Zlotnikov Igor D, Kudryashova Elena V
Faculty of Chemistry, Lomonosov Moscow State University, Leninskie Gory 1/3, 119991 Moscow, Russia.
Biomedicines. 2023 Oct 12;11(10):2769. doi: 10.3390/biomedicines11102769.
Progress in macrophage research is crucial for numerous applications in medicine, including cancer and infectious diseases. However, the existing methods to manipulate living macrophages are labor-intense and inconvenient. Here, we show that macrophage membranes can be reconstituted after storage for months at 4 °C, with their CD206 receptor selectivity and specificity being similar to those in the living cells. Then, we have developed a mannose ligand, specific to CD206, linked with PEG as an IR spectroscopy marker to detect binding with the macrophage receptor. PEG was selected due to its unique adsorption band of the C-O-C group at IR spectra, which does not overlap with other biomolecules' spectroscopic feature. Next, competitive binding assay versus the PEG-bound ligand has enabled the selection of other higher-affinity ligands specific to CD206. Furthermore, those higher-affinity ligands were used to differentiate activated macrophages in a patient's bronchoalveolar (BAL) or nasopharyngeal (NPL) lavage. CD206- control cells (HEK293T) showed only non-specific binding. Therefore, biochips based on reconstituted macrophage membranes as well as PEG-trimannoside as an IR spectroscopic marker can be used to develop new methods facilitating macrophage research and macrophage-focused drug discovery.
巨噬细胞研究的进展对于医学中的众多应用至关重要,包括癌症和传染病。然而,现有的操纵活巨噬细胞的方法既费力又不方便。在这里,我们表明巨噬细胞膜在4°C下储存数月后可以重构,其CD206受体的选择性和特异性与活细胞中的相似。然后,我们开发了一种对CD206特异的甘露糖配体,与聚乙二醇(PEG)连接作为红外光谱标记物,以检测与巨噬细胞受体的结合。选择PEG是因为其在红外光谱中C-O-C基团有独特的吸附带,不与其他生物分子的光谱特征重叠。接下来,通过与PEG结合的配体进行竞争性结合测定,能够筛选出其他对CD206具有更高亲和力的配体。此外,那些高亲和力配体被用于区分患者支气管肺泡(BAL)或鼻咽(NPL)灌洗液中的活化巨噬细胞。CD206对照细胞(HEK293T)仅显示非特异性结合。因此,基于重构巨噬细胞膜以及PEG-三甘露糖苷作为红外光谱标记物的生物芯片可用于开发促进巨噬细胞研究和聚焦巨噬细胞的药物发现的新方法。