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纳米金刚石介导的胰腺导管腺癌分子靶向治疗:打破肿瘤-基质的交叉对话,地平线上的下一个希望?

Nanodiamond Mediated Molecular Targeting in Pancreatic Ductal Adenocarcinoma: Disrupting the Tumor-stromal Cross-talk, Next Hope on the Horizon?

机构信息

Department of Pharmaceutical Sciences, Dibrugarh University, Dibrugarh, 786004, Assam, India.

Dr. B.C. Roy College of Pharmacy & AHS, Durgapur, WB, India.

出版信息

Curr Cancer Drug Targets. 2023;23(8):620-633. doi: 10.2174/1568009623666230227120837.

Abstract

Pancreatic ductal adenocarcinoma (PDAC) is one of the foremost causes of cancer-related morbidities worldwide. Novel nanotechnology-backed drug delivery stratagems, including molecular targeting of the chemotherapeutic payload, have been considered. However, no quantum leap in the gross survival rate of patients with PDAC has been realized. One of the predominant causes behind this is tumor desmoplasia, a dense and heterogenous stromal extracellular matrix of the tumor, aptly termed tumor microenvironment (TME). It plays a pivotal role in the tumor pathogenesis of PDAC as it occupies most of the tumor mass, making PDAC one of the most stromal-rich cancers. The complex crosstalk between the tumor and dynamic components of the TME impacts tumor progression and poses a potential barrier to drug delivery. Understanding and deciphering the complex cascade of tumorstromal interactions are the need of the hour so that we can develop neoteric nano-carriers to disrupt the stroma and target the tumor. Nanodiamonds (NDs), due to their unique surface characteristics, have emerged as a promising nano delivery system in various pre-clinical cancer models and have the potential to deliver the chemotherapeutic payload by moving beyond the dynamic tumor-stromal barrier. It can be the next revolution in nanoparticle-mediated pancreatic cancer targeting.

摘要

胰腺导管腺癌 (PDAC) 是全球癌症相关发病率的首要原因之一。已经考虑了新型纳米技术支持的药物输送策略,包括化疗有效载荷的分子靶向。然而,PDAC 患者的总生存率并没有明显提高。造成这种情况的主要原因之一是肿瘤细胞外基质的过度生长,这是肿瘤中密集且异质的基质细胞外基质,恰当地称为肿瘤微环境 (TME)。它在 PDAC 的肿瘤发病机制中起着关键作用,因为它占据了大部分肿瘤体积,使 PDAC 成为最富含基质的癌症之一。肿瘤与 TME 中动态成分之间的复杂相互作用影响肿瘤的进展,并对药物输送构成潜在障碍。了解和破译肿瘤-基质相互作用的复杂级联反应是当务之急,以便我们能够开发新型纳米载体来破坏基质并靶向肿瘤。纳米金刚石 (ND) 由于其独特的表面特性,已在各种临床前癌症模型中作为一种有前途的纳米递药系统出现,并有可能通过超越动态肿瘤-基质屏障来输送化疗有效载荷。它可能是纳米颗粒介导的胰腺癌靶向治疗的下一次革命。

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