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Divergent Signaling Pathways May Lead to Convergence in Cancer Therapy - A Review
Arem Qayum1,2, Syed Mohmad Shah3, Shashank K Singh4,2
1Cancer Pharmacology Division, Indian Institute of Integrative Medicine, CSIR, Jammu, India, aremqayoom03@gmail.com.
Abstract:
Cancer is a chaos of uncontrolled cell proliferation that has consistently invented new circuitry programs to operate inside the cell machinery. Globally, cancer statistics account for 65% of mortality worldwide, mainly due to the adoption of lifestyle behaviours. In 2020, FDA approved 40 new drugs, out of which 16 (40%) were approved as cancer drugs. Overall, the risk of dying from cancer decreased, but further reductions in cancer death rates can be accelerated by applying existing cancer control knowledge across all the population segments, emphasising those in the lowest socio-economic and other disadvantaged population. Various therapeutic regimes, including low-molecular-weight inhibitors, targeting oncogenic signaling pathways are under development. However, the pitfall of targeted therapies is the quick emergence of acquired drug resistance encumbered with toxic side effects. Several FDA acclaimed therapeutic legacies or biosimilars earmarked signaling pathways of rare diseases (cystic fibrosis, erythropoietic protoporphyria, neuromyelitis optica spectrum disorder, tenosynovial giant cell tumor, sickle cell disease, systemic sclerosis-associated interstitial lung disease, muscular dystrophy), neurological and psychiatric disorders, infectious diseases, heart, lung, circulatory, endocrine diseases, autoimmune conditions, cancers and blood disorders. When cancer progresses, these signals develop specific characteristics that can be targeted for anti-cancer therapy. The designer inhibitors have emerged as novel pharmaceutical interventions that aim to block the pathways in an effort to reverse the abnormal phenotype of the cancer cells. Numerous cell-signaling channels have evolved and invigorated to make off three-dimensional feedback networks. The magnitude of accessible information by pathways occupies curated information as a consortium. To fully appreciate the pivotal roles that signaling cascades play in tumor development, it is necessary to understand the involved signaling cascades in the interaction between cancer cells. The prime endeavour is to canonically curate all signaling pathways involving cell cycle, EGFR, MAPK, GPCR, PI3K/ AKT/mTOR, immune checkpoints, nuclear receptors, janus kinase, transcription activators etc., involving the manipulation of genetic and nuclear receptors. Here, we will summarize the vast amount of information describing the signals that mediate crosstalk between cancer cells and the targets related to this crosstalk.
Insights
Cancer involves uncontrolled cell growth, with targeted therapies facing drug resistance. Understanding cell signaling pathways is crucial for developing new anti-cancer drugs to overcome resistance and improve outcomes.
Area of Science:
- Oncology and Molecular Biology: Focuses on the intricate cell signaling pathways driving cancer development and progression.
Background:
- Cancer is a leading cause of global mortality, often linked to lifestyle factors.
- While cancer drug approvals are increasing, acquired drug resistance and toxic side effects remain significant challenges for targeted therapies.
- Understanding cell-cell signaling is critical for developing effective anti-cancer strategies.
Purpose of the Study:
- To summarize and curate information on signaling pathways involved in cancer.
- To elucidate the role of cell signaling crosstalk in tumor development.
- To identify therapeutic targets within these signaling pathways.
Main Methods:
- Review and curation of existing scientific literature on cancer signaling pathways.
- Analysis of signaling cascades, including cell cycle, EGFR, MAPK, GPCR, PI3K/AKT/mTOR, and immune checkpoints.
- Identification of targets for anti-cancer therapy based on signaling pathway manipulation.
Main Results:
- Signaling pathways exhibit complex crosstalk, enabling cancer cells to evade therapies.
- Designer inhibitors are emerging as novel interventions to block aberrant pathways.
- Specific signaling characteristics that emerge during cancer progression can be targeted.
Conclusions:
- A comprehensive understanding of cell signaling crosstalk is essential for advancing cancer therapy.
- Targeting specific signaling pathways offers a promising avenue for overcoming drug resistance.
- Further research into these pathways can accelerate reductions in cancer mortality.
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