximal surgical resection combined with radiotherapy and chemotherapy. However, the non-sensitivity of tumor cells in the hypoxic area of solid tumors to radiotherapy may cause radioresistance. Therefore, radiotherapy sensitizers that increase the oxygen concentration within the tumor are promising for increasing the effectiveness of radiation. Inspired by hemoglobin allosteric oxygen release regulators, a series of novel phenoxyacetic acid analogues were designed and synthesized. A numerical method was applied to determine the activity and safety of newly synthesized compounds. In vitro studies on the evaluation of red blood cells revealed that compounds (∆P = 45.50 mmHg) and (∆P = 44.38 mmHg) improve the oxygen-releasing property effectively compared to positive control efaproxiral (∆P = 36.40 mmHg). Preliminary safety evaluation revealed that exhibited no cytotoxicity towards HEK293 and U87MG cells, while was cytotoxic toward both cells with no selectivity. An in vivo activity assay confirmed that exhibited a radiosensitization effect on orthotopically transplanted GB in mouse brains. Moreover, a pharmacokinetic study in rats showed that was orally available.

摘要

放射疗法是治疗脑肿瘤的重要方法。胶质母细胞瘤(GB)的标准治疗方法是最大限度地手术切除,结合放疗和化疗。然而,实体瘤缺氧区的肿瘤细胞对放疗的不敏感性可能导致放射抗性。因此,增加肿瘤内氧浓度的放疗增敏剂有望提高辐射的有效性。受血红蛋白变构氧释放调节剂的启发,设计并合成了一系列新型苯氧乙酸类似物。应用数值方法来确定新合成化合物的活性和安全性。体外研究评估红细胞发现,与阳性对照 efaproxiral(∆P = 36.40 mmHg)相比,化合物 (∆P = 45.50 mmHg)和 (∆P = 44.38 mmHg)可有效改善氧释放性能。初步安全性评估显示,化合物 对 HEK293 和 U87MG 细胞没有细胞毒性,而化合物 对两种细胞均具有细胞毒性而没有选择性。体内活性测定证实,化合物 在小鼠脑内原位移植的 GB 中具有放射增敏作用。此外,大鼠的药代动力学研究表明,化合物 可口服。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6723/9024523/80fbefd43edc/molecules-27-02428-g001.jpg

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