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基于金纳米粒子的 L-天冬酰胺酶反应器用于 L-谷氨酸盐水解的微芯片 CE-LIF 方法。

Microchip CE-LIF method for the hydrolysis of L-glutamine by using L-asparaginase enzyme reactor based on gold nanoparticle.

机构信息

Beijing National Laboratory for Molecular Sciences, Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences, Beijing, PR China.

出版信息

Electrophoresis. 2013 Feb;34(3):409-16. doi: 10.1002/elps.201200461. Epub 2013 Jan 3.

Abstract

L-Asparaginase (L-Asnase) can suppress the growth of malignant cells by rapid depletion of two essential amino acids, L-glutamine (L-Gln) and L-asparagine (L-Asn). To study the cytotoxic effect and the secondary complications of L-Asnase in the treatment of acute lymphoblastic leukemia, the development of a novel enzyme reactor of L-Asnase for the hydrolysis of L-Gln, employing the enzyme-gold nanoparticle conjugates in capillary, was reported in this work. First, a microchip CE (MCE)-LIF was established for the separation of L-amino acids (L-Gln and L-glutamic acid) and studying the hydrolysis of L-Gln by using L-Asnase enzyme reactor. Then, using L-Gln as target analyte, the enzyme kinetics of L-Asnase in free solution, enzyme-gold nanoparticle conjugates (E-GNP), and the enzyme-gold nanoparticle conjugates immobilized in capillary (E-GNP-C) were investigated in detail with the proposed MCE-LIF method. Moreover, for optimizing the enzymatic reaction efficiency, three important parameters, including the length of capillary, the enzyme concentration reacted with gold nanoparticle and the amount of L-Asnase immobilized on the gold nanoparticle, have been studied. Owing to the high specific activity, the E-GNP-C enzyme reactor exhibited the best performance for the hydrolysis of L-Gln.

摘要

L-天冬酰胺酶(L-Asnase)可以通过快速耗尽两种必需氨基酸 L-谷氨酰胺(L-Gln)和 L-天冬酰胺(L-Asn)来抑制恶性细胞的生长。为了研究 L-Asnase 在治疗急性淋巴细胞白血病中的细胞毒性作用和继发并发症,本工作报道了一种新型 L-Asnase 酶反应器,用于 L-Gln 的水解,采用酶-金纳米粒子缀合物在毛细管中。首先,建立了用于分离 L-氨基酸(L-Gln 和 L-谷氨酸)和研究 L-Asnase 酶反应器水解 L-Gln 的微芯片 CE(MCE)-LIF。然后,使用 L-Gln 作为目标分析物,用提出的 MCE-LIF 方法详细研究了游离溶液中的 L-Asnase、酶-金纳米粒子缀合物(E-GNP)和固定在毛细管中的酶-金纳米粒子缀合物(E-GNP-C)的酶动力学。此外,为了优化酶促反应效率,研究了三个重要参数,包括毛细管的长度、与金纳米粒子反应的酶浓度和固定在金纳米粒子上的 L-Asnase 量。由于具有高比活性,E-GNP-C 酶反应器在 L-Gln 的水解中表现出最佳性能。

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