Modern approaches to target tumor heterogeneity: Integrating technology and treatment.

IF 3.1 4区 医学 Q3 ONCOLOGY
Tumori Pub Date : 2026-05-06 DOI:10.1177/03008916261437964
Amit Kumar, Nisha Manav, Mayank Singh, Abhishek Shankar, Manish Kumar, Chandra Prakash Prasad
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引用次数: 0

Abstract

Intratumor heterogeneity (ITH) describes the diversity of cancer cells within a single tumor. This heterogeneity includes differences in the cells' phenotypes, genotypes, and functions. As a result, cancer cells can vary in their morphology, gene expression and protein profiles, metabolic behavior, and their ability to proliferate and invade surrounding tissues. As a hallmark of cancer, ITH presents major obstacles to the effective treatment of solid tumors by contributing to therapeutic resistance, increased metastatic potential, and higher relapse rates. ITH arises from multiple factors, including genetic instability, epigenetic modifications, selective pressures from the tumor microenvironment, and therapy-induced selection. Individually or collectively, these factors alter the transcriptomic and proteomic landscapes of cancer cells, driving heterogeneity and enabling them to adapt, survive, and evolve under hostile growth conditions. Despite its clinical relevance, the holistic understanding of ITH is still a challenge. Various biophysical techniques are being employed to gain a deeper insight of ITH. Importantly, the intricate nature of ITH implies that existing therapies primarily eliminate dominant clones, unintentionally permitting minor subclones to survive and contribute to disease relapse and therapeutic resistance. Thus, developing strategies that combine adaptive multi-agent therapies with functional analysis of subclonal dynamics is anticipated to drive substantial improvements in precision oncology, paving the way toward personalized and durable cancer care. The present study discusses ITH in-depth, describes the genetic, epigenetic, microenvironmental, and therapy-induced factors that contribute to its definition, assesses current analytical techniques, and considers ways to mitigate its impact on cancer treatment.

靶向肿瘤异质性的现代方法:整合技术与治疗。
肿瘤内异质性(ITH)描述单个肿瘤内癌细胞的多样性。这种异质性包括细胞表型、基因型和功能的差异。因此,癌细胞在形态、基因表达和蛋白质谱、代谢行为以及增殖和侵袭周围组织的能力方面可以发生变化。作为癌症的标志,ITH是实体瘤有效治疗的主要障碍,它会导致治疗抵抗、转移潜力增加和复发率升高。ITH由多种因素引起,包括遗传不稳定、表观遗传修饰、肿瘤微环境的选择压力和治疗诱导的选择。这些因素单独或共同地改变了癌细胞的转录组学和蛋白质组学景观,推动了异质性,使它们能够在恶劣的生长条件下适应、生存和进化。尽管具有临床意义,但对ITH的整体理解仍然是一个挑战。正在采用各种生物物理技术来更深入地了解ITH。重要的是,ITH的复杂性质意味着现有的治疗主要是消除优势克隆,无意中允许次要亚克隆存活,并导致疾病复发和治疗耐药性。因此,将适应性多药物治疗与亚克隆动力学功能分析相结合的开发策略有望推动精确肿瘤学的实质性改进,为个性化和持久的癌症治疗铺平道路。本研究深入讨论了ITH,描述了导致其定义的遗传、表观遗传、微环境和治疗诱导因素,评估了当前的分析技术,并考虑了减轻其对癌症治疗影响的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Tumori
Tumori 医学-肿瘤学
CiteScore
3.50
自引率
0.00%
发文量
58
审稿时长
6 months
期刊介绍: Tumori Journal covers all aspects of cancer science and clinical practice with a strong focus on prevention, translational medicine and clinically relevant reports. We invite the publication of randomized trials and reports on large, consecutive patient series that investigate the real impact of new techniques, drugs and devices inday-to-day clinical practice.
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