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  1. 1 Μαρ 2022 · How to improve the photochemical properties and scale-up produce of the complex TiO 2 -based nanosystems could be a concern for future practical applications. In this review, we are focused on the recent advances in TiO 2 -based nanosystems in cancer therapy and antimicrobial treatment.

  2. 14 Φεβ 2024 · The therapeutic vaccination with CaP cancer vaccine was found to increase cytotoxic CD8 + T cells in tumors in an interferon-dependent manner. Additionally, combining CaP NPs vaccine with PD-L1 immune checkpoint blockers significantly increased CD8 + T cells infiltration in tumors and facilitated their eradication [ 289 ].

  3. 13 Μαρ 2023 · Efficacious but simple nanomaterials that can promote dendritic cancer cell vaccination strategies open up new avenues for improved immunotherapy and human health. Nanoparticle-mediated cancer immunotherapy holds great promise, but more efforts are needed to obtain nanoformulations that result in a full scale activation of innate and adaptive ...

  4. 1 Ιουλ 2023 · Titanium dioxide nanoparticles have shown great therapeutic potential and are a promising strategy for cancer treatment when interacting with photodynamic, photothermal, sonodynamic, and near-infrared light therapies.

  5. The hematological and biochemical results of research showed the higher anticancer activity of the surface-modified paclitaxel attached to the Hap and TiO 2 NPs in comparison to pure paclitaxel. 37 In this manner, the treatment of ovarian cancer cell line with cisplatin loaded on hyaluronic acid-TiO 2 NPs enhanced drug accumulation in cancer ...

  6. 24 Φεβ 2024 · Nanoparticles, such as liposomes, polymeric nanoparticles, and metal nanoparticles, have been widely explored for the development of cancer vaccines. These nanoscale particles offer unique advantages in delivering antigens and adjuvants to immune cells, enhancing vaccine efficacy.

  7. 31 Δεκ 2019 · Cancer vaccines delivered by nanomaterials can be tuned towards desired immune profiles by (1) optimizing the physicochemical properties of the nanomaterial carriers, (2) modifying the nanomaterials with targeting molecules, or (3) co-encapsulating with immunostimulators. Go to: 1. Introduction.

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