Apoptosis Deregulation and the Development of Cancer Multi-Drug Resistance
Дерегуляция апоптоза и развитие множественной лекарственной устойчивости при раке
2021-08-28
SCID: 54.1/hsjxxqrs
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Bcl-2 superfamilyPI3K/AKT pathwayapoptosis deregulationepigenetic modificationsmulti-drug resistance
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Abstract (AI)
The ability of tumor cells to evade apoptosis is established as one of the hallmarks of cancer. The deregulation of apoptotic pathways conveys a survival advantage enabling cancer cells to develop multi-drug resistance (MDR), a complex tumor phenotype referring to concurrent resistance toward agents with different function and/or structure. Proteins implicated in the intrinsic pathway of apoptosis, including the Bcl-2 superfamily and Inhibitors of Apoptosis (IAP) family members, as well as their regulator, tumor suppressor p53, have been implicated in the development of MDR in many cancer types. The PI3K/AKT pathway is pivotal in promoting survival and proliferation and is often overactive in MDR tumors. In addition, the tumor microenvironment, particularly factors secreted by cancer-associated fibroblasts, can inhibit apoptosis in cancer cells and reduce the effectiveness of different anti-cancer drugs. In this review, we describe the main alterations that occur in apoptosis-and related pathways to promote MDR. We also summarize the main therapeutic approaches against resistant tumors, including agents targeting Bcl-2 family members, small molecule inhibitors against IAPs or AKT and agents of natural origin that may be used as monotherapy or in combination with conventional therapeutics. Finally, we highlight the potential of therapeutic exploitation of epigenetic modifications to reverse the MDR phenotype.
Key Findings
1
Alterations in intrinsic apoptosis regulators, including Bcl-2 and IAP family proteins and tumor suppressor p53, contribute to multidrug resistance across multiple cancer types.
2
Deregulation of apoptotic pathways gives tumor cells a survival advantage that promotes concurrent resistance to anticancer agents with different functions or structures.
3
The frequently overactive PI3K/AKT survival and proliferation pathway is implicated in multidrug-resistant tumors.
4
Therapeutic strategies reviewed include targeting Bcl-2 proteins, inhibiting IAPs or AKT, using natural agents with conventional therapies, and exploiting epigenetic modifications to reverse multidrug resistance.
5
Tumor microenvironment signals, particularly factors secreted by cancer-associated fibroblasts, can suppress cancer-cell apoptosis and reduce the efficacy of diverse anticancer drugs.
Research Object
Cancer cells and tumors exhibiting multi-drug resistance
Research Subject
Deregulation of apoptosis-related pathways and tumor-microenvironment mechanisms that promote multi-drug resistance, together with therapeutic strategies to reverse the resistant phenotype
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2021-08-28
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