Biomimetic Nanomaterials for the Immunomodulation of the Cardiosplenic Axis Postmyocardial Infarction

脾脏 免疫系统 心肌梗塞 先天免疫系统 获得性免疫系统 免疫学 梗塞 免疫 免疫调节 医学 生物 细胞生物学 材料科学 内科学
作者
Rajendran JC Bose,Chase W. Kessinger,Tajinder S. Dhammu,T. N. Singh,Miller W. Shealy,Khanh Ha,Rena Collandra,Sebastian Himbert,Fernando García,Natalia V. Oleinik,Bing Xu,Vikas Vikas,Maria I. Kontaridis,Maikel C. Rheinstädter,Besim Öğretmen,Donald R. Menick,Jason R. McCarthy
出处
期刊:Advanced Materials [Wiley]
卷期号:36 (8) 被引量:4
标识
DOI:10.1002/adma.202304615
摘要

The spleen is an important mediator of both adaptive and innate immunity. As such, attempts to modulate the immune response provided by the spleen may be conducive to improved outcomes for numerous diseases throughout the body. Here, biomimicry is used to rationally design nanomaterials capable of splenic retention and immunomodulation for the treatment of disease in a distant organ, the postinfarct heart. Engineered senescent erythrocyte-derived nanotheranostic (eSENTs) are generated, demonstrating significant uptake by the immune cells of the spleen including T and B cells, as well as monocytes and macrophages. When loaded with suberoylanilide hydroxamic acid (SAHA), the nanoagents exhibit a potent therapeutic effect, reducing infarct size by 14% at 72 h postmyocardial infarction when given as a single intravenous dose 2 h after injury. These results are supportive of the hypothesis that RBC-derived biomimicry may provide new approaches for the targeted modulation of the pathological processes involved in myocardial infarction, thus further experiments to decisively confirm the mechanisms of action are currently underway. This novel concept may have far-reaching applicability for the treatment of a number of both acute and chronic conditions where the immune responses are either stimulated or suppressed by the splenic (auto)immune milieu.
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