Department of Pharmaceutical Technology, Faculty of Pharmacy, Tanta University, Tanta 31527, Egypt.
Cancer Nanotechnology Research Laboratory (CNRL), Faculty of Pharmacy, Alexandria University, Alexandria 21521, Egypt.
ACS Biomater Sci Eng. 2024 Aug 12;10(8):4985-5000. doi: 10.1021/acsbiomaterials.4c00666. Epub 2024 Jul 30.
Colorectal cancer is an extremely aggressive form of cancer that often leads to death. Lactoferrin shows potential for targeting and treating colorectal cancer; however, oral delivery faces hurdles hampering clinical applications. We engineered dual-responsive lactoferrin nanostructured microbeads to overcome delivery hurdles and enhance drug targeting.
The hydrophobic drug mesalazine (MSZ) was coupled to lactoferrin to form amphiphilic conjugate nanoparticles, dispersed in water. The lipid-soluble polyphenolic drug resveratrol (RSV) was then encapsulated into the hydrophobic core of LF-MSZ nanoparticles. To impart thermoresponsive properties, the dual-payload NPs were coupled with a PNIPAAm shell; finally, to further endow the nanoparticles with gastrointestinal resistance and pH responsiveness, the nanoparticles were microencapsulated into ionically cross-linked pectin-alginate beads.
The nanoparticles showed enhanced internalization and cytotoxicity against HCT colon cancer cells via LF-receptor-mediated endocytosis. Thermal triggering and tuned release were conferred by the temperature-sensitive polymer. The coatings protected the drugs from degradation. Orally delivered microbeads significantly reduced tumor burden in a mouse colon cancer model, lowering carcinoembryonic antigen and elevating antioxidant enzymes. Apoptotic pathways were stimulated, indicated by heightened Bax/Bcl2 ratio and caspase-3/9 expression.
Overall, we propose the innovative lactoferrin nanostructured microbeads as a paradigm shift in oral colorectal cancer therapeutics.
结直肠癌是一种极具侵袭性的癌症,常导致死亡。乳铁蛋白显示出靶向和治疗结直肠癌的潜力;然而,口服递送面临着阻碍临床应用的障碍。我们设计了双响应型乳铁蛋白纳米结构微球,以克服递药障碍并增强药物靶向性。
将疏水性药物美沙拉嗪(MSZ)与乳铁蛋白偶联形成两亲性共轭纳米粒,分散在水中。然后将脂溶性多酚药物白藜芦醇(RSV)包封到 LF-MSZ 纳米粒的疏水性核心内。为了赋予温敏特性,将双载药 NPs 与 PNIPAAm 壳偶联;最后,为了进一步赋予纳米粒胃肠道抵抗和 pH 响应性,将纳米粒微囊化为离子交联的果胶-海藻酸钠珠。
纳米粒通过 LF 受体介导的内吞作用增强了对 HCT 结肠癌细胞的内化和细胞毒性。热触发和调释由温度敏感聚合物赋予。涂层保护药物免受降解。口服递送的微球在小鼠结直肠癌模型中显著降低了肿瘤负担,降低了癌胚抗原并提高了抗氧化酶。通过升高 Bax/Bcl2 比值和 caspase-3/9 表达,激活了凋亡途径。
总体而言,我们提出了创新的乳铁蛋白纳米结构微球,作为口服结直肠癌治疗的范式转变。