Nurlaila Ika, Roh Kangsan, Yeom Chang-Hwan, Kang Hee, Lee Sukchan
Department of Integrative Biotechnology, Sungkyunkwan University, Suwon, South Korea.
Department of Vaccine and Drugs, The National Research and Innovation Agency, Jakarta, Indonesia.
Front Pharmacol. 2022 Oct 25;13:873650. doi: 10.3389/fphar.2022.873650. eCollection 2022.
Lymphedema is a debilitating chronic disease that mostly develops as an adverse reaction to cancer treatment modalities such as chemotherapy, surgery, and radiotherapy. Lymphedema also appears to be a deteriorating consequence of roundworm infections, as best represented by filariasis. According to its origin, lymphedema is classified as primary lymphedema and acquired lymphedema. The latter is an acquired condition that, hitherto, received a considerably low attention owing to the less number of fatal cases been reported. Notably, despite the low mortality rate in lymphedema, it has been widely reported to reduce the disease-free survival and thus the quality of life of affected patients. Hence, in this review, we focused on acquired lymphedema and orchestration of molecular interplays associated with either stimulation or inhibition of lymphedema development that were, in vast majority, clearly depicted in animal models with their specific and distinct technical approaches. We also discussed some recent progress made in phytochemical-based anti-lymphedema intervention strategies and the specific mechanisms underlying their anti-lymphedema properties. This review is crucial to understand not only the comprehensive aspects of the disease but also the future directions of the intervention strategies that can address the quality of life of affected patients rather than alleviating apparent symptoms only.
淋巴水肿是一种使人衰弱的慢性疾病,主要作为对化疗、手术和放疗等癌症治疗方式的不良反应而发生。淋巴水肿似乎也是蛔虫感染的恶化后果,丝虫病就是最典型的例子。根据其起源,淋巴水肿分为原发性淋巴水肿和继发性淋巴水肿。后者是一种后天获得的病症,由于报告的致命病例较少,迄今为止受到的关注相当低。值得注意的是,尽管淋巴水肿的死亡率较低,但广泛报道称它会降低无病生存期,从而影响患者的生活质量。因此,在本综述中,我们聚焦于继发性淋巴水肿以及与淋巴水肿发展的刺激或抑制相关的分子相互作用的调控,这些在绝大多数情况下,通过动物模型及其特定且独特的技术方法得到了清晰的描述。我们还讨论了基于植物化学物质的抗淋巴水肿干预策略的一些最新进展及其抗淋巴水肿特性的具体机制。本综述不仅对于理解该疾病的全面情况至关重要,而且对于能够解决受影响患者生活质量而非仅缓解明显症状的干预策略的未来方向也至关重要。