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首页> 外文期刊>Nuclear Medicine and Biology >Comparing the intracellular fate of components within a noncovalent streptavidin nanoparticle with covalent conjugation
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Comparing the intracellular fate of components within a noncovalent streptavidin nanoparticle with covalent conjugation

机译:比较非共价链霉亲和素纳米颗粒中组分的细胞内命运与共价缀合

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Introduction: Auger radiotherapy requires adequate tumor delivery and high nuclear accumulation and retention. We hypothesize that the noncovalent nature of a streptavidin/biotin three-component nanoparticle possessing these qualities may be required for dissociation of the radiolabeled oligomer and its accumulation into the cell nucleus. Methods: As a test of our hypothesis, the intracellular fate of an antisense oligomer when incubated as the nanoparticle and when incubated while covalently conjugated to the antibody was compared. The three-component noncovalent nanoparticle consisted of streptavidin linking three biotinylated components: a Cy3-labeled anti-RIα antisense phosphorodiamidate morpholino (MORF) oligomer, a tat transfecting peptide and the anti-Her2 herceptin antibody. The covalent constructs included an anti-RIα antisense DNA conjugated to a radiolabeled herceptin and a fluorescent DNA conjugated to native herceptin. Fluorescence microscopy in SK-BR-3 (Her2+) cells was used to evaluate the fate of the fluorescent Cy5.5-DNA and Cy3-MORF, while the subcellular accumulation of the 111In-labeled herceptin and herceptin-DNA in both SK-BR-3 and MDA-MB-231 (Her2) cells was determined by isolating and counting the nuclear fractions. Results: Previously, we demonstrated that when incubated as the three-component nanoparticle consisting of herceptin and streptavidin and 99mTc-labeled antisense MORF, only the MORF accumulated in the nucleus of Her2+ cells. In this investigation, clear evidence was observed of nuclear accumulation of the antisense oligomer within the noncovalent nanoparticle as before, but when incubated as the covalent construct, by both fluorescence microscopy and nuclear counting, no evidence of nuclear accumulation was observed. Conclusion: The weaker noncovalent biotin-streptavidin bond may be essential for adequate delivery of the radiolabeled antisense oligomer to the nucleus of tumor cells.
机译:简介:俄歇放射疗法需要足够的肿瘤递送以及高的核蓄积和保留。我们假设,具有放射性标记的低聚物解离及其积累进入细胞核可能需要具有这些性质的链霉亲和素/生物素三组分纳米颗粒的非共价性质。方法:作为我们假设的检验,比较了反义寡聚物作为纳米颗粒孵育时以及与抗体共价偶联孵育时的细胞内命运。三组分非共价纳米颗粒由链霉亲和素连接三个生物素化的组分组成:Cy3标记的反RIα反义磷酸二酰胺吗啉代(MORF)低聚物,tat转染肽和抗Her2 Herceptin抗体。共价构建体包括与放射标记的赫赛汀缀合的抗-RIα反义DNA和与天然赫赛汀缀合的荧光DNA。 SK-BR-3(Her2 +)细胞中的荧光显微镜用于评估荧光Cy5.5-DNA和Cy3-MORF的命运,而111In标记的赫赛汀和赫赛汀DNA的亚细胞蓄积在SK-BR中通过分离和计数核级分确定-3和MDA-MB-231(Her2)细胞。结果:以前,我们证明了当将其作为由赫赛汀和链霉亲和素组成的三组分纳米颗粒以及99mTc标记的反义MORF进行孵育时,只有MORF会在Her2 +细胞核中积累。在该研究中,与以前一样,在非共价纳米粒子中观察到反义寡聚物的核蓄积的明确证据,但是当通过荧光显微镜和核计数作为共价构建体孵育时,没有观察到核蓄积的证据。结论:较弱的非共价生物素-链霉亲和素键可能对于将放射性标记的反义寡聚体充分递送至肿瘤细胞核至关重要。

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