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Updated: Jan 23, 2026

Ferric Chloride-induced Thrombosis Mouse Model on Carotid Artery and Mesentery Vessel
Published on: June 29, 2015
Role of RXRβ in platelet function and arterial thrombosis
Enzo Lüsebrink1,2, Verena Warm1,2, Joachim Pircher1,2
1Medizinische Klinik und Poliklinik I, Klinikum der Universität München, Munich, Germany.
Objective:
Retinoid X receptors (RXR) are a family of nuclear receptors that play critical roles in the regulation of numerous fundamental biological processes including cell proliferation, differentiation, and death. Earlier studies suggested that treatment with RXR agonists attenuates platelet activation in all adults (male and femal) and mice; however, the underlying molecular mechanisms have remained insufficiently understood. To elaborate further on this issue, we characterized megakaryocyte and platelet-specific RXR knockout mice to study platelet function in vitro and arterial thrombosis in vivo.
Approach And Results:
First, we identified RXRβ as the dominant RXR receptor in mouse platelets, prompting us to generate a megakaryocyte and platelet-specific PF4Cre ;RXRβflox/flox mouse. Second, we studied activation, spreading, and aggregation of platelets from C57Bl/6 wild-type mice (WT), PF4Cre+ ;RXRβflox/flox mice, and PF4Cre- ;RXRβflox/flox littermate controls in the presence or absence of RXR ligands, that is, 9-cis-retinoic acid (9cRA) and methoprene acid (MA). We found that in vitro treatment with RXR ligands attenuates spreading and aggregation of platelets and increases proplatelet particle formation from megakaryocytes (MK). However, these effects are also observed in RXRβ-deficient platelets and MKs and are thus independent of RXRβ. Third, we investigated arterial thrombus formation in an iron chloride (FeCl3)-induced vascular injury model in vivo, which is also not affected by the absence of RXRβ in platelets.
Conclusions:
Absence of the most abundant RXR receptor in mouse platelets, RXRβ, does not affect platelet function in vitro and thrombus formation in vivo. Furthermore, RXR agonists' mediated effects on platelet function are independent of RXRβ expression. Hence, our data do not support a significant contribution of RXRβ to arterial thrombosis in mice.
Insights
Retinoid X receptor beta (RXRβ) is abundant in mouse platelets but not essential for platelet function or arterial thrombosis. RXR agonist effects on platelets occur independently of RXRβ, suggesting it plays a minor role in these processes.
Area of Science:
- Hematology
- Molecular Biology
- Cardiovascular Research
Background:
- Retinoid X receptors (RXRs) regulate cell processes, and RXR agonists were thought to attenuate platelet activation.
- The precise molecular mechanisms underlying RXR's effect on platelet function and thrombosis remained unclear.
Purpose of the Study:
- To investigate the role of RXRβ, the dominant RXR in platelets, in platelet function and arterial thrombosis.
- To determine if RXR agonist-mediated effects on platelets are dependent on RXRβ.
Main Methods:
- Generated megakaryocyte and platelet-specific RXRβ knockout mice.
- Assessed platelet activation, aggregation, and spreading in vitro.
- Evaluated arterial thrombus formation in vivo using an FeCl3-induced vascular injury model.
Main Results:
- RXRβ was identified as the predominant RXR in mouse platelets.
- In vitro RXR agonist treatment affected platelet function and megakaryocyte proplatelet formation, but these effects were independent of RXRβ.
- Platelet-specific RXRβ deficiency did not impact in vitro platelet function or in vivo arterial thrombosis.
Conclusions:
- RXRβ is not essential for platelet function or arterial thrombosis in mice.
- The observed effects of RXR agonists on platelet function are independent of RXRβ.
- RXRβ likely plays a limited role in mouse arterial thrombosis.
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