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Concise review: Nanoparticles and cellular carriers-allies in cancer imaging and cellular gene therapy?

机译:简要评论:纳米颗粒和细胞载体-可以用于癌症成像和细胞基因治疗吗?

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摘要

Ineffective treatment and poor patient management continue to plague the arena of clinical oncology. The crucial issues include inadequate treatment efficacy due to ineffective targeting of cancer deposits, systemic toxicities, suboptimal cancer detection and disease monitoring. This has led to the quest for clinically relevant, innovative multifaceted solutions such as development of targeted and traceable therapies. Mesenchymal stem cells (MSCs) have the intrinsic ability to home (a) "Trojan Horses" to deliver gene therapy directly into the tumors and (b) carriers of nanoparticles to allow cell tracking and simultaneous cancer detection. The camouflage of MSC carriers can potentially tackle the issues of safety, vector, and/or transgene immunogenicity as well as nanoparticle clearance and toxicity. The versatility of the nanotechnology platform could allow cellular tracking using single or multimodal imaging modalities. Toward that end, noninvasive magnetic resonance imaging (MRI) is fast becoming a clinical favorite, though there is scope for improvement in its accuracy and sensitivity. In that, use of superparamagnetic iron-oxide nanoparticles (SPION) as MRI contrast enhancers may be the best option for tracking therapeutic MSC. The prospects and consequences of synergistic approaches using MSC carriers, gene therapy, and SPION in developing cancer diagnostics and therapeutics are discussed.
机译:无效的治疗和不良的患者管理继续困扰着临床肿瘤学领域。关键问题包括由于无法有效地靶向癌症沉积物而导致的治疗效果不足,全身毒性,次优的癌症检测和疾病监测。这导致了对临床相关,创新性多方面解决方案的需求,例如开发靶向和可追踪疗法。间充质干细胞(MSC)具有内在的能力(a)“特洛伊木马”将基因治疗直接传递到肿瘤中,以及(b)纳米颗粒载体以允许细胞追踪和同时进行癌症检测。 MSC载体的伪装可以潜在地解决安全性,载体和/或转基因免疫原性以及纳米颗粒清除和毒性的问题。纳米技术平台的多功能性可以允许使用单模态或多模态成像模式进行细胞跟踪。为此,尽管有提高其准确性和灵敏度的空间,但无创磁共振成像(MRI)迅速成为临床首选。因此,使用超顺磁性氧化铁纳米粒子(SPION)作为MRI造影剂可能是追踪治疗性MSC的最佳选择。讨论了使用MSC载体,基因治疗和SPION协同方法开发癌症诊断和治疗方法的前景和结果。

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