A potent peptide-steroid conjugate accumulates in cartilage and reverses arthritis without evidence of systemic corticosteroid exposure

软骨 全身给药 医学 关节炎 药理学 曲安奈德 类风湿性关节炎 内科学 毒性 地塞米松 结合 体内 骨关节炎 炎症 病理 化学 免疫学 解剖 生物 生物技术 替代医学 数学分析 数学
作者
Michelle L. Cook Sangar,Emily J. Girard,Gene Hopping,Chunfeng Yin,Fiona Pakiam,Mi‐Youn Brusniak,Elizabeth Nguyen,Raymond Ruff,Mesfin Gewe,Kelly Byrnes-Blake,Natalie W. Nairn,Dennis M. Miller,Christopher Mehlin,Andrew D. Strand,Andrew J. Mhyre,Colin Correnti,Roland K. Strong,Julian A. Simon,James M. Olson
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:12 (533) 被引量:42
标识
DOI:10.1126/scitranslmed.aay1041
摘要

On-target, off-tissue toxicity limits the systemic use of drugs that would otherwise reduce symptoms or reverse the damage of arthritic diseases, leaving millions of patients in pain and with limited physical mobility. We identified cystine-dense peptides (CDPs) that rapidly accumulate in cartilage of the knees, ankles, hips, shoulders, and intervertebral discs after systemic administration. These CDPs could be used to concentrate arthritis drugs in joints. A cartilage-accumulating peptide, CDP-11R, reached peak concentration in cartilage within 30 min after administration and remained detectable for more than 4 days. Structural analysis of the peptides by crystallography revealed that the distribution of positive charge may be a distinguishing feature of joint-accumulating CDPs. In addition, quantitative whole-body autoradiography showed that the disulfide-bonded tertiary structure is critical for cartilage accumulation and retention. CDP-11R distributed to joints while carrying a fluorophore imaging agent or one of two different steroid payloads, dexamethasone (dex) and triamcinolone acetonide (TAA). Of the two payloads, the dex conjugate did not advance because the free drug released into circulation was sufficient to cause on-target toxicity. In contrast, the CDP-11R-TAA conjugate alleviated joint inflammation in the rat collagen-induced model of rheumatoid arthritis while avoiding toxicities that occurred with nontargeted steroid treatment at the same molar dose. This conjugate shows promise for clinical development and establishes proof of concept for multijoint targeting of disease-modifying therapeutic payloads.
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