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1.
Angew Chem Int Ed Engl ; 62(34): e202307324, 2023 08 21.
Artículo en Inglés | MEDLINE | ID: mdl-37384430

RESUMEN

There is huge demand for developing guests that bind ß-CD and can conjugate multiple cargos for cellular delivery. We synthesized trioxaadamantane derivatives, which can conjugate up to three cargos per guest. 1 H NMR titration and isothermal titration calorimetry revealed these guests form 1 : 1 inclusion complexes with ß-CD with association constants in the order of 103  M-1 . Co-crystallization of ß-CD with guests yielded crystals of their 1 : 1 inclusion complexes as determined by single-crystal X-ray diffraction. In all cases, trioxaadamantane core is buried within the hydrophobic cavity of ß-CD and three hydroxyl groups are exposed outside. We established biocompatibility using representative candidate G4 and its inclusion complex with ß-CD (ß-CD⊂G4), by MTT assay using HeLa cells. We incubated HeLa cells with rhodamine-conjugated G4 and established cellular cargo delivery using confocal laser scanning microscopy (CLSM) and fluorescence-activated cell sorting (FACS) analysis. For functional assay, we incubated HeLa cells with ß-CD-inclusion complexes of G4-derived prodrugs G6 and G7, containing one and three units of the antitumor drug (S)-(+)-camptothecin, respectively. Cells incubated with ß-CD⊂G7 displayed the highest internalization and uniform distribution of camptothecin. ß-CD⊂G7 showed higher cytotoxicity than G7, camptothecin, G6 and ß-CD⊂G6, affirming the efficiency of adamantoid derivatives in high-density loading and cargo delivery.


Asunto(s)
beta-Ciclodextrinas , Humanos , Células HeLa , beta-Ciclodextrinas/química , Cristalografía por Rayos X , Calorimetría , Camptotecina
2.
Chemistry ; 27(56): 14100-14107, 2021 Oct 07.
Artículo en Inglés | MEDLINE | ID: mdl-34398494

RESUMEN

Two major hurdles in NP-based catalysis are the aggregation of the NPs and their recycling. Immobilization of NPs onto a 2D support is the most promising strategy to overcome these difficulties. Herein, amphiphilicity-driven self-assembly of galactose-hexaphenylbenzene-based amphiphiles into galactose-decorated 2D nanosheet is reported. The extremely dense decoration of reducing sugar on the surface of the sheets is used for the in situ synthesis and immobilization of ultrafine catalytically active AgNPs by using Tollens' reaction. The potential of the system as a catalyst for the reduction of various nitroaromatics is demonstrated. Enhanced catalytic activity is observed for the immobilized AgNPs when compared to the corresponding discrete AgNPs. Recovery of the catalytic system from the reaction mixture by ultrafiltration and its subsequent recycling for several cycles without dropping its activity is shown. This is the first report demonstrating the in situ synthesis and immobilization of ultrafine AgNPs onto a 2D nanosheet that exhibits excellent catalytic performance for the reduction of nitroaromatics.


Asunto(s)
Galactosa , Nanopartículas del Metal , Catálisis , Plata
3.
Org Biomol Chem ; 19(12): 2804-2810, 2021 03 28.
Artículo en Inglés | MEDLINE | ID: mdl-33720265

RESUMEN

Targeted photodynamic therapy (PDT) is one of the promising approaches for the selective killing of cancerous cells without affecting the normal cells, and hence designing new strategies for targeted PDT is extremely important. Herein we report the design and synthesis of a new class of nanosheets derived from the self-assembly of the iodo-BODIPY-biotin conjugate as a photosensitizer for targeted PDT applications. The nanosheet exhibits a high extinction coefficient in the NIR region, high singlet oxygen efficiency, no toxicity in the dark and cell targeting ligands (biotin) on the surface, which are necessary features required for an ideal photosensitizer. Overexpression of sodium-dependent multivitamin transporters (SMVTs) in HeLa and A549 (biotin receptor positive cell lines) is explored for the selective uptake of the nanophotosensitizer through receptor mediated endocytosis (interaction between biotin and SMVT). Control experiments using a biotin receptor negative cell line (WI-38) are also carried out to confirm that the specific interaction between the SMVTs and biotin is mainly responsible for the selective uptake of the photosensitizer. Efficient killing of cancerous cells is demonstrated upon light irradiation through the generation of singlet oxygen and other reactive oxygen species around the cellular environment.


Asunto(s)
Antineoplásicos/farmacología , Biotina/farmacología , Compuestos de Boro/farmacología , Nanopartículas/química , Fotoquimioterapia , Fármacos Fotosensibilizantes/farmacología , Antineoplásicos/síntesis química , Antineoplásicos/química , Biotina/química , Compuestos de Boro/química , Adhesión Celular/efectos de los fármacos , Proliferación Celular/efectos de los fármacos , Supervivencia Celular/efectos de los fármacos , Células Cultivadas , Ensayos de Selección de Medicamentos Antitumorales , Humanos , Rayos Infrarrojos , Ligandos , Estructura Molecular , Fármacos Fotosensibilizantes/síntesis química , Fármacos Fotosensibilizantes/química
4.
ACS Appl Bio Mater ; 7(9): 6276-6285, 2024 Sep 16.
Artículo en Inglés | MEDLINE | ID: mdl-39215722

RESUMEN

Floxuridine is a potential clinical anticancer drug for the treatment of various cancers. However, floxuridine typically causes unfavorable side effects due to its very poor tumor selectivity, and, hence, there is a high demand for the development of novel approaches that permit the targeted delivery of floxuridine into cancerous cells. Herein, the design and synthesis of an esterase-responsive multifunctional nanoformulation for the targeted delivery of floxuridine in esterase-overexpressed cancer cells is reported. Photopolymerization of floxuridine-tethered lipoic acid results in the formation of amphiphilic floxuridine-tethered poly(disulfide). Self-assembly of the amphiphilic polymer results in the formation of nanoparticles with floxuridine decorated on the surfaces of the particles. Integration of aptamer DNA for nucleolin onto the surface of the nanoparticle is demonstrated by exploring the base-pairing interaction of floxuridine with adenine. Targeted internalization of the aptamer-decorated nanoparticle into nucleolin-expressed cancer cells is demonstrated. Esterase triggered cleavage of the ester bond connecting floxuridine with the polymer backbone, and the subsequent targeted delivery of floxuridine into cancer cells is also shown. Excellent therapeutic efficacy is observed both in vitro and also in the 3D tumor spheroid model. This noncovalent strategy provides a simple yet effective strategy for the targeted delivery of floxuridine into cancer cells in a less laborious fashion.


Asunto(s)
Antineoplásicos , Esterasas , Floxuridina , Nanopartículas , Humanos , Esterasas/metabolismo , Nanopartículas/química , Antineoplásicos/química , Antineoplásicos/farmacología , Floxuridina/química , Floxuridina/farmacología , Floxuridina/administración & dosificación , Tamaño de la Partícula , Ensayo de Materiales , Materiales Biocompatibles/química , Materiales Biocompatibles/farmacología , Materiales Biocompatibles/síntesis química , Ensayos de Selección de Medicamentos Antitumorales , Supervivencia Celular/efectos de los fármacos , Estructura Molecular , Proliferación Celular/efectos de los fármacos , Sistemas de Liberación de Medicamentos , Línea Celular Tumoral
5.
Nanoscale ; 16(34): 16195-16203, 2024 Aug 29.
Artículo en Inglés | MEDLINE | ID: mdl-39140185

RESUMEN

Synergetic combination therapy is emerging as one of the most promising approaches for cancer treatment. Among the various therapeutic approaches, PDT has received particular attention due to its non-invasive nature. However, the therapeutic performance of PDT is severely affected by tumour hypoxia. Herein, we report a supramolecular strategy for the fabrication of a PDT-active 2D nanosheet loaded with a POD mimicking DNAzyme for the synergetic combination of PDT and CDT for targeted cancer therapy. Assembly of biotin-functionalized BODIPY (1) and cationic ß-cyclodextrin (ß-CD+) leads to the formation of a 1/ß-CD+ nanosheet with positively charged ß-CD+ on the surface of the sheet. The cationic face of the 1/ß-CD+ sheet was then loaded with a POD-mimicking Hem-loaded G-quadruplex aptamer (Hem/DNA1) via electrostatic interactions (1/ß-CD+/Hem/DNA1). Cellular internalization of the 1/ß-CD+/Hem/DNA1 nanosheet occurs via a receptor-mediated endocytic pathway, which then undergoes lysosomal escape. Subsequently, Hem/DNA1 on the surface of 1/ß-CD+/Hem/DNA1 reacts with endogenous H2O2via the Fenton pathway to produce ˙OH and O2. Moreover, under cellular conditions, Hem inside the 1/ß-CD+/Hem/DNA1 nanosheet produces Fe2+, which then undergoes another Fenton reaction to produce ˙OH and O2. The Fe3+ generated after the Fenton reaction is then reduced in situ to Fe2+ by glutathione for the next Fenton cycle. At the same time, photoirradiation of the 1/ß-CD+ nanosheet using a 635 nm laser produces 1O2via the PDT pathway by using endogenous O2. The most remarkable feature of the present nanoformulation is the cooperativity in its therapeutic action, wherein O2 produced during the CDT pathway was used by the 1/ß-CD+ sheet for improving its PDT efficacy in the hypoxic tumor microenvironment. This work represents a unique combination of CDT and PDT for targeted cancer therapy, wherein the CDT action of the nanoagent enhances the PDT efficacy and we strongly believe that this approach would encourage researchers to design similar combination therapy for advancements in the treatment of cancer.


Asunto(s)
Hemina , Nanoestructuras , Fotoquimioterapia , beta-Ciclodextrinas , Humanos , beta-Ciclodextrinas/química , Nanoestructuras/química , Nanoestructuras/uso terapéutico , Hemina/química , G-Cuádruplex , Animales , Ratones , Fármacos Fotosensibilizantes/química , Fármacos Fotosensibilizantes/uso terapéutico , Fármacos Fotosensibilizantes/farmacología , Línea Celular Tumoral , Aptámeros de Nucleótidos/química , Aptámeros de Nucleótidos/farmacología , Compuestos de Boro/química , Compuestos de Boro/farmacología , Neoplasias/tratamiento farmacológico , Neoplasias/patología , Neoplasias/metabolismo
6.
Adv Healthc Mater ; 13(20): e2400256, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38669674

RESUMEN

Cancer is indisputably one of the major threats to mankind, and hence the design of new approaches for the improvement of existing therapeutic strategies is always wanted. Herein, the design of a tumor microenvironment-responsive, DNA-based chemodynamic therapy (CDT) nanoagent with dual Fenton reaction centers for targeted cancer therapy is reported. Self-assembly of DNA amphiphile containing copper complex as the hydrophobic Fenton reaction center results in the formation of CDT-active DNAsome with Cu2+-based Fenton catalytic site as the hydrophobic core and hydrophilic ssDNA protrude on the surface. DNA-based surface addressability of the DNAsome is then used for the integration of second Fenton reaction center, which is a peroxidase-mimicking DNAzyme noncovalently loaded with Hemin and Doxorubicin, via DNA hybridization to give a CDT agent having dual Fenton reaction centers. Targeted internalization of the CDT nanoagent and selective generation of •OH inside HeLa cell are also shown. Excellent therapeutic efficiency is observed for the CDT nanoagent both in vitro and in vivo, and the enhanced efficacy is attributed to the combined and synergetic action of CDT and chemotherapy.


Asunto(s)
ADN Catalítico , Doxorrubicina , Humanos , Células HeLa , Doxorrubicina/química , Doxorrubicina/farmacología , ADN Catalítico/química , ADN Catalítico/metabolismo , Animales , Neoplasias/tratamiento farmacológico , Neoplasias/metabolismo , G-Cuádruplex/efectos de los fármacos , Ratones , Cobre/química , Microambiente Tumoral/efectos de los fármacos , Ratones Desnudos
7.
Nanoscale ; 16(7): 3755-3763, 2024 Feb 15.
Artículo en Inglés | MEDLINE | ID: mdl-38299362

RESUMEN

The therapeutic outcome of chemodynamic therapy (CDT) is greatly hindered by the presence of oxidative damage repair proteins (MTH1) inside cancer cells. These oxidative damage repair proteins detoxify the action of radicals generated by Fenton or Fenton-like reactions. Hence, it is extremely important to develop a simple strategy for the downregulation of MTH1 protein inside cancer cells along with the delivery of metal ions into cancer cells. A one-pot host-guest supramolecular approach for the codelivery of MTH1 siRNA and metal ions into a cancer cell is reported. Our approach involves the fabrication of an inclusion complex between cationic ß-cyclodextrin and a ferrocene prodrug, which spontaneously undergoes amphiphilicity-driven self-assembly to form spherical nanoparticles (NPs) having a positively charged surface. The cationic surface of the NPs was then explored for the loading of MTH1 siRNA through electrostatic interactions. Using HeLa cells as a representative example, efficient uptake of the NPs, delivery of MTH1 siRNA and the enhanced CDT of the nanoformulation are demonstrated. This work highlights the potential of the supramolecular approach as a simple yet efficient method for the delivery of siRNA across the cell membrane for enhanced chemodynamic therapy.


Asunto(s)
Ciclodextrinas , Compuestos Ferrosos , Nanopartículas , Neoplasias , Humanos , ARN Interferente Pequeño , Células HeLa , Metalocenos/farmacología , Nanopartículas/uso terapéutico , Cationes , Línea Celular Tumoral , Neoplasias/tratamiento farmacológico , Neoplasias/metabolismo , Peróxido de Hidrógeno/uso terapéutico
9.
Nanoscale ; 15(20): 8972-8977, 2023 May 25.
Artículo en Inglés | MEDLINE | ID: mdl-37132404

RESUMEN

A supramolecular approach for the design of assembly-disassembly-driven 19F ON/OFF nanoparticles, triggered by specific molecular recognition, for the detection of DNA binding cancer biomarkers is reported. The key to our design strategy is the characteristic 19F NMR signal of the probe, which completely vanishes in the aggregated state due to the shortening of T2 relaxation. However, molecular recognition of DNA by the cancer biomarkers through specific molecular recognition results in the disassembly of the nanoparticles, which causes the restoration of the characteristic 19F signal of the probe. The universal nature of the approach is demonstrated through the selective detection of various cancer biomarkers including miRNA, ATP, thrombin, and telomerase.


Asunto(s)
Técnicas Biosensibles , Nanopartículas , Neoplasias , Humanos , Neoplasias/diagnóstico , Imagen por Resonancia Magnética , Espectroscopía de Resonancia Magnética , Nanopartículas/química , ADN/química , Técnicas Biosensibles/métodos
10.
RSC Adv ; 11(32): 19856-19863, 2021 May 27.
Artículo en Inglés | MEDLINE | ID: mdl-35479242

RESUMEN

Two-component organogels offer several advantages over one-component gels, but their design is highly challenging. Hence, it is extremely important to design new approaches for the crafting of two-component organogels with interesting optical and mechanical properties. Herein, we report the design of a new class of two-component supergelators obtained from the assembly between acid functionalized tetraphenylethylene (TPE)-based dendrons and alkylated melamine. No gelation behaviour is observed for the individual components, but interestingly, remarkable gelation behaviour is observed for their hydrogen-bonded complex. The primary driving force responsible for the gelation is the strong π-π stacking interaction of TPE units. Because of the strong π-stacking of TPEs in the gel state, the C(sp2)-C(sp2) bond rotation of the TPE segment is completely arrested in the gel state, which results in intense fluorescence emission of the gels. Furthermore, excellent elastic response is observed for the gels as evident from their high storage modulus compared to loss modulus values. Our results clearly demonstrate that by the appropriate selection of the molecular components, this approach can be applied for the creation of functional nanomaterials with emergent properties absent in the individual blocks.

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