Feasibility of using an isolated intestinal segment as an artificial organ for enzyme replacement therapy.

D Shelt, D Walton, P Sato
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引用次数: 1

Abstract

Guinea pigs fed an ascorbic acid-deficient diet develop scurvy because of the absence of the enzyme L-gulonolactone oxidase. In theory if this enzyme is provided and its substrate L-gulonolactone is present at adequate concentrations ascorbic acid will be synthesized and the development of scurvy prevented. Using this model we tested whether a viable segment of intestine could be used to contain the administered enzyme and act as an artificial organ for the production of ascorbic acid. A surgical procedure was developed to prepare an externalized pouch of intestine with its circulation left intact. When enzyme is inserted in this intestinal bag it is not toxic and not antigenic in some animals, whereas, enzyme injected intraperitoneally is clearly antigenic. Synthesis of ascorbic acid by this artificial organ could not, however, be detected by elevation of plasma concentrations of the vitamin.

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用分离肠段作为人工器官进行酶替代治疗的可行性。
喂食抗坏血酸缺乏饮食的豚鼠由于缺乏l -古洛酮内酯氧化酶而患上坏血病。理论上,如果提供这种酶,并且它的底物l -谷洛内酯以足够的浓度存在,抗坏血酸就会合成,坏血病就会得到预防。利用这个模型,我们测试了一段有活力的肠道是否可以用来含有给药酶,并作为人工器官来生产抗坏血酸。一种外科手术程序被开发,以准备一个外化的肠袋,其循环保持完整。当酶被插入肠袋时,它在某些动物中是无毒的,也不具有抗原性,然而,腹腔注射的酶显然具有抗原性。然而,这种人造器官合成的抗坏血酸不能通过血浆维生素浓度的升高来检测。
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