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碳量子点对原代巨噬细胞和全脾细胞的免疫调节活性。

Immunomodulatory activities of carbon quantum dots on the primary macrophages and whole splenocytes.

作者信息

Ayaz Furkan, Kavrak Basak, Bilakaya Besa, Çamlik Gamze, Özarslan Fatma Sude, Değim İsmail Tuncer

机构信息

Faculty of Engineering and Natural Sciences, İstinye University, Istanbul, 34010, Turkey.

Faculty of Pharmacy, Biruni University, Istanbul, Türkiye.

出版信息

Immunol Res. 2025 Jun 28;73(1):102. doi: 10.1007/s12026-025-09652-3.

Abstract

Quantum dots, because of some of their fascinating features, like continuous radiation emission, crossing the biological barrier, and potential for drug carrying, have emerged as versatile nanomaterials in enormous applications relating to drug development and health sciences. Among such quantum dots, carbon quantum dots have gained widespread attention due to their low toxicity, high biocompatibility, and excellent photostability. The present work investigates the immunomodulatory properties of CQDs with diverse chemical characteristics against primary macrophages and whole splenocytes. Since macrophages are important regulators of immune responses, their isolation and activation by toll-like receptor agonists were performed to evaluate the production of pro-inflammatory cytokines and intracellular signaling pathways. Our data indicate that different CQD formulations possess specific immunomodulatory activities, while some of them reveal adjuvant capabilities; others act anti-inflammatory. Importantly, the zinc-containing CQDs enhance pro-inflammatory responses, which may find applications as vaccine adjuvants. These findings highlight the therapeutic possibilities of CQDs in the treatment of inflammatory diseases and enhancement of vaccine efficacy.

摘要

量子点因其一些引人入胜的特性,如连续的辐射发射、跨越生物屏障以及携带药物的潜力,已成为药物开发和健康科学等众多应用中的多功能纳米材料。在这类量子点中,碳量子点因其低毒性、高生物相容性和出色的光稳定性而受到广泛关注。本研究调查了具有不同化学特性的碳量子点对原代巨噬细胞和全脾细胞的免疫调节特性。由于巨噬细胞是免疫反应的重要调节因子,因此通过 Toll 样受体激动剂对其进行分离和激活,以评估促炎细胞因子的产生和细胞内信号通路。我们的数据表明,不同的碳量子点制剂具有特定的免疫调节活性,其中一些具有佐剂能力;另一些则具有抗炎作用。重要的是,含锌碳量子点增强促炎反应,这可能使其可作为疫苗佐剂应用。这些发现突出了碳量子点在治疗炎症性疾病和提高疫苗效力方面的治疗潜力。

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