| Literature DB >> 32211399 |
Yaoye Tao1,2,3,4, Jianguo Wang1,2,3,4, Xiao Xu1,2,3,4.
Abstract
Hepatocellular carcinoma (HCC) is one of the most prevalent and lethal solid cancers globally. To improve diagnosis sensitivities and treatment efficacies, the development of new theranostic nanoplatforms for efficient HCC management is urgently needed. In the past decade, mesoporous silica nanoparticles (MSNs) with tailored structure, large surface area, high agents loading volume, abundant chemistry functionality, acceptable biocompatibility have received more and more attention in HCC theranostic. This review outlines the recent advances in MSNs-based systems for HCC therapy and diagnosis. The multifunctional hybrid nanostructures that have both of therapy and diagnosis abilities are highlighted. And the precision delivery strategies of MSNs in HCC are also discussed. Final, we conclude with our personal perspectives on the future development and challenges of MSNs.Entities:
Keywords: biomedical applications; hepatocellular carcinoma; mesoporous silica nanoparticles; precision delivery; theranostic
Year: 2020 PMID: 32211399 PMCID: PMC7075945 DOI: 10.3389/fbioe.2020.00184
Source DB: PubMed Journal: Front Bioeng Biotechnol ISSN: 2296-4185
FIGURE 1The statistics of the paper indexed in the ISI web of science by the topic of “mesoporous silica” and “liver cancer.”
FIGURE 2TEM of samples (A) (MSNs-1), (B) (MSNs-2), (C) (MSNs-3), (D) (MSNs-4), (E) (MSNs-5), (F) (MSNs-6) with different size and shape. (A) Reproduced with permission from Li et al. (2018b). (B) Reproduced with permission from Li et al. (2018c). (C) Reproduced with permission from Xing et al. (2018). (D) Reproduced with permission from Liu et al. (2017). (E) Reproduced with permission from Lee et al. (2016). (F) Reproduced with permission from Lv et al. (2015).
FIGURE 3Schema of the delivery strategies of MSNs in HCC. In vivo process of precision delivery, when MSNs arrive the vasculature of tumor, passive targeting would first work based on EPR effects. Next, active targeting by conjugation of targeting ligand/receptor and EMF effects would promote MSNs into tumor tissues and cells. Final, stimuli-responsive release in tumor tissues and cells would realize by virtue of pH, redox, light, and so on.
Summary of targeting ligands and receptors on MSN-based HCC theranostics.
| Ligand | Receptor | Cell type | Animal model | References |
| Lactobionic acid | Asialoglycoprotein receptor (ASGPR) | HepG2,Huh7, SMMC-7721 | HepG2 mice model, H22 mice model | |
| Folic acid | Folate receptor | HepG2,SMMC-7721 | SMMC-7721 mice model, HepG2 mice model, H22 mice model | |
| RGD | Integrin | SMMC-7721, HepG2, Huh7 | SMMC-7721 mice model, H22 mice model | |
| Transferrin | Transferrin receptor | Huh7 | N/A | |
| Hyaluronicacid | CD44 | HepG2 | N/A | |
| LDL | LDL receptor | HepG2 | HepG2 mice model | |
| Galactose/lactose | ASGPR | HepG2, SMMC-7721 | N/A | |
| SP94 | Unknown receptor(s) | Hep3B | N/A | |
| AS1411 aptamer | Nucleolin | HepG2 | HepG2 mice model | |
| Epithelial cell adhesion molecule (EpCAM)aptamer | EpCAM | HepG2 | HepG2 mice model | |
| TLS11a aptamer | Unknown receptor(s) | HepG2 | N/A | |
| Glycyrrhetinic acid (GA) | GA receptor | HepG2 | N/A | |
| Cetuximab | Epidermal growth factor receptor (EGFR) | HepG2 | HepG2 mice model | |
| Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) | Death receptors 4/5 | HepG2 | HepG2 mice model | |
| Anti-CD155/anti-CD112 monoclonalantibodies | CD155/CD112 | SMMC-7721, HHCC | SMMC-7721 mice model | |
| Avidin | Carcinoembryonic antigen (CEA) | Huh7, LM-9 | N/A | |
| Phenylboronic acid | Sialic acid | HepG2 | H22 mice model | |
| Concanavalin A | Glycoprotein receptors | Huh7, ML-1 | N/A | |
| HepG2 cell membranes | Unknown receptor(s) | HepG2 | HepG2 mice model |
FIGURE 4Different stimuli-responsive MSNs. (A) Fabrication illustration of dual-pH-responsive MSNs. (B) Schematic illustration of MONs. (C) Schematic illustration of NIR-responsive MSNs. (A) Reproduced with permission from Liu et al. (2016). (B) Reproduced with permission from Li et al. (2018b). (C) Reproduced with permission from Lee et al. (2016).
FIGURE 5Schematic illustration of theranostic MSNs. MSNs with rational design could integrate various diagnosis and treatment function, which is similar to Tai Chi all-embracing.