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June 16, 2026Journal of the Renin-Angiotensin-Aldosterone System0 citationsOpen Access

The alamandine/MrgD axis: A novel paracrine pathway within bone marrow RAS-driven leukemogenesis

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AYAlkım YolcuIHIbrahim C. Haznedaroglu

Key Result

The alamandine-MrgD axis functions as an endogenous counter-regulatory component of the bone marrow renin-angiotensin system, exerting anti-proliferative and anti-inflammatory effects in leukemia.

Key Points

  • This research investigates the alamandine–MrgD axis and its significance in leukemic transformation within the bone marrow renin-angiotensin system.
  • Examined the alamandine–MrgD axis in the context of RAS-driven leukemogenesis within the bone marrow.
  • Synthesized findings from literature using various keywords related to alamandine and leukemogenesis.
  • The alamandine–MrgD axis shows anti-proliferative effects against the oncogenic ACE/Ang II/AT1R signaling (no specific metrics provided).
  • It exhibits protective actions against inflammation and oxidative stress, supporting hematopoietic homeostasis during leukemic transformation.

PICO

P
Population
Leukemia
E
Exposure / Comparator
Alamandine-MrgD axis
O
Primary Outcome
Leukemic transformation

Abstract

Introduction The local hematopoietic bone marrow (BM) renin–angiotensin system (RAS) is a complex network of tissue-specific signaling pathways operating through autocrine, paracrine, and intracrine mechanisms that govern stem cell fate, lineage commitment, and marrow microenvironmental integrity. Neoplastic dysregulation of the local BM RAS drives leukemogenesis through a shift toward the proliferative angiotensin-converting enzyme (ACE)/angiotensin II (Ang II)/angiotensin type 1 receptor (AT1R) axis. The discovery of alamandine and its receptor, Mas-related G protein-coupled receptor D (MrgD), has expanded the non-classical RAS paradigm by introducing a distinct protective signaling branch. Method The alamandine–MrgD axis within the local BM RAS and its role in leukemic transformation was examined and synthesized by searching PubMed/MEDLINE using keywords including alamandine, MrgD receptor, bone marrow renin–angiotensin system, and leukemogenesis. Conclusions The alamandine–MrgD axis exerts anti-proliferative, anti-inflammatory, and antioxidant effects that counterbalance oncogenic ACE/Ang II/AT1R signaling in the hematopoietic marrow microenvironment. This axis functions as an endogenous counter-regulatory component of the BM RAS, modulating cellular proliferation, inflammatory signaling, oxidative stress, and microenvironmental homeostasis during leukemic transformation, positioning it as a critical regulator of physiological hematopoiesis. The biological expression and activity of the alamandine–MrgD axis may serve as both a prognostic biomarker and a therapeutic target in leukemia management.

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Cite This Study

Yolcu et al. (2026) conducted a review in Leukemia. Alamandine-MrgD axis was evaluated on Leukemic transformation. The alamandine-MrgD axis functions as an endogenous counter-regulatory component of the bone marrow renin-angiotensin system, exerting anti-proliferative and anti-inflammatory effects in leukemia.

synapsesocial.com/papers/6a31572eaf7cf7f8256b3e1fhttps://doi.org/10.1177/14703203261459207
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