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阿尔茨海默病中的光生物调节——一种现有药物制剂和纳米医学的补充方法?

Photobiomodulation in Alzheimer's Disease-A Complementary Method to State-of-the-Art Pharmaceutical Formulations and Nanomedicine?

作者信息

Ailioaie Laura Marinela, Ailioaie Constantin, Litscher Gerhard

机构信息

Department of Medical Physics, Alexandru Ioan Cuza University, 11 Carol I Boulevard, 700506 Iasi, Romania.

President of ISLA (International Society for Medical Laser Applications), Research Unit of Biomedical Engineering in Anesthesia and Intensive Care Medicine, Research Unit for Complementary and Integrative Laser Medicine, Traditional Chinese Medicine (TCM) Research Center Graz, Department of Anesthesiology and Intensive Care Medicine, Medical University of Graz, Auenbruggerplatz 39, 8036 Graz, Austria.

出版信息

Pharmaceutics. 2023 Mar 11;15(3):916. doi: 10.3390/pharmaceutics15030916.

Abstract

Alzheimer's disease (AD), as a neurodegenerative disorder, usually develops slowly but gradually worsens. It accounts for approximately 70% of dementia cases worldwide, and is recognized by WHO as a public health priority. Being a multifactorial disease, the origins of AD are not satisfactorily understood. Despite huge medical expenditures and attempts to discover new pharmaceuticals or nanomedicines in recent years, there is no cure for AD and not many successful treatments are available. The current review supports introspection on the latest scientific results from the specialized literature regarding the molecular and cellular mechanisms of brain photobiomodulation, as a complementary method with implications in AD. State-of-the-art pharmaceutical formulations, development of new nanoscale materials, bionanoformulations in current applications and perspectives in AD are highlighted. Another goal of this review was to discover and to speed transition to completely new paradigms for the multi-target management of AD, to facilitate brain remodeling through new therapeutic models and high-tech medical applications with light or lasers in the integrative nanomedicine of the future. In conclusion, new insights from this interdisciplinary approach, including the latest results from photobiomodulation (PBM) applied in human clinical trials, combined with the latest nanoscale drug delivery systems to easily overcome protective brain barriers, could open new avenues to rejuvenate our central nervous system, the most fascinating and complex organ. Picosecond transcranial laser stimulation could be successfully used to cross the blood-brain barrier together with the latest nanotechnologies, nanomedicines and drug delivery systems in AD therapy. Original, smart and targeted multifunctional solutions and new nanodrugs may soon be developed to treat AD.

摘要

阿尔茨海默病(AD)作为一种神经退行性疾病,通常发展缓慢但会逐渐恶化。它占全球痴呆病例的约70%,被世界卫生组织认定为公共卫生重点问题。作为一种多因素疾病,AD的病因尚未得到充分理解。尽管近年来医疗支出巨大且一直在尝试研发新的药物或纳米药物,但AD仍无法治愈,有效的治疗方法也不多。本综述支持对专业文献中有关脑光生物调节分子和细胞机制的最新科学成果进行反思,脑光生物调节作为一种对AD有潜在影响的补充方法。文中重点介绍了最先进的药物制剂、新型纳米材料的研发、当前应用中的生物纳米制剂以及AD领域的前景。本综述的另一个目标是发现并加速向全新的AD多靶点管理模式转变,通过新的治疗模型以及未来整合纳米医学中使用光或激光的高科技医疗应用来促进脑重塑。总之,这种跨学科方法带来的新见解,包括光生物调节(PBM)在人体临床试验中的最新成果,结合最新的纳米级药物递送系统以轻松跨越脑保护屏障,可能会为恢复我们最迷人且复杂的中枢神经系统活力开辟新途径。皮秒级经颅激光刺激可以与最新的纳米技术、纳米药物和药物递送系统一起成功用于AD治疗。可能很快会开发出原创、智能且有针对性的多功能解决方案和新型纳米药物来治疗AD。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7eee/10054386/99c38dc7750d/pharmaceutics-15-00916-g001.jpg

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