首页> 外文期刊>RSC Advances >Magnetic resonance imaging, gadolinium neutron capture therapy, and tumor cell detection using ultrasmall Gd2O3 nanoparticles coated with polyacrylic acid-rhodamine B as a multifunctional tumor theragnostic agent
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Magnetic resonance imaging, gadolinium neutron capture therapy, and tumor cell detection using ultrasmall Gd2O3 nanoparticles coated with polyacrylic acid-rhodamine B as a multifunctional tumor theragnostic agent

机译:核磁共振成像,g中子捕获疗法和使用涂有聚丙烯酸罗丹明B的超小型Gd2O3纳米颗粒作为多功能肿瘤治疗剂的肿瘤细胞检测

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Monodisperse and ultrasmall gadolinium oxide (Gd _(2) O _(3) ) nanoparticle colloids ( d _(avg) = 1.5 nm) (nanoparticle colloid = nanoparticle coated with hydrophilic ligand) were synthesized and their performance as a multifunctional tumor theragnostic agent was investigated. The aqueous ultrasmall nanoparticle colloidal suspension was stable and non-toxic owing to hydrophilic polyacrylic acid (PAA) coating that was partly conjugated with rhodamine B (Rho) for an additional functionalization (mole ratio of PAA?:?Rho = 5?:?1). First, the ultrasmall nanoparticle colloids performed well as a powerful T _(1) magnetic resonance imaging (MRI) contrast agent: they exhibited a very high longitudinal water proton relaxivity ( r _(1) ) of 22.6 s ~(?1) mM ~(?1) ( r _(2) / r _(1) = 1.3, r _(2) = transverse water proton relaxivity), which was ~6 times higher than those of commercial Gd-chelates, and high positive contrast enhancements in T _(1) MR images in a nude mouse after intravenous administration. Second, the ultrasmall nanoparticle colloids were applied to gadolinium neutron capture therapy (GdNCT) in vitro and exhibited a significant U87MG tumor cell death (28.1% net value) after thermal neutron beam irradiation, which was 1.75 times higher than that obtained using commercial Gadovist. Third, the ultrasmall nanoparticle colloids exhibited stronger fluorescent intensities in tumor cells than in normal cells owing to conjugated Rho, proving their pH-sensitive fluorescent tumor cell detection ability. All these results together demonstrate that ultrasmall Gd _(2) O _(3) nanoparticle colloids are the potential multifunctional tumor theragnostic agent.
机译:合成了单分散和超小氧化oxide(Gd _(2)O _(3))纳米粒子胶体(d _(avg)= 1.5 nm)(纳米粒子胶体=亲水性配体包覆的纳米粒子),并用作多功能肿瘤治疗动物用药被调查了。由于亲水性聚丙烯酸(PAA)涂层与罗丹明B(Rho)部分共轭以实现额外的功能化(PAA?:?Rho = 5?:?1的摩尔比),超小纳米粒子胶体水悬浮液稳定且无毒。 )。首先,超小型纳米胶体作为强力T _(1)磁共振成像(MRI)造影剂表现良好:它们表现出非常高的纵向水质子弛豫度(r _(1))为22.6 s〜(?1)mM。 〜(?1)(r _(2)/ r _(1)= 1.3,r _(2)=横向质子弛豫率),比市售Gd螯合物高约6倍,且正反差高静脉给药后裸鼠的T _(1)MR图像增强。其次,将超小纳米粒子胶体应用于体外g中子俘获疗法(GdNCT),并在热中子束照射后表现出显着的U87MG肿瘤细胞死亡(净值28.1%),比使用商业Gadovist的高1.75倍。第三,由于结合了Rho,超小纳米粒子胶体在肿瘤细胞中表现出比正常细胞更强的荧光强度,证明了其对pH敏感的荧光肿瘤细胞的检测能力。所有这些结果共同证明,超小Gd _(2)O _(3)纳米胶体是潜在的多功能肿瘤疗法。

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