通过针对肿瘤及其微环境的靶向治疗提高常见癌症疗法的疗效

Daniel Cecchi, Nolan Jackson, Wayne Beckham, D. Chithrani
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摘要

癌症是指体内异质细胞不受控制地增殖,出现异常和突变,导致对多种治疗方式产生抗药性。如果不及时治疗,这些异常增生的细胞会给患者带来有害甚至致命的并发症。放射治疗约占癌症治疗流程的 50%,但由于放射剂量不可避免地会沉积到周围的健康组织,因此复发率和正常组织毒性都很高。化疗是另一种正常组织毒性过大的治疗方式,严重影响患者的生活质量。为了提高放疗和化疗的疗效,人们提出了多种联合治疗方式,包括针对肿瘤微环境中抑制肿瘤扩散和抗治疗途径的成分,增加肿瘤内的氧含量以恢复恶性肿瘤的缺氧特性,利用金属纳米粒子改善局部剂量沉积,以及将细胞周期限制在放射敏感期内。肿瘤微环境在很大程度上抑制了肿瘤本身对纳米粒子的捕获,并提高了对各种癌症疗法的抗药性。在这篇综述中,我们将讨论有关分子和纳米粒子疗法的用药、药代动力学和作用机制对比的现有文献。该综述旨在展示靶向、抑制或绕过肿瘤微环境的共轭纳米材料和放射治疗领域的进展,以促进可改善治疗效果和毒性率的进一步研究。
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Improving the Efficacy of Common Cancer Treatments via Targeted Therapeutics towards the Tumour and Its Microenvironment
Cancer is defined as the uncontrolled proliferation of heterogeneous cell cultures in the body that develop abnormalities and mutations, leading to their resistance to many forms of treatment. Left untreated, these abnormal cell growths can lead to detrimental and even fatal complications for patients. Radiation therapy is involved in around 50% of cancer treatment workflows; however, it presents significant recurrence rates and normal tissue toxicity, given the inevitable deposition of the dose to the surrounding healthy tissue. Chemotherapy is another treatment modality with excessive normal tissue toxicity that significantly affects patients’ quality of life. To improve the therapeutic efficacy of radiotherapy and chemotherapy, multiple conjunctive modalities have been proposed, which include the targeting of components of the tumour microenvironment inhibiting tumour spread and anti-therapeutic pathways, increasing the oxygen content within the tumour to revert the hypoxic nature of the malignancy, improving the local dose deposition with metal nanoparticles, and the restriction of the cell cycle within radiosensitive phases. The tumour microenvironment is largely responsible for inhibiting nanoparticle capture within the tumour itself and improving resistance to various forms of cancer therapy. In this review, we discuss the current literature surrounding the administration of molecular and nanoparticle therapeutics, their pharmacokinetics, and contrasting mechanisms of action. The review aims to demonstrate the advancements in the field of conjugated nanomaterials and radiotherapeutics targeting, inhibiting, or bypassing the tumour microenvironment to promote further research that can improve treatment outcomes and toxicity rates.
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