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1.
J Biomed Opt ; 30(Suppl 1): S13704, 2025 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-39247519

RESUMEN

Significance: ALA-PpIX and second-window indocyanine green (ICG) have been studied widely for guiding the resection of high-grade gliomas. These agents have different mechanisms of action and uptake characteristics, which can affect their performance as surgical guidance agents. Elucidating these differences in animal models that approach the size and anatomy of the human brain would help guide the use of these agents. Herein, we report on the use of a new pig glioma model and fluorescence cryotomography to evaluate the 3D distributions of both agents throughout the whole brain. Aim: We aim to assess and compare the 3D spatial distributions of ALA-PpIX and second-window ICG in a glioma-bearing pig brain using fluorescence cryotomography. Approach: A glioma was induced in the brain of a transgenic Oncopig via adeno-associated virus delivery of Cre-recombinase plasmids. After tumor induction, the pro-drug 5-ALA and ICG were administered to the animal 3 and 24 h prior to brain harvest, respectively. The harvested brain was imaged using fluorescence cryotomography. The fluorescence distributions of both agents were evaluated in 3D in the whole brain using various spatial distribution and contrast performance metrics. Results: Significant differences in the spatial distributions of both agents were observed. Indocyanine green accumulated within the tumor core, whereas ALA-PpIX appeared more toward the tumor periphery. Both ALA-PpIX and second-window ICG provided elevated tumor-to-background contrast (13 and 23, respectively). Conclusions: This study is the first to demonstrate the use of a new glioma model and large-specimen fluorescence cryotomography to evaluate and compare imaging agent distribution at high resolution in 3D.


Asunto(s)
Neoplasias Encefálicas , Glioma , Imagenología Tridimensional , Verde de Indocianina , Animales , Verde de Indocianina/farmacocinética , Verde de Indocianina/química , Porcinos , Neoplasias Encefálicas/diagnóstico por imagen , Glioma/diagnóstico por imagen , Glioma/patología , Imagenología Tridimensional/métodos , Ácido Aminolevulínico/farmacocinética , Encéfalo/diagnóstico por imagen , Imagen Óptica/métodos , Modelos Animales de Enfermedad
2.
J Colloid Interface Sci ; 677(Pt B): 79-90, 2025 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-39137565

RESUMEN

Photothermal therapy combined with chemotherapy has shown great promise in the treatment of cancer. In this synergistic system, a safe, stable, and efficient photothermal agent is desired. Herein, an effective photothermal agent, carbon quantum dots (CQDs), was initially synthesized and then rationally constructed a folic acid (FA)-targeted photothermal multifunctional nanoplatform by encapsulating CQDs and the anticancer drug doxorubicin (DOX) in the liposomes. Indocyanine green (ICG), a near infrared (NIR) photothermal agent, approved by the U.S. Food and Drug Administration, was embedded in the bilayer membrane to further enhance the photothermal effects and facilitate the rapid cleavage of liposomes for drug release. Triggered by the NIR laser, this engineered photothermal multifunctional nanoplatform, not only exhibited an excellent performance with the photothermal conversion efficiency of up to 47.14%, but also achieved controlled release of the payloads. In vitro, and in vivo experiments demonstrated that the photothermal multifunctional nanoplatform had excellent biocompatibility, enhanced tumor-specific targeting, stimuli-responsive drug release, effective cancer cell killing and tumor suppression through multi-modal synergistic therapy. The successful construction of this NIR light-triggered targeted photothermal multifunctional nanoplatform will provide a promising strategy for the design and development of synergistic chemo-photothermal combination therapy and improve the therapeutic efficacy of cancer treatment.


Asunto(s)
Carbono , Doxorrubicina , Terapia Fototérmica , Puntos Cuánticos , Doxorrubicina/farmacología , Doxorrubicina/química , Humanos , Puntos Cuánticos/química , Animales , Ratones , Carbono/química , Carbono/farmacología , Verde de Indocianina/química , Verde de Indocianina/farmacología , Ácido Fólico/química , Ácido Fólico/farmacología , Supervivencia Celular/efectos de los fármacos , Liberación de Fármacos , Liposomas/química , Tamaño de la Partícula , Ensayos de Selección de Medicamentos Antitumorales , Antineoplásicos/farmacología , Antineoplásicos/química , Rayos Infrarrojos , Antibióticos Antineoplásicos/farmacología , Antibióticos Antineoplásicos/química , Antibióticos Antineoplásicos/administración & dosificación , Propiedades de Superficie , Proliferación Celular/efectos de los fármacos , Ratones Endogámicos BALB C , Neoplasias Experimentales/patología , Neoplasias Experimentales/tratamiento farmacológico , Neoplasias Experimentales/terapia , Nanopartículas/química
3.
J Nanobiotechnology ; 22(1): 603, 2024 Oct 05.
Artículo en Inglés | MEDLINE | ID: mdl-39367395

RESUMEN

Surgical resection remains the primary treatment modality for glioblastoma (GBM); however, the infiltrative nature of GBM margins complicates achieving complete tumor removal. Additionally, the blood-brain barrier (BBB) poses a formidable challenge to effective probe delivery, thereby hindering precise imaging-guided surgery. Here, we introduce hybrid cell membrane-coated indocyanine green (ICG) liposomes (HM-Lipo-ICG) as biomimetic near-infrared (NIR) fluorescent probes for targeted BBB penetration and accurate delineation of infiltrative GBM margins. HM-Lipo-ICG encapsulates clinically approved ICG within its core and utilizes a hybrid cell membrane exterior, enabling specific targeting and enhanced BBB permeation. Quantitative assessments demonstrate that HM-Lipo-ICG achieves BBB penetration efficiency 2.8 times higher than conventional ICG liposomes. Mechanistically, CD44 receptor-mediated endocytosis facilitates BBB translocation of HM-Lipo-ICG. Furthermore, HM-Lipo-ICG enables high-contrast NIR imaging, achieving a signal-to-background ratio of 6.5 in GBM regions of an orthotopic glioma mouse model, thereby improving tumor margin detection accuracy fourfold (84.4% vs. 22.7%) compared to conventional ICG liposomes. Application of HM-Lipo-ICG facilitates fluorescence-guided precision surgery, resulting in complete resection of GBM cells. This study underscores the potential of hybrid cell membrane-coated liposomal probes in precisely visualizing and treating infiltrative GBM margins.


Asunto(s)
Barrera Hematoencefálica , Neoplasias Encefálicas , Membrana Celular , Glioblastoma , Verde de Indocianina , Liposomas , Verde de Indocianina/química , Liposomas/química , Barrera Hematoencefálica/metabolismo , Glioblastoma/diagnóstico por imagen , Glioblastoma/patología , Animales , Ratones , Humanos , Neoplasias Encefálicas/diagnóstico por imagen , Línea Celular Tumoral , Membrana Celular/metabolismo , Colorantes Fluorescentes/química , Ratones Desnudos , Imagen Óptica/métodos
4.
J Nanobiotechnology ; 22(1): 561, 2024 Sep 14.
Artículo en Inglés | MEDLINE | ID: mdl-39272205

RESUMEN

BACKGROUND: T cell-based immunotherapies are facing great challenges in the recruitment and activation of tumor-specific T cells against solid tumors. Among which, utilizing nanobody (Nb) or nanobodies (Nbs) to construct T cell engager has emerged as a more practical potential for enhancing the anti-tumor effectiveness of T cells. Here, we designed a new Nb-guided multifunctional T cell engager (Nb-MuTE) that not only recruited effector T cells into the tumor tissues, but also efficiently activated T cells anti-tumor immunity when synergies with photothermal effect. RESULTS: The Nb-MuTE, which was constructed based on an indocyanine green (ICG)-containing liposome with surface conjugation of CD105 and CD3 Nbs, and showed excellent targetability to both tumor and T cells, following enhancement of activation, proliferation and cytokine secretion of tumor-specific T cells. Notably, the immunological anti-tumor functions of Nb-MuTE-mediated T cells were further enhanced by the ICG-induced photothermal effect in vitro and in vivo. CONCLUSIONS: Such a new platform Nb-MuTE provides a practical and "all-in-one" strategy to potentiate T cell responses for the treatment of solid tumor in clinic.


Asunto(s)
Inmunoterapia , Verde de Indocianina , Anticuerpos de Dominio Único , Linfocitos T , Animales , Anticuerpos de Dominio Único/química , Anticuerpos de Dominio Único/inmunología , Ratones , Linfocitos T/inmunología , Verde de Indocianina/química , Inmunoterapia/métodos , Línea Celular Tumoral , Humanos , Neoplasias/terapia , Neoplasias/inmunología , Femenino , Ratones Endogámicos BALB C , Terapia Fototérmica/métodos , Liposomas/química , Activación de Linfocitos , Ratones Endogámicos C57BL , Complejo CD3/inmunología
5.
Int J Mol Sci ; 25(17)2024 Aug 23.
Artículo en Inglés | MEDLINE | ID: mdl-39273127

RESUMEN

As a novel therapeutic approach, photothermal therapy (PTT) combined with chemotherapy can synergistically produce antitumor effects. Herein, dithiodipropionic acid (DTDP) was used as a donor of disulfide bonds sensitive to the tumor microenvironment for establishing chemical bonding between the photosensitizer indocyanine green amino (ICG-NH2) and acidified single-walled carbon nanotubes (CNTs). The CNT surface was then coated with conjugates (HD) formed by the targeted modifier hyaluronic acid (HA) and 1,2-tetragacylphosphatidyl ethanolamine (DMPE). After doxorubicin hydrochloride (DOX), used as the model drug, was loaded by CNT carriers, functional nano-delivery systems (HD/CNTs-SS-ICG@DOX) were developed. Nanosystems can effectively induce tumor cell (MCF-7) death in vitro by accelerating cell apoptosis, affecting cell cycle distribution and reactive oxygen species (ROS) production. The in vivo antitumor activity results in tumor-bearing model mice, further verifying that HD/CNTs-SS-ICG@DOX inhibited tumor growth most significantly by mediating a synergistic effect between chemotherapy and PTT, while various functional nanosystems have shown good biological tissue safety. In conclusion, the composite CNT delivery systems developed in this study possess the features of high biocompatibility, targeted delivery, and responsive drug release, and can achieve the efficient coordination of chemotherapy and PTT, with broad application prospects in cancer treatment.


Asunto(s)
Doxorrubicina , Nanotubos de Carbono , Terapia Fototérmica , Microambiente Tumoral , Nanotubos de Carbono/química , Animales , Humanos , Microambiente Tumoral/efectos de los fármacos , Terapia Fototérmica/métodos , Ratones , Doxorrubicina/farmacología , Doxorrubicina/química , Doxorrubicina/administración & dosificación , Doxorrubicina/uso terapéutico , Verde de Indocianina/química , Células MCF-7 , Especies Reactivas de Oxígeno/metabolismo , Apoptosis/efectos de los fármacos , Sistemas de Liberación de Medicamentos/métodos , Femenino , Fármacos Fotosensibilizantes/química , Fármacos Fotosensibilizantes/farmacología , Fármacos Fotosensibilizantes/uso terapéutico , Ensayos Antitumor por Modelo de Xenoinjerto , Ratones Endogámicos BALB C , Terapia Combinada/métodos , Antineoplásicos/farmacología , Antineoplásicos/química , Antineoplásicos/uso terapéutico , Antineoplásicos/administración & dosificación , Ácido Hialurónico/química
6.
J Nanobiotechnology ; 22(1): 558, 2024 Sep 12.
Artículo en Inglés | MEDLINE | ID: mdl-39267061

RESUMEN

Breast cancer therapy has significantly advanced by targeting the programmed cell death-ligand 1/programmed cell death-1 (PD-L1/PD-1) pathway. BMS-202 (a smallmolecule PD-L1 inhibitor) induces PD-L1 dimerization to block PD-1/PD-L1 interactions, allowing the T-cell-mediated immune response to kill tumor cells. However, immunotherapy alone has limited effects. Clinically approved photodynamic therapy (PDT) activates immunity and selectively targets malignant cells. However, PDT aggravates hypoxia, which may compromise its therapeutic efficacy and promote tumor metastasis. We designed a tumor-specific delivery nanoplatform of liposomes that encapsulate the hypoxia-sensitive antitumor drug tirapazamine (TPZ) and the small-molecule immunosuppressant BMS. New indocyanine green (IR820)-loaded polyethylenimine-folic acid (PEI-FA) was complexed with TPZ and BMS-loaded liposomes via electrostatic interactions to form lipid nanocomposites. This nanoplatform can be triggered by near-infrared irradiation to induce PDT, resulting in a hypoxic tumor environment and activation of the prodrug TPZ to achieve efficient chemotherapy. The in vitro and in vivo studies demonstrated excellent combined PDT, chemotherapy, and immunotherapy effects on the regression of distant tumors and lung metastases, providing a reference method for the preparation of targeted agents for treating breast cancer.


Asunto(s)
Neoplasias de la Mama , Inmunoterapia , Liposomas , Liposomas/química , Femenino , Neoplasias de la Mama/tratamiento farmacológico , Neoplasias de la Mama/terapia , Inmunoterapia/métodos , Animales , Ratones , Humanos , Línea Celular Tumoral , Fotoquimioterapia/métodos , Verde de Indocianina/química , Verde de Indocianina/uso terapéutico , Verde de Indocianina/análogos & derivados , Ratones Endogámicos BALB C , Tirapazamina/química , Tirapazamina/farmacología , Antineoplásicos/farmacología , Antineoplásicos/química , Antineoplásicos/uso terapéutico , Fototerapia/métodos
7.
J Nanobiotechnology ; 22(1): 542, 2024 Sep 05.
Artículo en Inglés | MEDLINE | ID: mdl-39238020

RESUMEN

Phototherapy is a promising antitumor modality, which consists of photothermal therapy (PTT) and photodynamic therapy (PDT). However, the efficacy of phototherapy is dramatically hampered by local hypoxia in tumors, overexpression of indoleamine 2,3-dioxygenase (IDO) and programmed cell death ligand-1 (PD-L1) on tumor cells. To address these issues, self-assembled multifunctional polymeric micelles (RIMNA) were developed to co-deliver photosensitizer indocyanine green (ICG), oxygenator MnO2, IDO inhibitor NLG919, and toll-like receptor 4 agonist monophosphoryl lipid A (MPLA). It is worth noting that RIMNA polymeric micelles had good stability, uniform morphology, superior biocompatibility, and intensified PTT/PDT effect. What's more, RIMNA-mediated IDO inhibition combined with programmed death receptor-1 (PD-1)/PD-L1 blockade considerably improved immunosuppression and promoted immune activation. RIMNA-based photoimmunotherapy synergized with PD-1 antibody could remarkably inhibit primary tumor proliferation, as well as stimulate the immunity to greatly suppress lung metastasis and distant tumor growth. This study offers an efficient method to reinforce the efficacy of phototherapy and alleviate immunosuppression, thereby bringing clinical benefits to cancer treatment.


Asunto(s)
Neoplasias del Colon , Inmunoterapia , Micelas , Fototerapia , Polímeros , Receptor de Muerte Celular Programada 1 , Animales , Neoplasias del Colon/terapia , Neoplasias del Colon/inmunología , Neoplasias del Colon/tratamiento farmacológico , Ratones , Inmunoterapia/métodos , Receptor de Muerte Celular Programada 1/antagonistas & inhibidores , Polímeros/química , Línea Celular Tumoral , Fototerapia/métodos , Verde de Indocianina/química , Verde de Indocianina/uso terapéutico , Verde de Indocianina/farmacología , Ratones Endogámicos BALB C , Fármacos Fotosensibilizantes/farmacología , Fármacos Fotosensibilizantes/uso terapéutico , Fotoquimioterapia/métodos , Femenino , Humanos , Antígeno B7-H1/antagonistas & inhibidores , Antígeno B7-H1/metabolismo , Lípido A/análogos & derivados
8.
Int J Nanomedicine ; 19: 9689-9705, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-39309187

RESUMEN

Background: Epidermal growth factor receptor (EGFR) is a major target for the treatment of colorectal cancer. Thus, anti-EGFR antibody conjugated lipid-polymer hybrid nanoparticles can offer a potential means of enhancing the efficacy of chemotherapeutics in EGFR overexpressing cancers. In addition, the combination of chemotherapy and photothermal therapy is a promising strategy for cancer treatment. Hence, it is highly desirable to develop a safe and effective delivery system for colorectal tumor therapy. Methods: In this study, EGFR-targeted and NIR-triggered lipid-polymer hybrid nanoparticles (abbreviated as Cet-Iri-NPs) were prepared with copolymer PPG-PEG, lipids DSPE-PEG-Mal and lecithin as carriers, CPT-11 as an anticancer chemotherapeutic agent, indocyanine green (ICG) as a photothermal agent, and cetuximab as a surface-targeting ligand. Results: In vitro analyses revealed that Cet-Iri-NPs were spherical with size of 99.88 nm, charge of 29.17 mV, drug entrapment efficiency of 51.72%, and antibody conjugation efficiency of 41.70%. Meanwhile, Cet-Iri-NPs exhibited a remarkable photothermal effect, and pH/NIR-triggered faster release of CPT-11 with near infrared (NIR) laser irradiation, which induced enhanced cytotoxicity against SW480 cells. Furthermore, the promoted tumor-growth suppression effect of Cet-Iri-NPs on SW480 tumor xenograft nude mice was achieved under NIR laser irradiation. Conclusion: These results indicate that the well-defined Cet-Iri-NPs are a promising platform for targeted colorectal cancer treatment with chemo-photothermal therapy.


Asunto(s)
Cetuximab , Neoplasias Colorrectales , Receptores ErbB , Verde de Indocianina , Irinotecán , Nanopartículas , Terapia Fototérmica , Receptores ErbB/metabolismo , Neoplasias Colorrectales/terapia , Neoplasias Colorrectales/tratamiento farmacológico , Animales , Humanos , Irinotecán/farmacología , Irinotecán/química , Irinotecán/farmacocinética , Irinotecán/administración & dosificación , Línea Celular Tumoral , Nanopartículas/química , Cetuximab/química , Cetuximab/farmacología , Cetuximab/farmacocinética , Terapia Fototérmica/métodos , Verde de Indocianina/química , Verde de Indocianina/farmacocinética , Verde de Indocianina/farmacología , Verde de Indocianina/administración & dosificación , Ratones , Ratones Desnudos , Polietilenglicoles/química , Ratones Endogámicos BALB C , Camptotecina/química , Camptotecina/farmacología , Camptotecina/farmacocinética , Camptotecina/administración & dosificación , Portadores de Fármacos/química , Polímeros/química , Rayos Infrarrojos , Antineoplásicos/farmacología , Antineoplásicos/química , Antineoplásicos/administración & dosificación , Lecitinas/química , Ensayos Antitumor por Modelo de Xenoinjerto , Lípidos/química
9.
Theranostics ; 14(15): 5945-5964, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-39346533

RESUMEN

Purpose: Bacteria-mediated tumor therapy has showed promising potential for cancer therapy. However, the efficacy of bacterial monotherapy treatment which can express and release therapeutic proteins in tumors has been found to be unsatisfactory. To date, synergistic therapy has emerged as a promising approach to achieve stronger therapeutic outcomes compared to bacterial monotherapy. It is a challenge to visualize these tumor-homing bacteria in vivo and guide them to express and release in situ therapeutic proteins. Procedure: We have developed a kind of engineered bacteria (named CGB@ICG) genetically incorporating acoustic reporter proteins and thermo-inducible ClyA expression gene circuit and chemically modified with indocyanine green on the bacterial surface. The presence of acoustic reporter proteins and indocyanine green facilitates the visualization of CGB@ICG via contrast-enhanced ultrasound imaging and optical imaging, making it possible to guide the sound wave or laser to irradiate precisely these bacteria for inducing the expression of ClyA protein via acoustic- or photothermal effects. The expression and secretion of ClyA protein in the tumor, combined with photothermal therapy, greatly enhanced the anti-tumor efficacy of the engineered bacteria and improved their biosafety. Results: We successfully performed multimodal imaging of CGB@ICG in vivo resulting in remoting control the expression of ClyA protein in tumor. In vivo experiments showed that bacteria-mediated therapy combined photothermal therapy exhibited a rapid decrease in tumor volume compared to other groups, while the tumor volume of the combination therapy group continued to decrease and even achieved complete healing. Thus, combination therapy not only reduced the rate of tumor growth but also prevented the proliferation of tumor cells for an extended period. Conclusion: Our study demonstrated that CGB@ICG serves as an efficacious imaging agent and delivery vector to combine engineered bacteria with photothermal therapy, holding great promise for tumor treatment.


Asunto(s)
Verde de Indocianina , Terapia Fototérmica , Animales , Terapia Fototérmica/métodos , Ratones , Verde de Indocianina/química , Línea Celular Tumoral , Humanos , Neoplasias/terapia , Ratones Endogámicos BALB C , Imagen Óptica/métodos , Ratones Desnudos , Escherichia coli/genética , Bacterias/genética , Imagen Multimodal/métodos , Femenino
10.
ACS Nano ; 18(39): 26666-26689, 2024 Oct 01.
Artículo en Inglés | MEDLINE | ID: mdl-39300799

RESUMEN

The biomimetic nanoparticles (NPs) possessing abilities of tumor targeting and multimodal therapy show great potential for efficient combat of colon cancer. Herein, we developed a multifunctional biomimetic nanoplatform (Fe3O4@PDA@CaCO3-ICG@CM) based on CaCO3-modified magnetic polydopamine (PDA) loaded with indocyanine green (ICG), which was encapsulated by a mouse lymphoma cell (EL4) membrane (CM) expressing functional proteins (i.e., lymphocyte function-associated antigen 1, LFA-1; transforming growth factor-ß receptor, TGF-ßR; programmed cell death protein 1, PD-1; and factor related apoptosis ligand, FasL). Under magnetic attraction and LFA-1/PD-1-mediated endocytosis, Fe3O4@PDA@CaCO3-ICG@CM efficiently targeted CT26 colon tumor cells. The released calcium ion (Ca2+) from the NPs triggered by acidic tumor microenvironment, the enhanced photothermal effect contributed by the combination of PDA and ICG, and FasL's direct killing effect together induced tumor cells apoptosis. Moreover, the apoptosis of CT26 cells induced immunogenic cell death (ICD) to promote the maturation of dendritic cells (DCs) to activate CD4+/CD8+ T cells, thereby fighting against tumor cells, which could further be boosted by programmed death-ligand 1 (PD-L1) blockage and transforming growth factor-ß (TGF-ß) scavenging by Fe3O4@PDA@CaCO3-ICG@CM. As a result, in vivo satisfactory therapeutic effect was observed for CT26 tumor bearing-mice treated with Fe3O4@PDA@CaCO3-ICG@CM under laser irradiation and magnetic attraction, which could eradicate primary tumors and restrain distant tumors through dual tumor targeting-assisted multimodal therapy and eliciting adaptive antitumor immune response, generating the immune memory for inhibiting tumor metastasis and recurrence. Taken together, the multifunctional biomimetic nanoplatform exhibits superior antitumor effects, providing an insightful strategy for the field of nanomaterial-based treatment of cancer.


Asunto(s)
Neoplasias del Colon , Verde de Indocianina , Animales , Ratones , Neoplasias del Colon/patología , Neoplasias del Colon/terapia , Neoplasias del Colon/tratamiento farmacológico , Verde de Indocianina/química , Verde de Indocianina/farmacología , Verde de Indocianina/uso terapéutico , Indoles/química , Indoles/farmacología , Materiales Biomiméticos/química , Materiales Biomiméticos/farmacología , Apoptosis/efectos de los fármacos , Polímeros/química , Polímeros/farmacología , Antineoplásicos/farmacología , Antineoplásicos/química , Carbonato de Calcio/química , Carbonato de Calcio/farmacología , Línea Celular Tumoral , Terapia Combinada , Nanopartículas de Magnetita/química , Nanopartículas de Magnetita/uso terapéutico , Humanos , Proliferación Celular/efectos de los fármacos , Nanopartículas Multifuncionales/química
11.
ACS Nano ; 18(39): 26858-26871, 2024 Oct 01.
Artículo en Inglés | MEDLINE | ID: mdl-39308426

RESUMEN

The anti-PD-L1 and its bispecific antibodies have exhibited durable antitumor immunity but still elicit immunosuppression mainly caused by tumor-derived exosomes (TDEs), leading to difficulty in clinical transformation. Herein, engineered Escherichia coli Nissle 1917 (EcN) coexpressing anti-PD-L1 and anti-CD9 nanobodies (EcN-Nb) are developed and decorated with zinc-based metal-organic frameworks (MOFs) loaded with indocyanine green (ICG), to generate EcN-Nb-ZIF-8CHO-ICG (ENZC) for spatiotemporal lysis of bacteria for immunotherapy. The tumor-homing hybrid system can specifically release nanobodies in response to near-infrared (NIR) radiation, thereby targeting TDEs and changing their biological distribution, remodeling tumor-associated macrophages to M1 states, activating more effective and cytotoxic T lymphocytes, and finally, leading to the inhibition of tumor proliferation and metastasis. Altogether, the microfluidic-enabled MOF-modified engineered probiotics target TDEs and activate the antitumor immune response in a spatiotemporally manipulated manner, offering promising TDE-targeted immune therapy.


Asunto(s)
Exosomas , Estructuras Metalorgánicas , Probióticos , Anticuerpos de Dominio Único , Exosomas/metabolismo , Exosomas/inmunología , Exosomas/química , Animales , Anticuerpos de Dominio Único/química , Anticuerpos de Dominio Único/inmunología , Ratones , Estructuras Metalorgánicas/química , Estructuras Metalorgánicas/farmacología , Humanos , Verde de Indocianina/química , Escherichia coli/genética , Inmunoterapia , Proliferación Celular/efectos de los fármacos , Neoplasias/terapia , Neoplasias/inmunología , Neoplasias/patología , Línea Celular Tumoral , Antineoplásicos/farmacología , Antineoplásicos/química , Antígeno B7-H1/inmunología , Antígeno B7-H1/metabolismo , Antígeno B7-H1/antagonistas & inhibidores
12.
Int J Pharm ; 665: 124665, 2024 Nov 15.
Artículo en Inglés | MEDLINE | ID: mdl-39236772

RESUMEN

Stimuli-responsive nanoplatforms have been popular in controlled drug delivery research because of their ability to differentiate the tumor microenvironment from the normal tissue environment in a spatiotemporally controllable manner. The synergistic therapeutic approach of combining cancer chemotherapy with photothermal tumor ablation has improved the therapeutic efficacy of cancer therapeutics. In this study, a UiO-66 metal organic framework (MOF)-based system loaded with doxorubicin (DOX), surface decorated with the photothermal agents indocyanine green (ICG) and polydopamine (PDA), and conjugated with transferrin (TF) was successfully designed to operate as a responsive system to pH changes, featuring photothermal capabilities and target specificity for the purpose of treating breast cancer. The synthesized nanoplatform benefits from its uniform size, excellent DOX encapsulation efficiency (91.66 %), and efficient pH/NIR-mediated controlled release of the drug. In vitro photothermal studies indicate excellent photothermal stability of the formulation even after 6 on-off cycles of NIR irradiation. The in vitro cytotoxicity assessment using an NIR laser (808 nm) revealed that the DOX-loaded functionalized UiO-66 nanocarriers had outstanding inhibitory effects on 4T1 cells because of synergistic chemo-photo therapies, with no substantial toxicity by the carriers. In addition, cellular uptake evaluations revealed that UiO-DOX-ICG@PDA-TF could specifically target 4T1 cells on the basis of receptor-mediated internalization of transferrin receptors. Additionally, in vivo toxicity studies in Wistar rats indicated no signs of significant toxicity. The UiO-based nanoformulations effectively inhibited and destroyed cancer cells under 808 nm laser irradiation because of their minimal toxicity, strong biocompatibility, and outstanding synergistic chemo/photothermal/photodynamic treatment.


Asunto(s)
Doxorrubicina , Verde de Indocianina , Indoles , Estructuras Metalorgánicas , Fotoquimioterapia , Transferrina , Verde de Indocianina/administración & dosificación , Verde de Indocianina/química , Doxorrubicina/administración & dosificación , Doxorrubicina/farmacología , Doxorrubicina/química , Transferrina/química , Transferrina/administración & dosificación , Estructuras Metalorgánicas/química , Animales , Línea Celular Tumoral , Indoles/química , Indoles/administración & dosificación , Indoles/farmacología , Ratones , Fotoquimioterapia/métodos , Femenino , Polímeros/química , Liberación de Fármacos , Ratas , Nanopartículas/química , Portadores de Fármacos/química , Antibióticos Antineoplásicos/administración & dosificación , Antibióticos Antineoplásicos/farmacología , Antibióticos Antineoplásicos/química , Supervivencia Celular/efectos de los fármacos , Neoplasias de la Mama/tratamiento farmacológico , Neoplasias de la Mama/patología
13.
Int J Pharm ; 665: 124708, 2024 Nov 15.
Artículo en Inglés | MEDLINE | ID: mdl-39284423

RESUMEN

In this study, a porous polydopamine (PDA) nanoparticle-decorated ß-glucan microcapsules (GMs) nanoplatform (PDA/GMs) were developed with macrophage-targeted biomimetic features and a carriers-within-carriers structure. Indocyanine green (ICG) and catalase (CAT) were subsequently co-encapsulated within the PDA/GMs to create a multifunctional nanotherapeutic agent, termed CIPGs. Furthermore, CIPGs and sinomenine (SIN) were co-loaded within a thermo-sensitive hydrogel to design an injectable delivery system, termed CIPG/SH, with potential for multi-modal therapy of rheumatoid arthritis (RA). Photothermal studies indicated that the CIPGs hold excellent photothermal conversion ability and thermal stability, as they combined the photothermal performance of both PDA and ICG. Meanwhile, the CIPGs displayed favorable oxygen self-supplying and photodynamic performance. The CIPGs showed near-infrared (NIR)-induced phototoxicity, effectively inhibiting macrophage proliferation and displaying remarkable antibacterial activity. In vitro drug release from the prepared CIPG/SH showed a controlled release pattern. Animal experiments conducted on an RA mice model confirmed that the formulated CIPG/SH exhibited significant therapeutic effects. By integrating the biological advantages, photothermal/photodynamic performance of the CIPGs, and controlled drug release performance of the thermo-sensitive hydrogels in a single delivery system, the prepared injectable CIPG/SH represents a novel versatile delivery system with great potential for multi-modal combination targeting therapy in RA.


Asunto(s)
Artritis Reumatoide , Liberación de Fármacos , Hidrogeles , Verde de Indocianina , Indoles , Macrófagos , Polímeros , Animales , Hidrogeles/química , Hidrogeles/administración & dosificación , Ratones , Artritis Reumatoide/tratamiento farmacológico , Macrófagos/efectos de los fármacos , Indoles/química , Indoles/administración & dosificación , Verde de Indocianina/administración & dosificación , Verde de Indocianina/química , Polímeros/química , Polímeros/administración & dosificación , Células RAW 264.7 , Morfinanos/administración & dosificación , Morfinanos/química , beta-Glucanos/química , beta-Glucanos/administración & dosificación , Nanopartículas/química , Portadores de Fármacos/química , Sistemas de Liberación de Medicamentos/métodos , Antibacterianos/administración & dosificación , Antibacterianos/química , Antibacterianos/farmacología , Masculino , Modelos Animales de Enfermedad , Terapia Combinada , Cápsulas
14.
ACS Appl Mater Interfaces ; 16(40): 53393-53404, 2024 Oct 09.
Artículo en Inglés | MEDLINE | ID: mdl-39324588

RESUMEN

Small organic dye-based fluorescent agents are highly potent in solid tumor imaging but face challenges such as poor photostability, nonspecific distribution, low circulation, and weak tumor binding. Nanocarriers overcome these issues with better physicochemical and biological performance, particularly in cancer imaging. Among the various nanosized carriers, lipid formulations are clinically approved but yet to be designed as bright nanocontrast agents for solid tumor diagnosis without affecting surrounding tissues. Herein, indocyanine green (ICG) encapsulated targetable lipid nanoparticles (698 ICG/LNPs) as safe contrast agents (∼200 nm) have been developed and tested for solid tumor imaging and biodistribution. Our findings reveal that nanoprecipitation produces ICG-LNPs with a unique assembly, which contributes to their high brightness with improved quantum yield (3.5%) in aqueous media. The bright, optically stable (30 days) biophotonic agents demonstrate rapid accumulation (within 1 h) and prolonged retention (for up to 168 h) at the primary tumor site, with better signal intensity following a one-time dose administration (17.7 × 109 LNP per dose). Incorporated folic acid (735 folic acid/LNPs) helps in selective tumor binding and the specific biodistribution of intravenously injected nanoparticles without affecting healthy tissues. Designed targetable ICG-LNP (634 MESF) demonstrates high-contrast fluorescence and resolution from the tumor area as compared to the targetable ICG-liposomal nanoparticles (532 MESF). Various in vitro and in vivo findings reveal that the cancer diagnostic efficacy elicited by designed bright lipid nanoparticles are comparable to reported clinically accepted imaging agents. Thus, such LNPs hold translational potential for cancer diagnosis at an early stage.


Asunto(s)
Medios de Contraste , Verde de Indocianina , Nanopartículas , Medios de Contraste/química , Medios de Contraste/farmacocinética , Animales , Nanopartículas/química , Ratones , Verde de Indocianina/química , Verde de Indocianina/farmacocinética , Humanos , Lípidos/química , Distribución Tisular , Línea Celular Tumoral , Neoplasias/diagnóstico por imagen , Femenino , Imagen Óptica , Ratones Endogámicos BALB C , Ácido Fólico/química , Ácido Fólico/farmacocinética , Liposomas
15.
Nanoscale ; 16(39): 18584-18596, 2024 Oct 10.
Artículo en Inglés | MEDLINE | ID: mdl-39291372

RESUMEN

Pancreatic ductal adenocarcinoma (PDAC) poses a formidable challenge due to its aggressive nature and poor prognosis. Gemcitabine (Gem), a primary therapeutic option, functions by inhibiting DNA synthesis and promoting apoptosis, thereby impeding the progression of PDAC. However, Gem is hindered by suboptimal pharmacokinetics and efficacy. In response to these challenges, we have developed a nanoparticle (NP) designed for specific recognition of plectin-1 in PDAC cell membranes. The NPs encapsulate Gem while demonstrating pH-responsive drug release characteristics in the acidic tumor microenvironment. This targeted approach enhances local drug delivery while alleviating concerns about systemic toxicity. Furthermore, the NPs are enriched with indocyanine green (ICG), renowned for its strong photothermal effects, thereby further enhancing therapeutic outcomes. This study presents an innovative therapeutic strategy for PDAC based on a plectin-1-targeted recognition delivery approach. The approach is applied to enhance chemotherapy, combined with photothermal therapy (PTT), inducing apoptosis in PDAC cell lines and improving the pharmacokinetics of Gem. In conclusion, the delivery strategy based on plectin-1-targeted recognition shows promising preclinical prospects for enhancing therapeutic efficacy in PDAC, offering valuable insights for future clinical applications.


Asunto(s)
Carcinoma Ductal Pancreático , Desoxicitidina , Gemcitabina , Neoplasias Pancreáticas , Plectina , Plectina/metabolismo , Plectina/química , Humanos , Carcinoma Ductal Pancreático/terapia , Carcinoma Ductal Pancreático/patología , Carcinoma Ductal Pancreático/tratamiento farmacológico , Desoxicitidina/análogos & derivados , Desoxicitidina/química , Desoxicitidina/farmacología , Desoxicitidina/uso terapéutico , Línea Celular Tumoral , Neoplasias Pancreáticas/patología , Neoplasias Pancreáticas/terapia , Neoplasias Pancreáticas/tratamiento farmacológico , Neoplasias Pancreáticas/metabolismo , Animales , Ratones , Nanopartículas/química , Nanopartículas/uso terapéutico , Apoptosis/efectos de los fármacos , Verde de Indocianina/química , Verde de Indocianina/farmacocinética , Terapia Fototérmica , Ratones Desnudos
16.
ACS Appl Mater Interfaces ; 16(34): 44376-44385, 2024 Aug 28.
Artículo en Inglés | MEDLINE | ID: mdl-39145762

RESUMEN

Gene transfection, defined by the delivery of nucleic acids into cellular compartments, stands as a crucial procedure in gene therapy. While branched polyethylenimine (PEI) is widely regarded as the "gold standard" for nonviral vectors, its cationic nature presents several issues, including nonspecific protein adsorption and notable cytotoxicity. Additionally, it often fails to achieve high transfection efficiency, particularly with hard-to-transfect cell types. To overcome these challenges associated with PEI as a vector for plasmid DNA (pDNA), the photothermal agent indocyanine green (ICG) is integrated with PEI and pDNA to form the PEI/ICG/pDNA (PI/pDNA) complex for more efficient and safer gene transfection. The negatively charged ICG serves a dual purpose: neutralizing PEI's excessive positive charges to reduce cytotoxicity and, under near-infrared irradiation, inducing local heating that enhances cell membrane permeability, thus facilitating the uptake of PI/pDNA complexes to boost transfection efficiency. Using pDNA encoding vascular endothelial growth factor as a model, our system shows enhanced transfection efficiency in vitro for hard-to-transfect endothelial cells, leading to improved cell proliferation and migration. Furthermore, in vivo studies reveal the therapeutic potential of this system in accelerating the healing of infected wounds by promoting angiogenesis and reducing inflammation. This approach offers a straightforward and effective method for gene transfection, showing potentials for tissue engineering and cell-based therapies.


Asunto(s)
Verde de Indocianina , Plásmidos , Polietileneimina , Transfección , Verde de Indocianina/química , Verde de Indocianina/farmacología , Polietileneimina/química , Humanos , Transfección/métodos , Animales , Plásmidos/genética , Plásmidos/metabolismo , Plásmidos/química , Ratones , ADN/química , Factor A de Crecimiento Endotelial Vascular/metabolismo , Factor A de Crecimiento Endotelial Vascular/genética , Células Endoteliales de la Vena Umbilical Humana , Proliferación Celular/efectos de los fármacos
17.
Int J Biol Macromol ; 278(Pt 1): 134622, 2024 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-39127267

RESUMEN

Antibody therapy of anti-HER2 monoclonal antibody (mAb) has been an important strategy in treating HER2-positive cancers. However, the efficacy is restricted by many factors, including the level of HER2 expressed by tumor cells and antibody resistance. To overcome these and boost the efficacy, a novel nanoparticle (NP) was constructed in this study for combined antibody therapy of antibody and photothermal therapy (PTT). This novel NP was assembled from 1-pyrenecarboxylic acid (PCA) functionalized anti-HER2 mAb and indocyanine green (ICG), a photothermal transduction agents (PTA), by non-covalent interactions, which was named as Anti-HER2 mAb-pyrene-indocyanine green (H-P-I). Notably, the constructed H-P-I NP not only maintained the affinity and cytotoxicity of anti-HER2 mAb, but also exhibited high photothermal conversion efficiency mediated by ICG. Both in vitro and in vivo assessments confirmed that compared with monotherapy of antibody or ICG, H-P-I demonstrated preferable efficacy in treating HER2-positive cancers. Further biochemistry analysis and pathological analysis ensured the biosafety of H-P-I administration. Taked together, this study proposes a feasible method for constructing tumor-targeted nano PTA based on anti-HER2 mAb through supramolecular self-assembly strategy, achieving synergistic antibody photothermal anticancer treatment, which has the potential to be a promising candidate for combination therapy of HER2-positive cancers.


Asunto(s)
Inmunoconjugados , Terapia Fototérmica , Receptor ErbB-2 , Receptor ErbB-2/metabolismo , Receptor ErbB-2/inmunología , Receptor ErbB-2/antagonistas & inhibidores , Humanos , Terapia Fototérmica/métodos , Animales , Inmunoconjugados/farmacología , Inmunoconjugados/química , Inmunoconjugados/uso terapéutico , Ratones , Línea Celular Tumoral , Anticuerpos Monoclonales/farmacología , Anticuerpos Monoclonales/uso terapéutico , Anticuerpos Monoclonales/química , Nanopartículas/química , Verde de Indocianina/química , Verde de Indocianina/farmacología , Verde de Indocianina/uso terapéutico , Femenino , Neoplasias/terapia , Neoplasias/inmunología
18.
ACS Appl Bio Mater ; 7(9): 6313-6324, 2024 Sep 16.
Artículo en Inglés | MEDLINE | ID: mdl-39172138

RESUMEN

Subcutaneous (SC) administration of chemotherapeutics combined with near-infrared (NIR) light activation can effectively target skin tumors by triggering localized drug release and enhancing cytotoxic effects. In this study, we developed NIR-responsive indocyanine green (ICG) and the chemotherapeutic agent doxorubicin (Dox) loaded into gelatin nanoparticles (NPs) for SC delivery in a skin tumor-bearing mouse model. Histological examination (hematoxylin and eosin staining) confirmed the successful delivery and swelling behavior of the Dox/ICG-loaded gelatin NPs at the SC site. In vitro and in vivo experiments demonstrated that NIR activation of the Dox/ICG-loaded gelatin NPs generated significant photothermal heat (48 and 46 °C), leading to targeted drug release and a substantial reduction in skin tumor size (from 15 to 3 mm3). Our findings suggest that this dual-modality approach of SC chemotherapeutic administration and NIR-triggered photothermal therapy can concentrate cytotoxic drugs at the tumor site, offering a promising strategy for improving skin cancer treatment.


Asunto(s)
Doxorrubicina , Gelatina , Verde de Indocianina , Rayos Infrarrojos , Ensayo de Materiales , Nanopartículas , Neoplasias Cutáneas , Gelatina/química , Doxorrubicina/química , Doxorrubicina/farmacología , Doxorrubicina/administración & dosificación , Animales , Nanopartículas/química , Neoplasias Cutáneas/tratamiento farmacológico , Neoplasias Cutáneas/patología , Ratones , Verde de Indocianina/química , Verde de Indocianina/administración & dosificación , Verde de Indocianina/farmacología , Tamaño de la Partícula , Materiales Biocompatibles/química , Materiales Biocompatibles/farmacología , Ensayos de Selección de Medicamentos Antitumorales , Supervivencia Celular/efectos de los fármacos , Antineoplásicos/química , Antineoplásicos/farmacología , Antineoplásicos/administración & dosificación , Humanos , Antibióticos Antineoplásicos/química , Antibióticos Antineoplásicos/farmacología , Antibióticos Antineoplásicos/administración & dosificación , Proliferación Celular/efectos de los fármacos , Sistemas de Liberación de Medicamentos , Ratones Endogámicos BALB C , Línea Celular Tumoral , Terapia Fototérmica , Liberación de Fármacos , Portadores de Fármacos/química , Inyecciones Subcutáneas
19.
J Mater Chem B ; 12(35): 8626-8632, 2024 Sep 11.
Artículo en Inglés | MEDLINE | ID: mdl-39189804

RESUMEN

The ground-breaking combination of photodynamic therapy (PDT) and photothermal therapy (PTT) has attracted much attention in medical fields as an effective method for fighting cancer. However, evidence suggests that the therapy efficiency is still limited by shallow light penetration depth and poor photosensitizer loading capacity. Herein, we constructed an upconversion nanoparticle@Zr-based metal-organic framework@indocyanine green molecule (UCNPs@ZrMOF@ICG) nanocomposite to integrate 1532 nm light-triggered PDT and 808 nm light-mediated PTT. NaLnF4 nanoparticles are designed to emit upconversion luminescence (UCL) under 1532 nm laser excitation, which is consistent with the absorption spectra of the ZrMOF. Benefiting from the excellent energy transfer efficiency, the ZrMOF can absorb visible light from the UCNPs and then catalyze O2 into 1O2 for deep tissue PDT. To achieve combination therapy, the clinically approved ICG nanocomposite was introduced as a photothermal agent for PTT under 808 nm laser irradiation, and the photothermal conversion efficiency was calculated to be ∼28%. The designed nanosystems facilitate efficient deep-tissue tumor treatment by integrating PDT with PTT. Ultimately, this study creates a multifunctional nanocomposite by combining 1532 nm light-triggered deep tissue PDT and near-infrared (NIR) light-driven PTT for personalized cancer therapy.


Asunto(s)
Rayos Infrarrojos , Elementos de la Serie de los Lantanoides , Estructuras Metalorgánicas , Fotoquimioterapia , Estructuras Metalorgánicas/química , Estructuras Metalorgánicas/farmacología , Estructuras Metalorgánicas/síntesis química , Humanos , Ratones , Elementos de la Serie de los Lantanoides/química , Animales , Antineoplásicos/química , Antineoplásicos/farmacología , Antineoplásicos/síntesis química , Fármacos Fotosensibilizantes/química , Fármacos Fotosensibilizantes/farmacología , Fármacos Fotosensibilizantes/síntesis química , Catálisis , Tamaño de la Partícula , Terapia Fototérmica , Verde de Indocianina/química , Verde de Indocianina/farmacología , Nanopartículas/química , Supervivencia Celular/efectos de los fármacos , Ensayos de Selección de Medicamentos Antitumorales , Proliferación Celular/efectos de los fármacos , Nanocompuestos/química , Nanocompuestos/uso terapéutico
20.
Acta Biomater ; 186: 439-453, 2024 Sep 15.
Artículo en Inglés | MEDLINE | ID: mdl-39097126

RESUMEN

Reactive oxygen species (ROS) are widely considered to the effective therapeutics for fighting bacterial infections especially those associated with biofilm. However, biofilm microenvironments including hypoxia, limited H2O2, and high glutathione (GSH) level seriously limit the therapeutic efficacy of ROS-based strategies. Herein, we have developed an acidic biofilm microenvironment-responsive antibacterial nanoplatform consisting of copper-dopped bovine serum albumin (CBSA) loaded with copper peroxide (CuO2) synthesized in situ and indocyanine green (ICG). The three-in-one nanotherapeutics (CuO2/ICG@CBSA) are capable of releasing Cu2+ and H2O2 in a slightly acidic environment, where Cu2+ catalyzes the conversion of H2O2 into hydroxyl radical (•OH) and consumes the highly expressed GSH to disrupt the redox homeostasis. With the assistance of an 808 nm laser, the loaded ICG not only triggers the production of singlet oxygen (1O2) by a photodynamic process, but also provides photonic hyperpyrexia that further promotes the Fenton-like reaction for enhancing •OH production and induces thermal decomposition of CuO2 for the O2-self-supplying 1O2 generation. The CuO2/ICG@CBSA with laser irradiation demonstrates photothermal-augmented multi-mode synergistic bactericidal effect and is capable of inhibiting biofilm formation and eradicating the biofilm bacteria. Further in vivo experiments suggest that the CuO2/ICG@CBSA can effectively eliminate wound infections and accelerate wound healing. The proposed three-in-one nanotherapeutics with O2/H2O2-self-supplied ROS generating capability show great potential in treating biofilm-associated bacterial infections. STATEMENT OF SIGNIFICANCE: Here, we have developed an acidic biofilm microenvironment-responsive nanoplatform consisting of copper-dopped bovine serum albumin (CBSA) loaded with copper peroxide (CuO2) synthesized in situ and indocyanine green (ICG). The nanotherapeutics (CuO2/ICG@CBSA) are capable of releasing Cu2+ and H2O2 in an acidic environment, where Cu2+ catalyzes the conversion of H2O2 into •OH and consumes the overexpressed GSH to improve oxidative stress. With the aid of an 808 nm laser, ICG provides photonic hyperpyrexia for enhancing •OH production, and triggers O2-self-supplying 1O2 generation. CuO2/ICG@CBSA with laser irradiation displays photothermal-augmented multi-mode antibacterial and antibiofilm effect. Further in vivo experiments prove that CuO2/ICG@CBSA effectively eliminates wound infection and promotes wound healing. The proposed three-in-one nanotherapeutics show great potential in treating biofilm-associated bacterial infections.


Asunto(s)
Biopelículas , Cobre , Glutatión , Verde de Indocianina , Especies Reactivas de Oxígeno , Albúmina Sérica Bovina , Biopelículas/efectos de los fármacos , Animales , Cobre/química , Cobre/farmacología , Glutatión/metabolismo , Albúmina Sérica Bovina/química , Especies Reactivas de Oxígeno/metabolismo , Verde de Indocianina/química , Verde de Indocianina/farmacología , Peróxido de Hidrógeno/química , Ratones , Antibacterianos/farmacología , Antibacterianos/química , Staphylococcus aureus/efectos de los fármacos , Staphylococcus aureus/fisiología , Concentración de Iones de Hidrógeno
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