Bertozzi Serena, Corradetti Bruna, Seriau Luca, Diaz Ñañez José Andrés, Cedolini Carla, Fruscalzo Arrigo, Cesselli Daniela, Cagnacci Angelo, Londero Ambrogio P
Breast Unit, Department of Surgery, DAME, University Hospital of "Santa Maria della Misericordia", 33100 Udine, Italy.
Ennergi Research (Non-Profit Organisation), 33050 Lestizza, Italy.
J Pers Med. 2022 Aug 17;12(8):1324. doi: 10.3390/jpm12081324.
Nanotechnology, the art of engineering structures on a molecular level, offers the opportunity to implement new strategies for the diagnosis and management of pregnancy-related disorders. This review aims to summarize the current state of nanotechnology in obstetrics and cancer in pregnancy, focusing on existing and potential applications, and provides insights on safety and future directions. A systematic and comprehensive literature assessment was performed, querying the following databases: PubMed/Medline, Scopus, and Endbase. The databases were searched from their inception to 22 March 2022. Five independent reviewers screened the items and extracted those which were more pertinent within the scope of this review. Although nanotechnology has been on the bench for many years, most of the studies in obstetrics are preclinical. Ongoing research spans from the development of diagnostic tools, including optimized strategies to selectively confine contrast agents in the maternal bloodstream and approaches to improve diagnostics tests to be used in obstetrics, to the synthesis of innovative delivery nanosystems for therapeutic interventions. Using nanotechnology to achieve spatial and temporal control over the delivery of therapeutic agents (e.g., commonly used drugs, more recently defined formulations, or gene therapy-based approaches) offers significant advantages, including the possibility to target specific cells/tissues of interest (e.g., the maternal bloodstream, uterus wall, or fetal compartment). This characteristic of nanotechnology-driven therapy reduces side effects and the amount of therapeutic agent used. However, nanotoxicology appears to be a significant obstacle to adopting these technologies in clinical therapeutic praxis. Further research is needed in order to improve these techniques, as they have tremendous potential to improve the accuracy of the tests applied in clinical praxis. This review showed the increasing interest in nanotechnology applications in obstetrics disorders and pregnancy-related pathologies to improve the diagnostic algorithms, monitor pregnancy-related diseases, and implement new treatment strategies.
纳米技术,即在分子水平上构建工程结构的技术,为实施妊娠相关疾病的诊断和管理新策略提供了契机。本综述旨在总结纳米技术在产科和妊娠合并癌症方面的现状,重点关注现有和潜在应用,并对安全性及未来方向提供见解。我们进行了系统全面的文献评估,检索了以下数据库:PubMed/Medline、Scopus和Endbase。检索时间跨度为各数据库建库至2022年3月22日。由五名独立评审员筛选条目,并提取本综述范围内更相关的内容。尽管纳米技术已存在多年,但大多数产科研究仍处于临床前阶段。正在进行的研究涵盖了诊断工具的开发,包括将造影剂选择性地限制在母体血流中的优化策略以及改进用于产科的诊断测试方法,还包括用于治疗干预的创新递送纳米系统的合成。利用纳米技术实现对治疗剂(如常用药物、最新定义的制剂或基于基因治疗的方法)递送的时空控制具有显著优势,包括能够靶向特定的感兴趣细胞/组织(如母体血流、子宫壁或胎儿腔室)。纳米技术驱动治疗的这一特性可减少副作用和治疗剂的使用量。然而,纳米毒理学似乎是在临床治疗实践中采用这些技术的重大障碍。需要进一步研究以改进这些技术,因为它们在提高临床实践中应用测试的准确性方面具有巨大潜力。本综述表明,人们对纳米技术在产科疾病和妊娠相关病理中的应用兴趣日益浓厚,以改进诊断算法、监测妊娠相关疾病并实施新的治疗策略。