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癌症生物能量学与肿瘤微环境——通过纳米系统增强化疗效果并靶向耐药微环境

Cancer Bioenergetics and Tumor Microenvironments-Enhancing Chemotherapeutics and Targeting Resistant Niches through Nanosystems.

作者信息

Farhana Aisha, Alsrhani Abdullah, Khan Yusuf Saleem, Rasheed Zafar

机构信息

Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, Jouf University, Sakaka 72388, Aljouf, Saudi Arabia.

Department of Anatomy, College of Medicine, Jouf University, Sakaka 72388, Aljouf, Saudi Arabia.

出版信息

Cancers (Basel). 2023 Jul 28;15(15):3836. doi: 10.3390/cancers15153836.

Abstract

Cancer is an impending bottleneck in the advanced scientific workflow to achieve diagnostic, prognostic, and therapeutic success. Most cancers are refractory to conventional diagnostic and chemotherapeutics due to their limited targetability, specificity, solubility, and side effects. The inherent ability of each cancer to evolve through various genetic and epigenetic transformations and metabolic reprogramming underlies therapeutic limitations. Though tumor microenvironments (TMEs) are quite well understood in some cancers, each microenvironment differs from the other in internal perturbations and metabolic skew thereby impeding the development of appropriate diagnostics, drugs, vaccines, and therapies. Cancer associated bioenergetics modulations regulate TME, angiogenesis, immune evasion, generation of resistant niches and tumor progression, and a thorough understanding is crucial to the development of metabolic therapies. However, this remains a missing element in cancer theranostics, necessitating the development of modalities that can be adapted for targetability, diagnostics and therapeutics. In this challenging scenario, nanomaterials are modular platforms for understanding TME and achieving successful theranostics. Several nanoscale particles have been successfully researched in animal models, quite a few have reached clinical trials, and some have achieved clinical success. Nanoparticles exhibit an intrinsic capability to interact with diverse biomolecules and modulate their functions. Furthermore, nanoparticles can be functionalized with receptors, modulators, and drugs to facilitate specific targeting with reduced toxicity. This review discusses the current understanding of different theranostic nanosystems, their synthesis, functionalization, and targetability for therapeutic modulation of bioenergetics, and metabolic reprogramming of the cancer microenvironment. We highlight the potential of nanosystems for enhanced chemotherapeutic success emphasizing the questions that remain unanswered.

摘要

癌症是先进科学工作流程中实现诊断、预后和治疗成功的一个迫在眉睫的瓶颈。大多数癌症对传统诊断方法和化疗药物具有耐药性,原因在于其靶向性、特异性、溶解性有限以及存在副作用。每种癌症通过各种基因和表观遗传转变以及代谢重编程进行演变的内在能力是治疗局限性的根本原因。尽管在某些癌症中对肿瘤微环境(TME)已有相当深入的了解,但每个微环境在内部扰动和代谢偏差方面都彼此不同,从而阻碍了合适的诊断方法、药物、疫苗和治疗方法的开发。癌症相关的生物能量调节作用调控着TME、血管生成、免疫逃逸、耐药微环境的形成以及肿瘤进展,透彻理解这一点对于代谢疗法的开发至关重要。然而,这在癌症诊疗中仍然是一个缺失的环节,因此需要开发适用于靶向性、诊断和治疗的方法。在这种具有挑战性的情况下,纳米材料是理解TME并实现成功诊疗的模块化平台。几种纳米级颗粒已在动物模型中成功开展研究,不少已进入临床试验阶段,还有一些已取得临床成功。纳米颗粒具有与多种生物分子相互作用并调节其功能的内在能力。此外,纳米颗粒可以用受体、调节剂和药物进行功能化修饰,以促进特异性靶向并降低毒性。本综述讨论了目前对不同诊疗纳米系统的理解、它们的合成、功能化修饰以及对生物能量进行治疗性调节和癌症微环境代谢重编程的靶向性。我们强调了纳米系统在提高化疗成功率方面的潜力,并着重指出了仍未得到解答的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d13/10416858/901673f29e88/cancers-15-03836-g001.jpg

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