Ahuja Kriti, Raju Sharon, Dahiya Sakshi, Motiani Rajender K
Laboratory of Calciomics and Systemic Pathophysiology (LCSP), Regional Centre for Biotechnology (RCB), Faridabad-121001, Delhi-NCR, India.
Laboratory of Calciomics and Systemic Pathophysiology (LCSP), Regional Centre for Biotechnology (RCB), Faridabad-121001, Delhi-NCR, India.
Cell Calcium. 2025 Jan;125:102987. doi: 10.1016/j.ceca.2024.102987. Epub 2024 Dec 20.
Pigmentation is a protective phenomenon that shields skin cells from UV-induced DNA damage. Perturbations in pigmentation pathways predispose to skin cancers and lead to pigmentary disorders. These ailments impart psychological trauma and severely affect the patients' quality of life. Emerging literature suggests that reactive oxygen species (ROS) and calcium (Ca) signaling modules regulate physiological pigmentation. Further, pigmentary disorders are associated with dysregulated ROS homeostasis and changes in Ca dynamics. Here, we systemically review the literature that demonstrates key role of ROS and Ca signaling in pigmentation and pigmentary disorders. Further, we discuss recent studies, which have revealed that organelle-specific Ca transport mechanisms are critical determinant of pigmentation. Importantly, we deliberate upon the possibility of clinical management of pigmentary disorders by therapeutically targeting ROS generation and cellular Ca handling toolkit. Finally, we highlight the key outstanding questions in the field that demand critical and timely attention. Although an important role of ROS and Ca signaling in regulating skin pigmentation has emerged, the underlying molecular mechanisms remain poorly understood. In future, it would be vital to investigate in detail the signaling cascades that connect perturbed ROS homeostasis and Ca signaling to human pigmentary disorders.
色素沉着是一种保护现象,可保护皮肤细胞免受紫外线诱导的DNA损伤。色素沉着途径的紊乱易引发皮肤癌并导致色素沉着紊乱。这些疾病会造成心理创伤,并严重影响患者的生活质量。新出现的文献表明,活性氧(ROS)和钙(Ca)信号模块调节生理性色素沉着。此外,色素沉着紊乱与ROS稳态失调和Ca动态变化有关。在此,我们系统地回顾了证明ROS和Ca信号在色素沉着和色素沉着紊乱中起关键作用的文献。此外,我们讨论了最近的研究,这些研究表明细胞器特异性Ca转运机制是色素沉着的关键决定因素。重要的是,我们思考了通过治疗性靶向ROS生成和细胞Ca处理工具包来临床管理色素沉着紊乱的可能性。最后,我们强调了该领域中需要迫切关注的关键突出问题。尽管ROS和Ca信号在调节皮肤色素沉着方面的重要作用已显现,但其潜在的分子机制仍知之甚少。未来,详细研究将ROS稳态失衡和Ca信号与人类色素沉着紊乱联系起来的信号级联至关重要。