Lee Yong Sun, Choi Seung Eun, Hahm Jarang, Kim Myoung Joon, Bae Hyo Sook, Yi Kayoung, Lim Hyun Taek, Hyon Joon Young
S-Alpha Therapeutics, Inc., Seoul, South Korea.
Renew Seoul Eye Center, Seoul, South Korea.
Front Digit Health. 2021 Aug 27;3:710644. doi: 10.3389/fdgth.2021.710644. eCollection 2021.
Pediatric myopia is increasing globally and has become a major public health issue. However, the mechanism of pediatric myopia is still poorly understood, and there is no effective treatment to prevent its progression. Based on results from animal and clinical studies, certain neuronal-humoral factors (NHFs), such as IGF-1, dopamine, and cortisol may be involved in the progression of pediatric myopia. Digital therapeutics uses evidence-based software as therapeutic interventions and it has the potential to offer innovative treatment strategies for pediatric myopia beyond conventional treatment methods. In this perspective article, we introduce digital therapeutics SAT-001, a software algorithm that modulates the level of NHFs to reduce the progression of pediatric myopia. The proposed mechanism is based on a theoretical hypothesis derived from scientific research and clinical studies and will be further confirmed by evidence generated from clinical studies involving pediatric myopia.
儿童近视在全球范围内呈上升趋势,已成为一个主要的公共卫生问题。然而,儿童近视的发病机制仍未完全明确,且尚无有效的治疗方法来阻止其进展。基于动物和临床研究结果,某些神经体液因子(NHFs),如胰岛素样生长因子-1(IGF-1)、多巴胺和皮质醇,可能与儿童近视的进展有关。数字疗法使用基于证据的软件作为治疗干预手段,有潜力为儿童近视提供超越传统治疗方法的创新治疗策略。在这篇观点文章中,我们介绍了数字疗法SAT-001,这是一种软件算法,可调节神经体液因子水平以减缓儿童近视的进展。所提出的机制基于科学研究和临床研究得出的理论假设,并将通过涉及儿童近视的临床研究产生的证据进一步证实。