Emerging roles of purinergic signaling in anti-cancer therapy resistance
Michele Zanoni1, Anna Pegoraro2, Elena Adinolfi2
1Biosciences Laboratory, IRCCS Istituto Romagnolo per lo Studio dei Tumori (IRST) "Dino Amadori", Meldola, Italy.
Abstract:
Cancer is a complex disease with a rapid growing incidence and often characterized by a poor prognosis. Although impressive advances have been made in cancer treatments, resistance to therapy remains a critical obstacle for the improvement of patients outcome. Current treatment approaches as chemo-, radio-, and immuno-therapy deeply affect the tumor microenvironment (TME), inducing an extensive selective pressure on cancer cells through the activation of the immune system, the induction of cell death and the release of inflammatory and damage-associated molecular patterns (DAMPS), including nucleosides (adenosine) and nucleotides (ATP and ADP). To survive in this hostile environment, resistant cells engage a variety of mitigation pathways related to metabolism, DNA repair, stemness, inflammation and resistance to apoptosis. In this context, purinergic signaling exerts a pivotal role being involved in mitochondrial function, stemness, inflammation and cancer development. The activity of ATP and adenosine released in the TME depend upon the repertoire of purinergic P2 and adenosine receptors engaged, as well as, by the expression of ectonucleotidases (CD39 and CD73) on tumor, immune and stromal cells. Besides its well established role in the pathogenesis of several tumors and in host-tumor interaction, purinergic signaling has been recently shown to be profoundly involved in the development of therapy resistance. In this review we summarize the current advances on the role of purinergic signaling in response and resistance to anti-cancer therapies, also describing the translational applications of combining conventional anticancer interventions with therapies targeting purinergic signaling.
Insights
Purinergic signaling, involving adenosine and ATP, plays a key role in cancer therapy resistance. Targeting these pathways offers new strategies to improve anti-cancer treatment outcomes.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Cancer therapy resistance is a major challenge impacting patient outcomes.
- Conventional treatments like chemotherapy, radiotherapy, and immunotherapy alter the tumor microenvironment (TME).
- This alteration releases damage-associated molecular patterns (DAMPs), including adenosine and ATP, influencing cancer cell survival.
Purpose of the Study:
- To review the role of purinergic signaling in cancer therapy response and resistance.
- To explore how cancer cells adapt to hostile TME conditions via purinergic signaling.
- To discuss translational applications of targeting purinergic signaling in cancer therapy.
Main Methods:
- Literature review of current advances in purinergic signaling and cancer therapy resistance.
- Analysis of the involvement of purinergic receptors (P2, adenosine) and ectonucleotidases (CD39, CD73).
- Examination of purinergic signaling's role in cancer cell adaptation pathways (metabolism, DNA repair, stemness, apoptosis resistance).
Main Results:
- Purinergic signaling is critical for cancer development and host-tumor interactions.
- It is profoundly involved in the mechanisms underlying therapy resistance.
- Adenosine and ATP activity in the TME is modulated by specific receptors and ectonucleotidases.
Conclusions:
- Purinergic signaling is a significant factor in overcoming cancer therapy resistance.
- Targeting purinergic signaling presents a promising strategy for combination therapies.
- Further research can lead to improved patient outcomes by integrating purinergic-targeted interventions with conventional treatments.
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