To further evaluate the anti-tumor mechanisms of Lip-Pt/Fu@siPD-L1 NPs, the expression of PD-L1 and CD47 in tumor tissues were detected using qRT-PCR and Western blot. As shown in
Fig. 4D, MiPt, the formulation of MiPt plus 5-Fu, the formulation of MiPt plus 5-Fu plus free siPD-L1, and Lip-Pt/Fu@siNC NPs all up-regulated the expression of PD-L1 mRNA in the tumor tissues when compared with the control group. Interestingly, both of the Lip-Pt/Fu@siPD-L1 NPs and the formulation of MiPt plus 5-Fu plus Lip-siPD-L1 significantly down-regulated the expression of PD-L1 mRNA in the tumor tissues due to their effective delivery of siPD-L1. As shown in
Fig. 4E, compared with the control group, the expression of CD47 in the tumor tissues from other groups was inhibited. This was attributed to the effect of MiPt. A stronger CD47 inhibition was observed in the Lip-Pt/Fu@siNC NPs and Lip-Pt/Fu@siPD-L1 NPs group than other groups, due to their higher intratumoral accumulation of Pt. The expression levels of PD-L1 and CD47 protein in the tumor tissues detected using Western blot (
Fig. 4F) were consistent with the results of qRT-PCR. To understand the immune mechanisms underlying the superior therapeutic effect of Lip-Pt/Fu@siPD-L1 NPs, the immune cell populations were analyzed using flow cytometry. The gating strategy of cell sorting was shown in Figs. S19–S21 (Supporting information). As shown in Fig. S22A (Supporting information), compared with the control group (18.30%), the proportion of tumor-infiltrating CD8
+ T cells from the tumor tissues treated with the formulations of MiPt (23.86%), MiPt plus 5-Fu (24.53%) and MiPt plus 5-Fu plus free siPD-L1 (25.50%) were all moderately increased (but there was no statistical difference). Lip-Pt/Fu@siPD-L1 NPs group exhibited the highest proportion of tumor-infiltration CD8
+ T cells (47.71%), which was 1.4-fold higher than that in the group of the formulation of MiPt plus 5-Fu plus Lip-siPD-L1 (34.9%), and 1.6-fold higher than that in Lip-Pt/Fu@siNC NPs group (30.65%). As shown in Fig. S22B (Supporting information), compared with the control group (53.76%), a lower proportion of regulatory cells (Tregs) was observed in the tumor tissues treated with the different formulations of MiPt (45.32%), MiPt plus 5-Fu (41.11%), MiPt plus 5-Fu plus free siPD-L1 (44.19%), and Lip-Pt/Fu@siNC NPs (41.72%). The lowest proportion of Tregs (30.39%) in the tumor was observed in Lip-Pt/Fu@siPD-L1 NPs group. As shown in Fig. S22C (Supporting information), compared with the control group (16.58%), the proportion of macrophages from the tumor tissues, treated with the formulations of MiPt (24.45%), MiPt plus 5-Fu (25.90%), and MiPt plus 5-Fu plus free siPD-L1 (23.85%) were significantly increased. Lip-Pt/Fu@siPD-L1 NPs group exhibited the highest proportion of macrophages (39.28%), which was 1.5-fold higher than that in the formulation of MiPt plus 5-Fu plus Lip@siPD-L1 group (26.18%), and 1.2-fold higher than that in Lip-Pt/Fu@siNC NPs group (33.75%). The proportions of M1 (CD86
+ cells in F4/80
+CD11b
+ cells) and M2 (CD206
+ cells in F4/80
+CD11b
+ cells) macrophages in tumor tissues of each treatment group were showed in Figs. S22D and E (Supporting information). Compared with the control group, the proportion of M1 macrophages from tumor tissues treated with other formulations was increased, and the proportion of M2 macrophages were all reduced. To better evaluate the
in vivo polarization ability of macrophages induced by each formulation, the ratios of M1/M2 were calculated (Fig. S23 in Supporting information). Compared with the control group (0.42), the M1/M2 ratios of MiPt (0.67), MiPt plus 5-Fu (0.68), and MiPt plus 5-Fu plus free siPD-L1 (0.68) were increased, suggesting that the polarization of macrophage from M2 to M1 was induced by MiPt. The Lip-Pt/Fu@siPD-L1 NPs group exhibited a higher M1/M2 ratio of 0.94 than MiPt, due to its higher accumulation of MiPt in tumor tissues. Moreover, the Lip-Pt/Fu@siNC NPs showed increased expression of CD86 and IL-12 mRNA (the makers of M1 macrophages) and decreased expression of CD206 mRNA (the maker of M2 macrophages) in the tumor tissues when compared with the MiPt group (Figs. S24 and S25 in Supporting information).