de Oliveira Clauberto Rodrigues, Droppa-Almeida Daniela, Padilha Francine Ferreira, de Souza Roberto Rodrigues, de Albuquerque-Júnior Ricardo Luiz Cavalcanti
Department of Environmental Health, Universidade Tiradentes, Aracaju-Sergipe, Brazil.
Department of Industrial Biotechnology, Universidade Tiradentes, Instituto de Tecnologia e Pesquisa -Avenida Murilo Dantas, 300, Bairro Farolândia, Aracaju-Sergipe, Brazil.
Recent Pat Nanotechnol. 2023;17(1):8-14. doi: 10.2174/1872210516666220131092642.
Polymeric nanoparticles have a wide diversity, and due to their toxicity and biodegradability, they have been widely used in the health area. Its use allows stability of some compounds, targeted delivery, and increased half-life, in this context, making some treatment proposals more effective. Prostate cancer, in turn, is among the types of cancer with the highest mortality, and the lack of effective treatment causes several strategies to meet this need.
The objective of this work was to verify patents that use polymeric nanoparticles for the treatment of prostate cancer.
For that, specific keywords to direct the search were applied in Patent Scope. After obtaining the patents, one was selected for the development of critical analysis in relation to its chemistry and biology.
A total of five patents were found and, of these, an invention that used PCL-PLGA-PEGCOOH polymeric nanoparticles with two natural compounds, resveratrol and celastrol, providing an alternative method to traditional monotherapies.
The prospective analysis serves to direct us in relation to the technologies currently used in certain fields. Based on several cases of cancer and specifically the countless cases of prostate cancer, five recent patents were found using polymeric nanoparticles. However, only one brought a different aspect of all the treatments used lately. It brought an invention containing two natural compounds being carried with polymeric nanoparticles with promising results.
聚合物纳米颗粒种类繁多,因其毒性和生物可降解性,已在健康领域广泛应用。其应用可使某些化合物保持稳定、实现靶向递送并延长半衰期,在此背景下,使一些治疗方案更有效。前列腺癌是死亡率最高的癌症类型之一,缺乏有效的治疗方法促使人们采取多种策略来满足这一需求。
本研究旨在核实使用聚合物纳米颗粒治疗前列腺癌的专利。
为此,在专利范围中应用了用于指导检索的特定关键词。获取专利后,选择一项专利对其化学和生物学方面进行批判性分析。
共找到五项专利,其中一项发明使用了含白藜芦醇和雷公藤红素两种天然化合物的聚己内酯-聚乳酸-羟基乙酸共聚物-聚乙二醇羧酸聚合物纳米颗粒,为传统单一疗法提供了替代方法。
前瞻性分析有助于我们了解某些领域当前使用的技术。基于多种癌症病例,特别是无数前列腺癌病例,发现了五项使用聚合物纳米颗粒的近期专利。然而,只有一项专利在最近使用的所有治疗方法中呈现出不同的方面。它带来了一项发明,即一种含有两种天然化合物并由聚合物纳米颗粒携带的发明,效果良好。