4.7 Review

Emerging small molecule-engineered hybrid nanomedicines for cancer therapy

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Emerging nanomedicines of paclitaxel for cancer treatment

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Summary: Malignant tumor remains a major threat to human health. Although targeted therapeutic strategies have developed rapidly, treatments that act on a single target are prone to tumor resistance. Therefore, traditional broadspectrum chemotherapy still plays a critical role in clinical cancer therapy. However, most chemotherapeutic drugs have unsatisfactory therapeutic efficacy and severe off-target toxicity. To overcome this, researchers have focused on developing novel nano-formulations for efficient delivery of chemotherapeutic drugs.

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Carrier-free nanodrugs with efficient drug delivery and release for cancer therapy: From intrinsic physicochemical properties to external modification

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Summary: This review discusses strategies to enhance drug delivery and release of carrier-free nanodrugs for improved cancer therapy. Optimizing the intrinsic physicochemical properties and external modification are key methods.

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Peptide-based nanomaterials: Self-assembly, properties and applications

Tong Li et al.

Summary: Peptide-based self-assembly nanomaterials, with diverse structures and functionalities, play a significant role in bioapplications. This review provides an overview of the recent advances in peptide-based self-assembly nanostructures, focusing on the driving forces and assembly mechanisms. It also summarizes the synthesis, properties, and applications of functional peptide nanomaterials. The challenges and future prospects of peptide-based nanomaterials are discussed.

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Recent advances of biomimetic nano-systems in the diagnosis and treatment of tumor

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Summary: Biomimetic nano-systems show great potential in tumor therapy, and the strategy of combining nano-systems with biomimetic technology is gaining attention. Challenges and future directions in achieving clinical translation of biomimetic nano-systems are also highlighted.

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Current update on nanoplatforms as therapeutic and diagnostic tools: A review for the materials used as nanotheranostics and imaging modalities

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Recent advances in photothermal and RNA interfering synergistic therapy

Kun Li et al.

Summary: Photothermal therapy (PTT) is a new treatment technique that has attracted worldwide attention in cancer treatment due to its excellent absorption ability, easy regulation, and biodegradability. The synergistic therapy of photothermal and RNA interfering (RNAi) has recently become a hot research topic, showing potential in enhancing the therapeutic effect against tumors.

CHINESE CHEMICAL LETTERS (2021)

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Erythrocyte-derived drug delivery systems in cancer therapy

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Summary: Erythrocytes have shown promising potential as drug delivery systems for cancer therapy, particularly in cancer enzyme therapy, delivering chemotherapeutic agents, combining with nanoparticles, and other potential anti-cancer agents for gene or immune therapy. The translation of this novel delivering system from lab to clinical practice is currently underway, with some carriers already in clinical trials and showing promising outcomes. Erythrocyte-derived drug delivery systems may play a crucial role in future cancer management.

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Sonodynamic therapy with immune modulatable two-dimensional coordination nanosheets for enhanced anti-tumor immunotherapy

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The Use of Alternative Strategies for Enhanced Nanoparticle Delivery to Solid Tumors

Mukaddes Izci et al.

Summary: Research has shown that despite efforts to utilize the EPR effect for enhanced delivery of nanomaterials to solid tumors, the results are still poor. Furthermore, some studies question the role of the EPR effect, suggesting that nanomaterials may enter tumors through active mechanisms rather than through endothelial gaps.

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Precisely engineering a carrier-free hybrid nanoassembly for multimodal DNA damage-augmented photodynamic therapy

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Summary: This study presents a facile and practical dual-drug co-assembly engineering strategy, constructs an efficient and versatile co-delivery nanoplatform, and demonstrates significant combination anticancer efficacy in vitro and in vivo. The dual-drug hybrid nanoassembly shows potential as a promising nanomedicine for clinical multimodal cancer therapy.

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Michael J. Mitchell et al.

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Nanodrug with dual-sensitivity to tumor microenvironment for immuno-sonodynamic anti-cancer therapy

Jinsheng Huang et al.

Summary: A novel nanocarrier was developed for tumor-targeted delivery in melanoma to activate anti-tumor immunity and reduce adverse effects. Additionally, combining sonodynamic therapy with immunotherapy effectively promotes anti-cancer immunity and suppresses melanoma growth.

BIOMATERIALS (2021)

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Quantitative self-assembly of photoactivatable small molecular prodrug cocktails for safe and potent cancer chemo-photodynamic therapy

Lingling Huang et al.

Summary: The study introduces a facile and versatile strategy to construct self-assembling prodrug cocktail nanoparticles for specific drug activation and cancer chemo-photodynamic therapy. Results from preclinical models show that this nanotherapy can effectively eradicate tumors with substantially low systemic toxicity.

NANO TODAY (2021)

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Investigating the crucial roles of aliphatic tails in disulfide bond-linked docetaxel prodrug nanoassemblies

Yuequan Wang et al.

Summary: The cis-trans configuration of aliphatic tails significantly influences the self-assembly features of prodrugs, and elaidic acid-linked prodrug with a trans double bond show poor self-assembly capacity. Different aliphatic tails significantly influence the chemical stability of prodrugs and the colloidal stability of PNPs, thus affecting the in vivo pharmacokinetics, biodistribution and antitumor efficacy of PNPs.

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Small changes in the length of diselenide bond-containing linkages exert great influences on the antitumor activity of docetaxel homodimeric prodrug nanoassemblies

Lingxiao Li et al.

Summary: The linkages in homodimeric prodrugs play a crucial role in self-assembly, in vivo fate, and antitumor activity. Prolonged linkages can facilitate self-delivery of drugs, improve stability and targeting of nanoassemblies, while reducing cytotoxicity in tumor cells.

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Surfactant Protein B Promotes Cytosolic SiRNA Delivery by Adopting a Virus-like Mechanism of Action

Roberta Guagliardo et al.

Summary: This study aimed to gain mechanistic insights into the SP-B-mediated cellular delivery of siRNA and found a strong correlation between SP-B-mediated fusion with endosomal membranes and cytosolic siRNA delivery. These insights may offer opportunities to fuel the rational design of SP-B-inspired RNA nanoformulations for inhalation therapy.

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ATP-Responsive Smart Hydrogel Releasing Immune Adjuvant Synchronized with Repeated Chemotherapy or Radiotherapy to Boost Antitumor Immunity

Lele Sun et al.

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Improving Image-Guided Surgical and Immunological Tumor Treatment Efficacy by Photothermal and Photodynamic Therapies Based on a Multifunctional NIR AIEgen

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Transformable Nanosensitizer with Tumor Microenvironment-Activated Sonodynamic Process and Calcium Release for Enhanced Cancer Immunotherapy

Xuan Tan et al.

Summary: The study introduces a smart nanosonosensitizer TiO2@CaP which enhances the generation of reactive oxygen species (ROS) under ultrasound activation, inducing mitochondrial dysfunction in the tumor microenvironment and promoting immunogenic cell death, resulting in T-cell infiltration and systemic antitumor immunity. This approach holds promise for developing TME-activatable sonosensitizers with temporospatial control over antitumor responses.

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Biomimetic co-assembled nanodrug of doxorubicin and berberine suppresses chemotherapy-exacerbated breast cancer metastasis

Xiao Zheng et al.

Summary: Chemotherapy is a double-edged sword in treating breast cancer, as it can induce cancer progression; Berberine has shown potential as a regulator for Dox-exacerbated breast cancer metastasis by targeting the HMGB1-TLR4 axis; The combination of Dox and Ber in a self-assembled nanodrug can effectively inhibit tumor growth and metastasis.

BIOMATERIALS (2021)

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Smart transformable nanomedicines for cancer therapy

Yuequan Wang et al.

Summary: Significant progress has been made in nanoparticulate drug delivery systems, but there are still multiple delivery dilemmas impairing the efficiency of nanomedicines. Smart transformable nanomedicines based on in vivo drug delivery process are promising for overcoming these delivery obstacles. Efforts have been devoted to developing smart transformable anticancer nanomedicines, including size-reducible nanoparticles, transformable nanostructures, and shell-detachable nanocarriers.

BIOMATERIALS (2021)

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A near infrared ratiometric platform based π-extended porphyrin metal-organic framework for O2 imaging and cancer therapy

Bo-Ru Xie et al.

Summary: A newly developed photosensitizer, PTP, can achieve ratiometric oxygen imaging and induce cancer cell death more effectively through photodynamic therapy, combined with immunotherapy to significantly suppress cancer growth and metastasis.

BIOMATERIALS (2021)

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The progress and perspective of strategies to improve tumor penetration of nanomedicines

Jiang Hu et al.

Summary: This article discusses the importance of tumor penetration, analyzes the barriers to tumor penetration, and discusses strategies such as modulating the tumor microenvironment to enhance tumor penetration.

CHINESE CHEMICAL LETTERS (2021)

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Dynamic Continuum of Nanoscale Peptide Assemblies Facilitates Endocytosis and Endosomal Escape

Hongjian He et al.

Summary: This study demonstrates how nanoscale phosphopeptide assemblies cluster ALP to enable cellular uptake through caveolae-mediated endocytosis and endosomal escape. Dephosphorylation of phosphopeptides leads to the formation of peptidic nanofibers for endosomal escape. Inhibiting TNAP or disrupting lipid rafts abolishes the endocytosis process, while decreasing the transformation to nanofibers prevents endosomal escape.

NANO LETTERS (2021)

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Nanotechnology approaches for global infectious diseases

Ameya R. Kirtane et al.

Summary: Infectious diseases pose a significant burden on global health, particularly in the treatment of diseases like malaria, tuberculosis, and HIV. Nanotechnology shows promise in improving treatment outcomes by enhancing drug targeting and patient adherence.

NATURE NANOTECHNOLOGY (2021)

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Pure photosensitizer-driven nanoassembly with core-matched PEGylation for imaging-guided photodynamic therapy

Shenwu Zhang et al.

Summary: This study demonstrates the development of a core-matched nanoassembly that shows the self-assembly capability of pure PPa molecules into NPs and the improvement of stability and antitumor activity by PPa-PEG(2K).

ACTA PHARMACEUTICA SINICA B (2021)

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Cancer cell membrane camouflaged iridium complexes functionalized black-titanium nanoparticles for hierarchical-targeted synergistic NIR-II photothermal and sonodynamic therapy

Jinchao Shen et al.

Summary: The study introduces a novel method for cancer treatment using functionalized black-titanium nanoparticles, showing satisfactory imaging and therapeutic effects in an animal model.

BIOMATERIALS (2021)

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Self-delivery oxidative stress amplifier for chemotherapy sensitized immunotherapy

Linping Zhao et al.

Summary: A self-delivery oxidative stress amplifier has been developed for chemotherapy sensitized immunotherapy, which can accelerate tumor cell death by breaking intracellular redox homeostasis. The amplifier is able to effectively accumulate in tumor tissues and trigger immunogenic cell death through GSH-responsive drug release.

BIOMATERIALS (2021)

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Interface-sensitized prodrug nanoaggregate as an effective in situ antitumor vaccine

Yaxin Zheng et al.

Summary: The study introduces a simple and effective in situ antitumor vaccine prepared by co-assembling lipid-drug conjugates, demonstrating faster drug release and potential for potent in vivo antitumor immune responses.

EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES (2021)

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Obstacles and opportunities in a forward vision for cancer nanomedicine

Irene de Lazaro et al.

Summary: This text discusses the biological barriers that have hindered the clinical translation of cancer nanomedicines, and elaborates on new directions for the field that capitalize on a deeper understanding of the nano-bio interface.

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Summary: SMP-NAs, formed by the self-assembly of prodrugs, have been widely investigated for their ultrahigh drug-loading and minimal adverse reactions, offering potential for improved antitumor efficiency compared to traditional nanomedicines. They are being used in chemotherapy, phototherapy, immunotherapy, and tumor diagnosis, and their co-delivery capabilities can address the challenges of tumor heterogeneity and multidrug resistance. Smart stimuli-responsive SMP-NAs and combination therapies based on SMP-NAs are also highlighted, emphasizing the structure-function relationships.
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Molecularly engineered carrier-free co-delivery nanoassembly for self-sensitized photothermal cancer therapy

Xinzhu Shan et al.

Summary: This study presents a novel and convenient dual-drug co-assembly strategy for self-sensitized cancer therapy. The carrier-free co-delivery nanoassembly of a HSP90 inhibitor and DiR demonstrates potential as a new treatment approach for tumors.

JOURNAL OF NANOBIOTECHNOLOGY (2021)

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Overcoming Chemoimmunotherapy-Induced Immunosuppression by Assemblable and Depot Forming Immune Modulating Nanosuspension

Seung Mo Jin et al.

Summary: A novel immune modulating suspension containing inducers of cell death and supra-adjuvants can effectively increase cytotoxic T lymphocytes and alleviate immune suppression in the tumor microenvironment, leading to enhanced T cell infiltration and inhibition of tumor metastasis. This approach shows promise in increasing the response rate of immune checkpoint blockade therapy, presenting a new nanotheranostic strategy in cancer immunotherapy.

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Erythrocyte membrane-camouflaged carrier-free nanoassembly of FRET photosensitizer pairs with high therapeutic efficiency and high security for programmed cancer synergistic phototherapy

Xuanbo Zhang et al.

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Nanoscale porous organic polymers for drug delivery and advanced cancer theranostics

Nem Singh et al.

Summary: Finding a personalized nano theranostics solution for cancer diagnosis and therapy is a top challenge in current medicinal science. Porous organic polymers (POPs) show remarkable advantages for cancer theranostics due to their specific physicochemical characteristics. Both crystalline and non-crystalline POPs, such as covalent organic frameworks (COFs), have shown potential applications across various research areas. Early research on nanoscale POPs for theranostics has demonstrated promising applications in drug loading, targeted delivery, stimuli-responsive release, cancer imaging, and combination therapy.

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Shenwu Zhang et al.

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Jianjun Cheng et al.

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