Faculty of Pharmacy, Middle East University, Amman 11831, Jordan.
Department of Pharmacology and Toxicology, College of Pharmacy, Al Farahidi University, Baghdad, Iraq.
Colloids Surf B Biointerfaces. 2024 Mar;235:113768. doi: 10.1016/j.colsurfb.2024.113768. Epub 2024 Jan 26.
Cancer is still one of the deadliest diseases, and diagnosing and treating it effectively remains difficult. As a result, advancements in earlier detection and better therapies are urgently needed. Conventional chemotherapy induces chemoresistance, has non-specific toxicity, and has a meager efficacy. Natural materials like nanosized clay mineral formations of various shapes (platy, tubular, spherical, and fibrous) with tunable physicochemical, morphological, and structural features serve as potential templates for these. As multifunctional biocompatible nanocarriers with numerous applications in cancer research, diagnosis, and therapy, their submicron size, individual morphology, high specific surface area, enhanced adsorption ability, cation exchange capacity, and multilayered organization of 0.7-1 nm thick single sheets have attracted significant interest. Kaolinite, halloysite, montmorillonite, laponite, bentonite, sepiolite, palygorskite, and allophane are the most typical nanoclay minerals explored for cancer. These multilayered minerals can function as nanocarriers to effectively carry a variety of anticancer medications to the tumor site and improve their stability, dispersibility, sustained release, and transport. Proteins and DNA/RNA can be transported using nanoclays with positive and negative surfaces. The platform for phototherapeutic agents can be nanoclays. Clays with bio-functionality have been developed using various surface engineering techniques, which could help treat cancer. The promise of nanoclays as distinctive crystalline materials with applications in cancer research, diagnostics, and therapy are examined in this review.
癌症仍然是最致命的疾病之一,有效地诊断和治疗仍然很困难。因此,迫切需要在早期检测和更好的治疗方法方面取得进展。传统的化疗会诱导耐药性,具有非特异性毒性,疗效不佳。各种形状(片状、管状、球形和纤维状)的纳米级粘土矿物形成的天然材料具有可调节的物理化学、形态和结构特征,可以作为这些材料的潜在模板。作为多功能生物相容性纳米载体,在癌症研究、诊断和治疗中有许多应用,其亚微米尺寸、独特的形态、高比表面积、增强的吸附能力、阳离子交换能力和 0.7-1nm 厚单层的多层组织引起了人们的极大兴趣。高岭石、多水高岭石、蒙脱石、锂蒙脱石、膨润土、海泡石、坡缕石和埃洛石是最典型的用于癌症的纳米粘土矿物。这些多层矿物可以作为纳米载体,有效地将各种抗癌药物输送到肿瘤部位,并提高它们的稳定性、分散性、持续释放和运输能力。正、负表面的纳米粘土可以输送蛋白质和 DNA/RNA。纳米粘土可以作为光疗剂的平台。已经使用各种表面工程技术开发了具有生物功能的粘土,这可能有助于治疗癌症。本文综述了纳米粘土作为在癌症研究、诊断和治疗中有应用的独特结晶材料的前景。