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A Three-Dimensional Spheroid Model to Investigate the Tumor-Stromal Interaction in Hepatocellular Carcinoma
Published on: September 30, 2021
Mechanisms of drug resistance in HCC
Alexandra D Ladd1, Sergio Duarte1, Ilyas Sahin2
1Department of Surgery, College of Medicine, University of Florida, Gainesville, Florida, USA.
Abstract:
HCC comprises ∼80% of primary liver cancer. HCC is the only major cancer for which death rates have not improved over the last 10 years. Most patients are diagnosed with advanced disease when surgical and locoregional treatments are not feasible or effective. Sorafenib, a multikinase inhibitor targeting cell growth and angiogenesis, was approved for advanced unresectable HCC in 2007. Since then, other multikinase inhibitors have been approved. Lenvatinib was found to be noninferior to sorafenib as a first-line agent. Regorafenib, cabozantinib, and ramucirumab were shown to prolong survival as second-line agents. Advances in immunotherapy for HCC have also added hope for patients, but their efficacy remains limited. A large proportion of patients with advanced HCC gain no long-term benefit from systemic therapy due to primary and acquired drug resistance, which, combined with its rising incidence, keeps HCC a highly fatal disease. This review summarizes mechanisms of primary and acquired resistance to therapy and includes methods for bypassing resistance. It addresses recent advancements in immunotherapy, provides new perspectives on the linkage between drug resistance and molecular etiology of HCC, and evaluates the role of the microbiome in drug resistance. It also discusses alterations in signaling pathways, dysregulation of apoptosis, modulations in the tumor microenvironment, involvement of cancer stem cells, changes in drug metabolism/transport, tumor hypoxia, DNA repair, and the role of microRNAs in drug resistance. Understanding the interplay among these factors will provide guidance on the development of new therapeutic strategies capable of improving patient outcomes.
Insights
Hepatocellular carcinoma (HCC) remains a deadly cancer with limited treatment options due to drug resistance. This review explores resistance mechanisms and strategies to improve systemic therapy for advanced HCC patients.
Area of Science:
- Hepatology and oncology
- Cancer biology
- Translational medicine
Background:
- Hepatocellular carcinoma (HCC) is the most common primary liver cancer and the only major cancer with stagnant mortality rates over the past decade.
- Advanced HCC diagnosis often precludes curative surgical or locoregional treatments, necessitating systemic therapies.
- Current systemic therapies, including multikinase inhibitors and immunotherapies, offer limited long-term benefits due to widespread drug resistance.
Approach:
- This review synthesizes current knowledge on primary and acquired drug resistance mechanisms in HCC.
- It examines recent advancements in HCC immunotherapy and their limitations.
- The review explores the molecular etiology, tumor microenvironment, and microbiome's role in resistance.
Key Points:
- Drug resistance, encompassing primary and acquired forms, significantly limits the efficacy of systemic therapies for advanced HCC.
- Multiple factors contribute to resistance, including alterations in signaling pathways, apoptosis dysregulation, cancer stem cells, drug metabolism, tumor hypoxia, and microRNAs.
- Understanding the complex interplay of these factors is crucial for developing novel therapeutic strategies.
Conclusions:
- Developing new therapeutic strategies requires a comprehensive understanding of the multifaceted mechanisms underlying drug resistance in HCC.
- Targeting resistance pathways and exploring novel therapeutic combinations holds promise for improving outcomes in advanced HCC.
- Further research into the molecular drivers and microenvironmental influences on resistance is essential for advancing HCC treatment.
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