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Echographic imaging of tumoral cells through novel nanosystems for image diagnosis

机译:通过新型纳米系统对肿瘤细胞进行超声成像以进行图像诊断

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摘要

Since the recognition of disease molecular basis, it has become clear that the keystone moments of medical practice, namely early diagnosis, appropriate therapeutic treatment and patient follow-up, must be approached at a molecular level. These objectives will be in the near future more effectively achievable thanks to the impressive developments in nanotechnologies and their applications to the biomedical field, starting-up the nanomedicine era. The continuous advances in the development of biocompatible smart nanomaterials, in particular, will be crucial in several aspects of medicine. In fact, the possibility of manufacturing nanoparticle contrast agents that can be selectively targeted to specific pathological cells has extended molecular imaging applications to non-ionizing techniques and, at the same time, has made reachable the perspective of combining highly accurate diagnoses and personalized therapies in a single theranostic intervention. Main developing applications of nanosized theranostic agents include targeted molecular imaging, controlled drug release, therapeutic monitoring, guidance of radiation-based treatments and surgical interventions. Here we will review the most recent findings in nanoparticles contrast agents and their applications in the field of cancer molecular imaging employing non-ionizing techniques and disease-specific contrast agents, with special focus on recent findings on those nanomaterials particularly promising for ultrasound molecular imaging and simultaneous treatment of cancer.
机译:自从认识到疾病的分子基础以来,就变得很清楚,必须从分子水平探讨医学实践的关键时刻,即早期诊断,适当的治疗和患者的随访。这些目标将在不久的将来更有效地实现,这要归功于纳米技术的惊人发展及其在生物医学领域的应用,从而开启了纳米医学的时代。特别是生物相容性智能纳米材料的不断发展,在医学的几个方面将至关重要。实际上,制造可选择性靶向特定病理细胞的纳米粒子造影剂的可能性已将分子成像应用扩展到非电离技术,同时,使将高精度诊断和个性化疗法相结合的观点成为可能。单一的治疗疗法干预。纳米治疗剂的主要开发应用包括靶向分子成像,受控药物释放,治疗监测,基于放射的治疗指导和外科手术干预。在这里,我们将回顾纳米粒子造影剂的最新发现及其在使用非电离技术和疾病特异性造影剂的癌症分子成像领域中的应用,特别关注那些对纳米分子造影剂特别有希望的纳米材料的最新发现。同时治疗癌症。

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