Paulos Chrystal M, Turk Mary Jo, Breur Gert J, Low Philip S
Department of Chemistry, 560 Oval Drive, 1393 Brown Bldg., Purdue University, West Lafayette, IN 47907, USA.
Adv Drug Deliv Rev. 2004 Apr 29;56(8):1205-17. doi: 10.1016/j.addr.2004.01.012.
Rheumatoid arthritis (RA) is an autoimmune disease that is characterized by inflammation of the joints and destruction of cartilage and bone, often compromising both the quality and duration of life. The disease pathology is complex, involving the infiltration and activation of various populations of immune cells along with the release of destructive inflammatory mediators into the synovium of affected joints. Although it is still debatable whether activated macrophages are the primary promoters of RA, emerging data clearly show that the biological activity of this subset of inflammatory cells greatly contributes to both the acute and chronic stages of the disease. The further discovery of folate receptor expression on these activated (but not quiescent) macrophages in both animal models and human patients with naturally occurring RA has opened the possibility of exploiting folic acid to target attached drugs to this population of pathologic cells. Indeed, recent studies have shown that folate-linked imaging and therapeutic agents can be selectively delivered to arthritic joints, allowing both visualization and treatment of RA, with little or no collateral toxicity to normal tissues. This review will first summarize data documenting specific expression of the folate receptor on activated macrophages and then focus on the development of folate-targeted diagnostic and therapeutic agents for guided intervention into rheumatoid arthritis.
类风湿性关节炎(RA)是一种自身免疫性疾病,其特征是关节炎症以及软骨和骨破坏,常常影响生活质量和寿命。该疾病的病理过程复杂,涉及多种免疫细胞群体的浸润和激活,以及向受累关节滑膜释放具有破坏性的炎症介质。尽管活化巨噬细胞是否为RA的主要促发因素仍存在争议,但新出现的数据清楚地表明,这一炎症细胞亚群的生物学活性在很大程度上导致了疾病的急性和慢性阶段。在动物模型以及患有自然发生的RA的人类患者中,进一步发现这些活化(而非静止)巨噬细胞上存在叶酸受体表达,这为利用叶酸将附着药物靶向至这一病理细胞群体提供了可能性。事实上,最近的研究表明,与叶酸相连的成像和治疗剂能够选择性地递送至关节炎关节,实现RA的可视化和治疗,对正常组织几乎没有或没有附带毒性。本综述将首先总结记录叶酸受体在活化巨噬细胞上特异性表达的数据,然后重点关注用于指导类风湿性关节炎干预的叶酸靶向诊断和治疗剂的研发。