School of Chemistry, MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, Xi'an Jiaotong University, Xi'an, 710049, China.
Key Laboratory of Thermo-Fluid Science and Engineering of MOE, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi, 710049, China.
Colloids Surf B Biointerfaces. 2021 Apr;200:111573. doi: 10.1016/j.colsurfb.2021.111573. Epub 2021 Jan 12.
In order to maximize the therapeutic effect and and minimize the systemtic side effect of the small molecule anticancer drugs, biodegradable drug delivery systems (DDSs) that respond to tumor microenvironment (TME) have attracted significant attention. Herein, a novel redox/pH dual-responsive and biodegradable polyphosphazene (PPZ) nano-prodrugs have been prepared via one-pot crosslinking of vanillin modified DOX (VMD, acid-sensitive) and 4,4'-dihydroxydiphenyl disulfide (HPS, GSH-responsive) with hexachlorocyclotriphosphazene (HCCP). The phenol groups of the as-synthesized VMD and HPS have high nucleophilic substitution activity towards HCCP under base catalyst and afforded PPZ nano-prodrugs, denoted as HCCP-VMD-HPS, with a high drug loading ratio of up to 56.4 %. As expected, the skeleton of the PPZ consisting of imine bonds in VMD and the disulfide bonds in HPS and cyclotriphosphazenes inclined to be decomposed in low pH conditions and high level of GSH environments. The antitumor drug DOX was found to be controlled released in TME conditions (extracellular, pH∼6.8 and endosomes, lysosomes pH∼5.0 with ∼10 mM GSH), rather than neutral physiological conditions (pH 7.4 with ∼20 μM GSH). Moreover, the resulting HCCP-VMD-HPS nano-prodrug have obvious cytotoxicity to cancer cells while a negligible side effect to normal cells. We therefore believe that the prepared redox/pH dual-responsive and biodegradable PPZ DDSs have great potential in various field.
为了最大限度地提高小分子抗癌药物的治疗效果,同时最小化其系统副作用,针对肿瘤微环境(TME)的可生物降解药物递送系统(DDS)引起了广泛关注。在此,通过将香草醛修饰的 DOX(VMD,酸敏感)和 4,4'-二羟基二苯二硫(HPS,GSH 响应)与六氯环三磷腈(HCCP)一锅交联,制备了一种新型的氧化还原/pH 双重响应和可生物降解的聚磷腈(PPZ)纳米前药。合成的 VMD 和 HPS 中的酚羟基在碱性催化剂存在下对 HCCP 具有高亲核取代活性,得到了 PPZ 纳米前药,命名为 HCCP-VMD-HPS,其药物载药率高达 56.4%。正如预期的那样,VMD 中的亚胺键和 HPS 及环三磷腈中的二硫键构成的 PPZ 骨架在低 pH 条件和高 GSH 环境下易于分解。在 TME 条件下(细胞外,pH∼6.8 和内涵体,溶酶体 pH∼5.0,GSH 约为 10 mM),而非中性生理条件下(pH 7.4,GSH 约为 20 μM),发现抗癌药物 DOX 得到了控制释放。此外,所得的 HCCP-VMD-HPS 纳米前药对癌细胞具有明显的细胞毒性,而对正常细胞的副作用可以忽略不计。因此,我们相信制备的氧化还原/pH 双重响应和可生物降解的 PPZ DDS 在各个领域都具有巨大的潜力。