Jacob Teresa V, Doshi Gaurav M
Department of Pharmacology, SVKM's Dr. Bhanuben Nanavati College of Pharmacy, V.M. Road, Vile Parle (W), Mumbai, 400056, India.
Endocr Metab Immune Disord Drug Targets. 2024;24(8):865-878. doi: 10.2174/1871530323666230821102718.
Peptic ulcers (PU) are one of the commonest yet problematic diseases found to be existing in the majority of the population. Today, drugs from a wide range of therapeutic classes are available for the management of the disease. Still, the complications of the condition are difficult to tackle and the side effect profile is quite a concern. The literature indicates that Toll-like receptors (TLRs) and Semaphorins (SEMAs) have been under study for their various pharmacological actions over the past few decades. Both these signalling pathways are found to regulate immunological and inflammatory responses. Moreover, receptors and signalling molecules from the family of TLRs and SEMAs are found to have bacterial recognition and antibacterial properties which are essential in eradicating , one of the major causative agents of PU. Our understanding of SEMAs, a class of proteins involved in cell signalling, is relatively less developed compared to TLRs, another class of proteins involved in the immune response. SEMAs and TLRs play different roles in biological processes, with SEMAs primarily involved in guiding cell migration and axon guidance during development, while TLRs are responsible for recognizing pathogens and initiating an immune response. Here, in this review, we will discuss in detail the signalling cascade of TLRs and SEMAs and thereby understand its association with PU for future therapeutic targeting. The review also aims at providing an overview of the study that has been into exploring the role of these signalling pathways in the management of PU.
消化性溃疡(PU)是大多数人群中最常见但又存在问题的疾病之一。如今,有多种治疗类别的药物可用于该疾病的管理。然而,该病症的并发症难以解决,且副作用情况相当令人担忧。文献表明,在过去几十年中,Toll样受体(TLR)和信号素(SEMA)因其各种药理作用而受到研究。发现这两种信号通路都能调节免疫和炎症反应。此外,TLR和SEMA家族的受体及信号分子具有细菌识别和抗菌特性,这对于根除PU的主要致病因素之一至关重要。与参与免疫反应的另一类蛋白质TLR相比,我们对参与细胞信号传导的一类蛋白质SEMA的了解相对较少。SEMA和TLR在生物过程中发挥不同作用,SEMA主要在发育过程中参与引导细胞迁移和轴突导向,而TLR则负责识别病原体并启动免疫反应。在此综述中,我们将详细讨论TLR和SEMA的信号级联反应,从而了解其与PU的关联,以便未来进行治疗靶向。该综述还旨在概述探索这些信号通路在PU管理中的作用的研究。