精准肿瘤学:药物传递和成像的进展。

Suraj Kumar, Sathvik Belagodu Sridhar, Rishabha Malviya, Bhupendra G Prajapati
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引用次数: 0

摘要

开发精确可靠的癌症治疗方法一直是肿瘤学的长期目标。传统疗法往往会影响健康组织,导致严重的副作用。为了克服这些挑战,研究人员正在探索将先进的药物输送系统与最先进的成像技术相结合的新方法,以更有效地靶向肿瘤。本研究旨在研究一种集成智能药物输送系统与实时成像模式的新方法。目标是增强治疗药物对癌细胞的靶向递送,最大限度地减少对健康组织的损害,同时提高癌症治疗的整体疗效。智能药物输送系统旨在将药物直接输送到肿瘤部位,提高治疗精度。当与MRI、CT、PET和分子成像等实时成像工具结合使用时,这些系统可以提供肿瘤位置、大小和治疗反应的实时数据。这允许在治疗中立即调整,确保最佳的药物输送和减少副作用。然而,这种方法的实施也面临着挑战,包括需要严格的安全协议和遵守监管标准。将先进的药物输送系统与先进的成像技术相结合,为癌症治疗提供了一种很有前途的方法。通过实现更精确的治疗目标和减少不良反应,该策略有可能显著改善患者与癌症作斗争的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Precision Oncology: Advances in Drug Delivery and Imaging.

The development of precise and reliable cancer treatments has been a long-standing goal in oncology. Conventional therapies often affect healthy tissues, leading to significant side effects. To overcome these challenges, researchers are exploring new methodologies that combine advanced drug delivery systems with state-of-the-art imaging technologies to target tumors more effectively. This study aims to investigate a novel approach that integrates smart drug delivery systems with real-time imaging modalities. The goal is to enhance the targeted delivery of therapeutic agents to cancer cells, minimizing damage to healthy tissues while improving the overall efficacy of cancer treatments. Smart drug delivery systems are designed to transport medications directly to tumor sites, enhancing treatment precision. When combined with real-time imaging tools such as MRI, CT, PET, and molecular imaging, these systems offer real-time data on the tumor's location, size, and response to treatment. This allows for immediate adjustments in therapy, ensuring optimal drug delivery and reducing side effects. However, the implementation of this approach also faces challenges, including the need for stringent safety protocols and adherence to regulatory standards. The integration of advanced drug delivery systems with cutting-edge imaging technologies presents a promising approach to cancer therapy. By enabling more precise treatment targeting and reducing adverse effects, this strategy has the potential to significantly improve patient outcomes in the fight against cancer.

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