首页> 美国卫生研究院文献>British Journal of Cancer >Molecular design of hybrid tumour necrosis factor alpha with polyethylene glycol increases its anti-tumour potency.
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Molecular design of hybrid tumour necrosis factor alpha with polyethylene glycol increases its anti-tumour potency.

机译:杂化肿瘤坏死因子α与聚乙二醇的分子设计提高了其抗肿瘤潜能。

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摘要

This study was conducted to increase the anti-tumour potency and reduce the toxic side-effects of tumour necrosis factor alpha (TNF-alpha). Natural human TNF-alpha was chemically conjugated with monomethoxy polyethylene glycol (PEG) using succinimidyl coupling of lysine amino groups of TNF-alpha. The number-average molecular weight of PEG-modified TNF-alpha (PEG-TNF-alpha) increased with an increase in the reaction time and the initial molar ratio of PEG relative to TNF-alpha. The resulting modified TNF-alpha was separated into fractions of various molecular weights. The specific activity of separated PEG-TNF-alpha s relative to that of native TNF-alpha gradually decreased with an increase in the degree of PEG modification, but the plasma half-life was drastically increased with the increase in molecular weight of modified TNF-alpha. PEG-TNF-alpha s, in which 29% and 56% of lysine residues were coupled to PEG, had anti-tumour activity approximately 4 and 100 times greater than unmodified TNF-alpha in the murine Meth-A fibrosarcoma model. Extensive PEG modification did not increase its in vivo activity. A high dose of unmodified TNF-alpha induced toxic side-effects, but these were not observed with the modified TNF-alpha s. Optimal PEG modification of TNF-alpha markedly increased its bioavailability and may facilitate its potential anti-tumour therapeutic use.
机译:进行这项研究以增加抗肿瘤效力并减少肿瘤坏死因子α(TNF-alpha)的毒性副作用。使用TNF-α赖氨酸氨基的琥珀酰亚胺基偶联将天然人TNF-α与单甲氧基聚乙二醇(PEG)化学偶联。 PEG修饰的TNF-α(PEG-TNF-α)的数均分子量随着反应时间的增加和PEG相对于TNF-α的初始摩尔比的增加而增加。将得到的修饰的TNF-α分离成各种分子量的级分。分离的PEG-TNF-α的比活性相对于天然TNF-α的比活性随着PEG修饰程度的增加而逐渐降低,但血浆半衰期随着修饰的TNF-α分子量的增加而急剧增加。 α。在鼠类Meth-A纤维肉瘤模型中,其中29%和56%的赖氨酸残基与PEG偶联的PEG-TNF-α具有比未修饰的TNF-α约高4到100倍的抗肿瘤活性。广泛的PEG修饰并没有增加其体内活性。大剂量未修饰的TNF-α会引起毒性副作用,但修饰的TNF-α并没有观察到这些副作用。 TNF-α的最佳PEG修饰可显着提高其生物利用度,并可能促进其潜在的抗肿瘤治疗用途。

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