Bispecific domain antibody attenuates airway hyperresponsiveness and pulmonary inflammation in ovalbumin-lipopolysaccharide induced asthma model by inhibiting IL-23 and TNF-α

IF 3.3 3区 医学 Q2 PHARMACOLOGY & PHARMACY
Chirag Ketan Gala , Sandeep , Abhay H. Pande , Shyam Sunder Sharma
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Abstract

Asthma, a chronic multi-factorial pulmonary inflammatory condition with a high morbidity rate, is characterized by airway hyperresponsiveness and persistent pulmonary inflammation. There is a need to develop more effective treatment(s) for the management of asthma. In this study, we have investigated the therapeutic potential of BiSpekDAb (an engineered bispecific antibody comprising an anti-IL-23 domain antibody and an anti-TNF-α domain antibody fused together via flexible linkers to a half-life extension partner) in asthma. Asthma was established by sensitization and challenge of female Wistar rats with the combination of ovalbumin and lipopolysaccharide and the efficacy of BiSpekDAb was investigated by its subcutaneous administration for 11 days on each alternative day (6 doses) during the challenge phase. Significant deterioration of pulmonary functions, enhanced airway hyperresponsiveness, increase in the number of immune cells such as lymphocytes, eosinophils, neutrophils in blood circulation as well as in lungs, enhanced production of inflammatory cytokines (IL-23, TNF-α, IL-1β, IL-6, IL-22), allergic IgE antibodies, oxidative stress markers, and histopathological changes (thickening of epithelial lining, infiltration of immune cells, mast cell degranulation, and overproduction of mucus) were observed in asthma animals, and administration of BiSpekDAb attenuated airway hyperresponsiveness (AHR), pulmonary inflammation and other pathological changes. BiSpekDAb significantly inhibited IL-23 and TNF-α levels in the lungs of asthmatic rats. Our results suggest that targeting IL-23 and TNF-α simultaneously opens a new therapeutic window for biologics development aimed at mitigating pulmonary inflammation such as asthma.

Abstract Image

双特异性结构域抗体通过抑制IL-23和TNF-α减轻卵清蛋白脂多糖诱导哮喘模型气道高反应性和肺部炎症
哮喘是一种发病率高的慢性多因素肺部炎症,其特点是气道高反应性和持续性肺部炎症。有必要开发更有效的治疗哮喘的方法。在这项研究中,我们研究了BiSpekDAb(一种工程双特异性抗体,包括抗il -23结构域抗体和抗tnf -α结构域抗体,通过柔性连接体与半衰期延长伙伴融合在一起)在哮喘中的治疗潜力。通过卵清蛋白和脂多糖联合致敏和攻毒雌性Wistar大鼠建立哮喘,并在攻毒期每隔一天皮下给药11天(6剂)研究BiSpekDAb的疗效。肺功能明显恶化,气道高反应性增强,血液循环和肺中淋巴细胞、嗜酸性粒细胞、中性粒细胞等免疫细胞数量增加,炎症细胞因子(IL-23、TNF-α、IL-1β、IL-6、IL-22)、过敏性IgE抗体、氧化应激标志物的产生增加,组织病理学改变(上皮内膜增厚、免疫细胞浸润、肥大细胞脱颗粒、观察到哮喘动物气道高反应性(AHR)、肺部炎症等病理改变。BiSpekDAb显著抑制哮喘大鼠肺组织IL-23、TNF-α水平。我们的研究结果表明,同时靶向IL-23和TNF-α为开发旨在减轻肺部炎症(如哮喘)的生物制剂打开了新的治疗窗口。
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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
41
审稿时长
42 days
期刊介绍: Pulmonary Pharmacology and Therapeutics (formerly Pulmonary Pharmacology) is concerned with lung pharmacology from molecular to clinical aspects. The subject matter encompasses the major diseases of the lung including asthma, cystic fibrosis, pulmonary circulation, ARDS, carcinoma, bronchitis, emphysema and drug delivery. Laboratory and clinical research on man and animals will be considered including studies related to chemotherapy of cancer, tuberculosis and infection. In addition to original research papers the journal will include review articles and book reviews. Research Areas Include: • All major diseases of the lung • Physiology • Pathology • Drug delivery • Metabolism • Pulmonary Toxicology.
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