Pharmacological characterisation of GSK3335103, an oral αvβ6 integrin small molecule RGD-mimetic inhibitor for the treatment of fibrotic disease

体内 整合素 离体 药理学 纤维化 化学 细胞因子 转化生长因子β 博莱霉素 细胞生物学 癌症研究 转化生长因子 体外 医学 免疫学 受体 生物 病理 生物化学 内科学 化疗 生物技术
作者
Alex L. Wilkinson,Alison E. John,John W. Barrett,Elaine Gower,Valerie S. Morrison,Yim Man,Kwok‐Tao Pun,James A. Roper,Jeni Luckett,Lee A. Borthwick,Ben S. Barksby,Rachel A. Burgoyne,Rory Barnes,Andrew J. Fisher,Panayiotis A. Procopiou,Richard J. D. Hatley,Tim N. Barrett,Richard P. Marshall,Simon J. F. Macdonald,Gisli Jenkins
出处
期刊:European Journal of Pharmacology [Elsevier BV]
卷期号:913: 174618-174618 被引量:9
标识
DOI:10.1016/j.ejphar.2021.174618
摘要

Fibrosis is the formation of scar tissue due to injury or long-term inflammation and is a leading cause of morbidity and mortality. Activation of the pro-fibrotic cytokine transforming growth factor-β (TGFβ) via the alpha-V beta-6 (αvβ6) integrin has been identified as playing a key role in the development of fibrosis. Therefore, a drug discovery programme to identify an orally bioavailable small molecule αvβ6 arginyl-glycinyl-aspartic acid (RGD)-mimetic was initiated. As part of a medicinal chemistry programme GSK3335103 was identified and profiled in a range of pre-clinical in vitro and in vivo systems. GSK3335103 was shown to bind to the αvβ6 with high affinity and demonstrated fast binding kinetics. In primary human lung epithelial cells, GSK3335103-induced concentration- and time-dependent internalisation of αvβ6 with a rapid return of integrin to the cell surface observed after washout. Following sustained engagement of the αvβ6 integrin in vitro, lysosomal degradation was induced by GSK3335103. GSK3335103 was shown to engage with the αvβ6 integrin and inhibit the activation of TGFβ in both ex vivo IPF tissue and in a murine model of bleomycin-induced lung fibrosis, as measured by αvβ6 engagement, TGFβ signalling and collagen deposition, with a prolonged duration of action observed in vivo. In summary, GSK3335103 is a potent αvβ6 inhibitor that attenuates TGFβ signalling in vitro and in vivo with a well-defined pharmacokinetic/pharmacodynamic relationship. This translates to a significant reduction of collagen deposition in vivo and therefore GSK3335103 represents a potential novel oral therapy for fibrotic disorders.
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