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Exploring Novel Molecular Targets for the Treatment of High-Grade Astrocytomas Using Peptide Therapeutics: An Overview

机译:使用肽治疗方法探索用于治疗高级星形细胞瘤的新分子靶标:概述

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摘要

Diffuse astrocytomas are the most aggressive and lethal glial tumors of the central nervous system (CNS). Their high cellular heterogeneity and the presence of specific barriers, i.e., blood−brain barrier (BBB) and tumor barrier, make these cancers poorly responsive to all kinds of currently available therapies. Standard therapeutic approaches developed to prevent astrocytoma progression, such as chemotherapy and radiotherapy, do not improve the average survival of patients. However, the recent identification of key genetic alterations and molecular signatures specific for astrocytomas has allowed the advent of novel targeted therapies, potentially more efficient and characterized by fewer side effects. Among others, peptides have emerged as promising therapeutic agents, due to their numerous advantages when compared to standard chemotherapeutics. They can be employed as (i) pharmacologically active agents, which promote the reduction of tumor growth; or (ii) carriers, either to facilitate the translocation of drugs through brain, tumor, and cellular barriers, or to target tumor-specific receptors. Since several pathways are normally altered in malignant gliomas, better outcomes may result from combining multi-target strategies rather than targeting a single effector. In the last years, several preclinical studies with different types of peptides moved in this direction, providing promising results in murine models of disease and opening new perspectives for peptide applications in the treatment of high-grade brain tumors.
机译:弥漫性星形细胞瘤是中枢神经系统(CNS)的最积极的和致命的神经胶质肿瘤。他们的高细胞的异质性和具体障碍的存在,即血脑屏障(BBB)和肿瘤屏障,使这些癌症响应各种现有的治疗方法的不当。标准的治疗方法开发防止星形细胞瘤的进展,如化疗和放疗,不改善患者的平均存活。然而,最近的关键遗传改变和分子特征特异于星形细胞瘤的识别允许鉴定新的靶向疗法的出现,可能更有效并且其特征在于副作用较少。其中,肽已成为比标准化疗时有前途的治疗剂,由于其众多的优点。它们可以用作(I)的药理学活性剂,其促进肿瘤生长的减少;或(ii)的载体,无论是通过脑,肿瘤和细胞障碍有利于药物的转运,或到靶肿瘤特异性受体。由于多种途径在恶性胶质瘤通常改变,更好的结果可能是由于合并多目标的战略,而不是针对单个效应。在过去的几年中,不同类型的肽的几个临床前研究在这个方向移动,在小鼠模型的疾病提供了可喜的成果及中高档脑肿瘤的治疗肽的应用开辟了新的前景。

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