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High-Risk Multiple Myeloma: Integrated Clinical and Omics Approach Dissects the Neoplastic Clone and the Tumor
Antonio Giovanni Solimando1,2, Matteo Claudio Da Vià3, Sebastiano Cicco4
1Department of Internal Medicine II, University Hospital, 97080 Würzburg, Germany. antonio.solimando@uniba.it.
Abstract:
Multiple myeloma (MM) is a genetically heterogeneous disease that includes a subgroup of 10-15% of patients facing dismal survival despite the most intensive treatment. Despite improvements in biological knowledge, MM is still an incurable neoplasia, and therapeutic options able to overcome the relapsing/refractory behavior represent an unmet clinical need. The aim of this review is to provide an integrated clinical and biological overview of high-risk MM, discussing novel therapeutic perspectives, targeting the neoplastic clone and its microenvironment. The dissection of the molecular determinants of the aggressive phenotypes and drug-resistance can foster a better tailored clinical management of the high-risk profile and therapy-refractoriness. Among the current clinical difficulties in MM, patients' management by manipulating the tumor niche represents a major challenge. The angiogenesis and the stromal infiltrate constitute pivotal mechanisms of a mutual collaboration between MM and the non-tumoral counterpart. Immuno-modulatory and anti-angiogenic therapy hold great efficacy, but variable and unpredictable responses in high-risk MM. The comprehensive understanding of the genetic heterogeneity and MM high-risk ecosystem enforce a systematic bench-to-bedside approach. Here, we provide a broad outlook of novel druggable targets. We also summarize the existing multi-omics-based risk profiling tools, in order to better select candidates for dual immune/vasculogenesis targeting.
Insights
High-risk multiple myeloma (MM) patients have poor survival. This review explores novel therapies targeting the tumor and its microenvironment to improve outcomes for aggressive, relapsed, or refractory MM.
Area of Science:
- Hematology
- Oncology
- Cancer Biology
Background:
- Multiple myeloma (MM) is a complex blood cancer with a subset of patients experiencing poor prognosis despite intensive treatments.
- Current therapeutic options are insufficient for managing relapsed or refractory MM, highlighting an unmet clinical need.
Purpose of the Study:
- To provide an integrated clinical and biological overview of high-risk MM.
- To discuss novel therapeutic strategies targeting both the neoplastic clone and its microenvironment.
- To explore the role of molecular determinants in aggressive phenotypes and drug resistance.
Main Methods:
- Review of current literature on high-risk MM.
- Analysis of molecular mechanisms driving aggressive MM phenotypes and drug resistance.
- Discussion of novel therapeutic targets and risk profiling tools.
Main Results:
- High-risk MM is characterized by genetic heterogeneity and a complex tumor microenvironment.
- Angiogenesis and stromal infiltration are key mechanisms in MM progression and drug resistance.
- Novel therapeutic targets and multi-omics risk profiling tools are emerging.
Conclusions:
- A comprehensive understanding of MM's genetic landscape and ecosystem is crucial for developing effective treatments.
- Targeting the tumor microenvironment and utilizing advanced risk stratification can improve patient management.
- Further research into novel druggable targets and combination therapies is warranted for refractory MM.
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