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1.
ACS Nano ; 18(20): 13019-13034, 2024 May 21.
Article En | MEDLINE | ID: mdl-38723021

Photodynamic therapy (PDT) and photothermal therapy (PTT) possess different merits in cancer phototherapy, but the tumor microenvironment becomes unfavorable during the phototheranostic progress. Herein, we report a self-adaptive cyanine derivative Cy5-TPA with the PDT-dominated state to PTT-dominated state autoswitch feature for enhanced photoimmunotherapy. The incorporation of rotatable triphenylamine (TPA) moiety renders Cy5-TPA with the temperature or intramolecular-motion regulated photoactivities, which shows preferable reactive oxygen species (ROS) generation at lower temperature while stronger photothermal conversion at higher ones. Such a promising feature permits the in situ switch from PDT-dominated state to PTT-dominated state along with intratumoral temperature increase during laser irradiation, which also works in line with the concurrently reduced intratumoral oxygen level, exhibiting a self-adaptive phototherapeutic behavior to maximize the phototherapeutic antitumor outcome. Most importantly, the self-adaptive PDT-dominated state to PTT-dominated state switch also facilitates the sequential generation and release of damage-associated molecular patterns during immunogenic cell death (ICD). Hence, Cy5-TPA demonstrates excellent photoimmunotherapy performance in ICD induction, dendritic cell maturation, and T cell activation for tumor eradication and metastasis inhibition.


Immunotherapy , Photochemotherapy , Photosensitizing Agents , Reactive Oxygen Species , Animals , Mice , Photosensitizing Agents/pharmacology , Photosensitizing Agents/chemistry , Reactive Oxygen Species/metabolism , Antineoplastic Agents/pharmacology , Antineoplastic Agents/chemistry , Humans , Photothermal Therapy , Mice, Inbred BALB C , Carbocyanines/chemistry , Carbocyanines/pharmacology , Cell Line, Tumor , Female , Tumor Microenvironment/drug effects
2.
Spectrochim Acta A Mol Biomol Spectrosc ; 316: 124324, 2024 Aug 05.
Article En | MEDLINE | ID: mdl-38676983

Antibiotic-free therapies are highly needed due to the limited success of conventional approaches especially against biofilm related infections. In this direction, antimicrobial phototherapy, either in the form of antimicrobial photothermal therapy (aPTT) or antimicrobial photodynamic therapy (aPDT), have appeared to be highly promising candidates in recent years. These are local and promising approaches for antibiotic resistant bacterial infections and biofilms. Organic small photosensitizers (PSs) are extensively preferred in antimicrobial phototherapy applications as they offer a great opportunity to combine therapeutic action (aPTT, aPDT or both) with fluorescence imaging on a single molecule. In this study, the bactericidal effect of cationic chlorinated hemicyanine (Cl-Hem)-based type I PS, which can function as a dual aPDT/aPTT agent, was investigated on both planktonic cells and biofilms of different gram-positive (E. faecalis and S. epidermidis) and gram-negative bacteria (P. aeruginosa and K. pneumoniae) with and without 640 nm laser irradiation. Cl-Hem was shown to induce a selective phototheranostic activity against gram-positive bacteria (E. faecalis and S. epidermidis). Cl-Hem exhibited both dose and laser irradiation time dependent bactericidal effect on planktonic and biofilms of S. epidermidis. These results clearly showed that highly potent Cl-Hem can treat resistant microbial infections, while allowing fluorescence detection at the same time. High biofilm reduction observed with combined aPDT/aPTT action of Cl-Hem together with its non-cytotoxic nature points out that Cl-Hem is a promising PS for antibacterial and antibiofilm treatments.


Anti-Bacterial Agents , Biofilms , Gram-Positive Bacteria , Halogenation , Microbial Sensitivity Tests , Biofilms/drug effects , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/chemistry , Gram-Positive Bacteria/drug effects , Gram-Positive Bacteria/physiology , Photosensitizing Agents/pharmacology , Photosensitizing Agents/chemistry , Carbocyanines/chemistry , Carbocyanines/pharmacology , Humans
3.
Medicine (Baltimore) ; 103(8): e37015, 2024 Feb 23.
Article En | MEDLINE | ID: mdl-38394536

BACKGROUND: Peptidyl (protein) arginine deiminases (PADs) provide the transformation of peptidyl arginine to peptidyl citrulline in the presence of calcium with posttranslational modification. The dysregulated PAD activity plays an important role on too many diseases including also the cancer. In this study, it has been aimed to determine the potential cytotoxic and apoptotic activity of chlorine-amidine (Cl-amidine) which is a PAD inhibitor and whose effectiveness has been shown in vitro and in vivo studies recently on human glioblastoma cell line Uppsala 87 malignant glioma (U-87 MG) forming an in vitro model for the glioblastoma multiforme (GBM) which is the most aggressive and has the highest mortality among the brain tumors. METHODS: In the study, the antiproliferative and apoptotic effects of Cl-amidine on GBM cancer model were investigated. The antiproliferative effects of Cl-amidine on U-87 MG cells were determined by 4-[3-(4-iodophenyl)-2-(4-nitrophenyl)-2H-5-tetrazolio]-1,3-benzene disulfonate method at the 24th and 48th hours. The apoptotic effects were analyzed by Annexin V and Propidium iodide staining, caspase-3 activation, and mitochondrial membrane polarization (5,5', 6,6'-tetrachloro-1,1', 3,3' tetraethyl benzimidazolyl carbocyanine iodide) methods in the flow cytometry. RESULTS: It has been determined that Cl-amidine exhibits notable antiproliferative properties on U-87 MG cell line in a time and concentration-dependent manner, as determined through the 4-[3-(4-iodophenyl)-2-(4-nitrophenyl)-2H-5-tetrazolio]-1,3-benzene disulfonate assay. Assessment of apoptotic effects via Annexin V and Propidium iodide staining and 5,5', 6,6'-tetrachloro-1,1', 3,3' tetraethyl benzimidazolyl carbocyanine iodide methods has revealed significant efficacy, particularly following a 24-hour exposure period. It has been observed that Cl-amidine induces apoptosis in cells by enhancing mitochondrial depolarization, independently of caspase-3 activation. Furthermore, regarding its impact on healthy cells, it has been demonstrated that Cl-amidine shows lower cytotoxic effects when compared to carmustine, an important therapeutic agent for glioblastoma. CONCLUSION: The findings of this study have shown that Cl-amidine exhibits significant potential as an anticancer agent in the treatment of GBM. This conclusion is based on its noteworthy antiproliferative and apoptotic effects observed in U-87 MG cells, as well as its reduced cytotoxicity toward healthy cells in comparison to existing treatments. We propose that the antineoplastic properties of Cl-amidine should be further investigated through a broader spectrum of cancer cell types. Moreover, we believe that investigating the synergistic interactions of Cl-amidine with single or combination therapies holds promise for the discovery of novel anticancer agents.


Antineoplastic Agents , Glioblastoma , Nitrophenols , Ornithine/analogs & derivatives , Humans , Chlorine , Glioblastoma/metabolism , Annexin A5 , Benzene , Carbocyanines/pharmacology , Caspase 3/metabolism , Iodides/metabolism , Iodides/pharmacology , Propidium , Protein-Arginine Deiminases/metabolism , Protein-Arginine Deiminases/pharmacology , Antineoplastic Agents/pharmacology , Cell Line, Tumor , Amidines/pharmacology , Arginine/metabolism , Apoptosis
4.
Adv Healthc Mater ; 13(11): e2303667, 2024 Apr.
Article En | MEDLINE | ID: mdl-38178648

Currently, cisplatin resistance has been recognized as a multistep cascade process for its clinical chemotherapy failure. Hitherto, it remains challenging to develop a feasible and promising strategy to overcome the cascade drug resistance (CDR) issue for achieving fundamentally improved chemotherapeutic efficacy. Herein, a novel self-assembled nanoagent is proposed, which is constructed by Pt(IV) prodrug, cyanine dye (cypate), and gadolinium ion (Gd3+), for systematically conquering the cisplatin resistance by employing near-infrared (NIR) light activated mild-temperature hyperthermia in tumor targets. The proposed nanoagents exhibit high photostability, GSH/H+-responsive dissociation, preferable photothermal conversion, and enhanced cellular uptake performance. In particular, upon 785-nm NIR light irradiation, the generated mild temperature of ≈ 43 °C overtly improves the cell membrane permeability and drug uptake, accelerates the disruption of intracellular redox balance, and apparently enhances the formation of Pt-DNA adducts, thereby effectively overcoming the CDR issue and achieves highly improved therapeutic efficacy for cisplatin-resistant tumor ablation.


Cisplatin , Drug Resistance, Neoplasm , Hyperthermia, Induced , Indoles , Propionates , Cisplatin/pharmacology , Cisplatin/chemistry , Drug Resistance, Neoplasm/drug effects , Humans , Animals , Hyperthermia, Induced/methods , Mice , Cell Line, Tumor , Infrared Rays , Gadolinium/chemistry , Gadolinium/pharmacology , Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacology , Prodrugs/chemistry , Prodrugs/pharmacology , Mice, Inbred BALB C , Neoplasms/therapy , Neoplasms/drug therapy , Neoplasms/pathology , Mice, Nude , Carbocyanines/chemistry , Carbocyanines/pharmacology
5.
Cell Tissue Bank ; 25(1): 285-294, 2024 Mar.
Article En | MEDLINE | ID: mdl-36617377

To investigate the characteristics of multilineage-differentiating stress-enduring (Muse) cells labeled with chloromethyl dialkylcarbocyanine (CM-Dil) in culture and in skin wounds of rats. Normal human dermal fibroblasts (NHDFs) were obtained from foreskins and were confirmed by immunocytochemistry with vimentin. Muse cells were derived from NHDFs using long-term trypsinization (LTT), were confirmed using immunocytochemistry with antibodies against stage specific embryonic antigen-3 (SSEA-3) and CD105 and were expanded in suspension cultures. The Muse cells were labeled with CM-Dil and were further evaluated with respect to their biological properties using CCK-8 assays and scratch tests. One hundred µl CM-Dil-labeled Muse cells at a concentration of 5 × 103/µl were injected subcutaneously at the edges of skin wounds in adult male SD rats. At weeks 1, 3 and 5 after the injection, the distribution of CM-Dil-labeled Muse cells in skin tissues was observed using immunofluorescence microscopy. Muse cells were double-positive for CD105 and SSEA-3. ALP staining of the M-clusters were positive and they displayed orange-red fluorescence after labelling with CM-Dil, which had no adverse effects on their viability, migration or differentiation capacity. One week after the subcutaneous injection of CM-Dil-labeled Muse cells, many cells with orange-red fluorescence were observed at the edges of the skin injuries; those fluorescent spots gradually decreased over time, and only a few Muse cells with fluorescence could be detected by week 5. CM-Dil can be used to label Muse cells without affecting their proliferation, migration or differentiation, and can be used for short-term tracking of Muse cells for the treatment of skin wounds in a rat model.


Alprostadil , Rats , Male , Humans , Animals , Alprostadil/pharmacology , Rats, Sprague-Dawley , Cell Differentiation , Carbocyanines/pharmacology
6.
ChemMedChem ; 17(9): e202100780, 2022 05 04.
Article En | MEDLINE | ID: mdl-35128814

We designed and synthesized two heptamethine cyanine-based theranostic probes that aimed to target COX-2 in cancer cells. One is I-IR799-CXB, in which I-IR799 is conjugated to the COX-2-specific inhibitor, celecoxib, and another is I-IR799-IMC, where the non-selective COX inhibitor, indomethacin, was used. I-IR799 is a heptamethine cyanine derivative that can be activated by near-infrared light for photodynamic therapy (PDT) purposes. I-IR799-CXB and I-IR799-IMC were tested for their cancer-targeting capacity and photodynamic efficiency toward hepatocellular carcinoma (HepG2) cells relative to normal liver cells, alpha mouse liver 12 (AML12) cells. Interestingly, after conjugation, I-IR799-IMC exhibited better tumour targetability and PDT efficiency than I-IR799-CXB.


Neoplasms , Photochemotherapy , Animals , Carbocyanines/pharmacology , Coloring Agents , Cyclooxygenase 2 , Fluorescent Dyes/pharmacology , Mice
7.
Molecules ; 27(3)2022 Jan 27.
Article En | MEDLINE | ID: mdl-35164144

The CDK4/6 inhibitor palbociclib, combined with endocrine therapy, has been shown to be effective in postmenopausal women with estrogen receptor-positive, HER2-negative advanced or metastatic breast cancer. However, palbociclib is not as effective in the highly aggressive, triple-negative breast cancer that lacks sensitivity to chemotherapy or endocrine therapy. We hypothesized that conjugation of the near-infrared dye MHI-148 with palbociclib can produce a potential theranostic in triple-negative, as well as estrogen receptor-positive, breast cancer cells. In our study, the conjugate was found to have enhanced activity in all mammalian cell lines tested in vitro. However, the conjugate was cytotoxic and did not induce G1 cell cycle arrest in breast cancer cells, suggesting its mechanism of action differs from the parent compound palbociclib. The study highlights the importance of investigating the mechanism of conjugates of near-infrared dyes to therapeutic compounds, as conjugation can potentially result in a change of mechanism or target, with an enhanced cytotoxic effect in this case.


Antineoplastic Agents , Breast Neoplasms/drug therapy , Carbocyanines , Cytotoxins , Indoles , Piperazines , Pyridines , Animals , Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacology , Breast Neoplasms/metabolism , CHO Cells , Carbocyanines/chemistry , Carbocyanines/pharmacology , Cricetulus , Cytotoxins/chemistry , Cytotoxins/pharmacology , Female , HEK293 Cells , Humans , Indoles/chemistry , Indoles/pharmacology , Piperazines/chemistry , Piperazines/pharmacology , Pyridines/chemistry , Pyridines/pharmacology
8.
Angew Chem Int Ed Engl ; 61(1): e202109769, 2022 01 03.
Article En | MEDLINE | ID: mdl-34725904

Ibrutinib is an inhibitor of Bruton's tyrosine kinase that has been approved for the treatment of patients with chronic lymphocytic leukemia, mantle cell lymphoma and Waldenstrom's macroglobulinemia and is connected with toxicities. To minimize its toxicities, we linked ibrutinib to a cell-targeted, internalizing antibody. To this end, we synthesized a poly-anionic derivate, ibrutinib-Cy3.5, that retains full functionality. This anionic inhibitor is complexed by our anti-CD20-protamine targeting conjugate and free protamine, and thereby spontaneously assembles into an electrostatically stabilized vesicular nanocarrier. The complexation led to an accumulation of the drug driven by the CD20 antigen internalization to the intended cells and an amplification of its pharmacological effectivity. In vivo, we observed a significant enrichment of the drug in xenograft lymphoma tumors in immune-compromised mice and a significantly better response to lower doses compared to the original drug.


Adenine/analogs & derivatives , Antibodies, Monoclonal/pharmacology , Antineoplastic Agents/pharmacology , Carbocyanines/pharmacology , Lymphoma, Large B-Cell, Diffuse/drug therapy , Piperidines/pharmacology , Protein Kinase Inhibitors/pharmacology , Adenine/chemistry , Adenine/pharmacology , Animals , Antibodies, Monoclonal/chemistry , Antineoplastic Agents/chemistry , Carbocyanines/chemistry , Cell Proliferation/drug effects , Drug Screening Assays, Antitumor , Humans , Lymphoma, Large B-Cell, Diffuse/pathology , Mice , Neoplasms, Experimental/drug therapy , Neoplasms, Experimental/pathology , Piperidines/chemistry , Protein Engineering , Protein Kinase Inhibitors/chemistry , Static Electricity
9.
FEBS J ; 289(1): 262-278, 2022 01.
Article En | MEDLINE | ID: mdl-34310050

Mitochondria form a branched tubular network in many types of cells, depending on a balance between mitochondrial fusion and fission. How mitochondrial fusion and fission are involved in regulating mitochondrial function and cell proliferation is not well understood. Here, we dissected the roles of mitochondrial fusion and fission in mitochondrial function and cell proliferation in fission yeast. We examined mitochondrial membrane potential by staining cells with DiOC6 and assessed mitochondrial respiration by directly measuring oxygen consumption of cells with a dissolved oxygen respirometer. We found that defects in mitochondrial fission or fusion reduce mitochondrial membrane potential and compromise mitochondrial respiration while the absence of both mitochondrial fusion and fission restores wild type-like respiration, normal membrane potential, and tubular networks of mitochondria. Moreover, we found that the absence of either mitochondrial fission or fusion prolongs the cell cycle and that the absence of both mitochondrial fusion and fission significantly delays cell cycle progression after nitrogen replenishment. The prolonged/delayed cell cycle is likely due to the deregulation of Cdc2 activation. Hence, our work not only establishes an intimate link between mitochondrial morphology and function but also underscores the importance of mitochondrial dynamics in regulating the cell cycle.


DNA Polymerase III/genetics , Membrane Potential, Mitochondrial/genetics , Mitochondria/genetics , Mitochondrial Dynamics/genetics , Saccharomyces cerevisiae Proteins/genetics , Carbocyanines/pharmacology , Cell Cycle/genetics , Cell Division/genetics , Cell Proliferation/genetics , Gene Expression Regulation, Fungal/drug effects , Membrane Potential, Mitochondrial/drug effects , Mitochondria/metabolism , Oxygen Consumption/drug effects , Saccharomyces cerevisiae/genetics
10.
J Cereb Blood Flow Metab ; 42(2): 237-252, 2022 02.
Article En | MEDLINE | ID: mdl-34229512

The increasing use of mechanical thrombectomy in stroke management has opened the window to local intraarterial brain delivery of therapeutic agents. In this context, the use of nanomedicine could further improve the delivery of new treatments for specific brain targeting, tracking and guidance. In this study we take advantage of this new endovascular approach to deliver biocompatible poly(D-L-lactic-co-glycolic acid) (PLGA) nanocapsules functionalized with superparamagnetic iron oxide nanoparticles and Cy7.5 for magnetic targeting, magnetic resonance and fluorescent molecular imaging. A complete biodistribution study in naïve (n = 59) and ischemic (n = 51) mice receiving intravenous or intraarterial nanocapsules, with two different magnet devices and imaged from 30 min to 48 h, showed an extraordinary advantage of the intraarterial route for brain delivery with a specific improvement in cortical targeting when using a magnetic device in both control and ischemic conditions. Safety was evaluated in ischemic mice (n = 69) showing no signs of systemic toxicity nor increasing mortality, infarct lesions or hemorrhages. In conclusion, the challenging brain delivery of therapeutic nanomaterials could be efficiently and safely overcome with a controlled endovascular administration and magnetic targeting, which could be considered in the context of endovascular interventions for the delivery of multiple treatments for stroke.


Carbocyanines , Contrast Media , Magnetic Fields , Magnetic Iron Oxide Nanoparticles/chemistry , Magnetic Resonance Imaging , Nanocapsules , Optical Imaging , Stroke , Animals , Carbocyanines/chemistry , Carbocyanines/pharmacology , Contrast Media/chemistry , Contrast Media/pharmacology , Male , Mice , Mice, Inbred BALB C , Nanocapsules/chemistry , Nanocapsules/therapeutic use , Stroke/diagnostic imaging , Stroke/drug therapy
11.
Biomed Pharmacother ; 145: 112469, 2022 Jan.
Article En | MEDLINE | ID: mdl-34864315

Cancer and atherosclerosis are chronic diseases that share common characteristics at both early and advanced stages and can arise from multiple factors. Both diseases are characterized by uncontrolled cell proliferation, inflammation, angiogenesis and apoptosis. Herein we investigated the ability of a peptide (CTHRSSVVC), that was previously reported to bind atherosclerotic lesions to home in the tumor microenvironment. The CTHRSSVVC peptide was synthesized on solid phase and N-terminally labeled with a sulfo-Cy5 dye. The specific binding to macrophage was evaluated in vitro with flow cytometry and immunofluorescence and in vivo for tumor targeting in BALB/c mice bearing a 4T1 tumor using optical imaging. The sulfo-Cy5-CTHRSSVVC peptide was synthesized in greater than 99% purity. No selective binding of the sulfo-Cy5-CTHRSSVVC peptide to macrophages in vitro was observed, however in vivo the sulfo-Cy5-CTHRSSVVC peptide accumulated in the 4T1 tumor, with a tumor-to-normal tissue ratio of 7.21 ± 1.44 at 2 h post injection. Ex vivo analysis of tumor tissue by confocal microscopy suggested that the sulfo-Cy5-CTHRSSVVC peptide had accumulated in the stroma of the tumor specifically, in regions of spindle shaped cells. In conclusion, although the target for the sulfo-Cy5-CTHRSSVVC peptide remains to be identified, the Cy5-CTHRSSVVC peptide warrants further investigation as a tumor imaging agent.


Antigens, CD/analysis , Antigens, Differentiation, Myelomonocytic/analysis , Macrophages/immunology , Neoplasms/diagnostic imaging , Peptides , Plaque, Atherosclerotic/diagnostic imaging , Receptors, Cell Surface/analysis , Animals , Carbocyanines/pharmacology , Disease Models, Animal , Fluorescent Antibody Technique , Fluorescent Dyes/pharmacology , Humans , Immunohistochemistry , Mice , Optical Imaging/methods , Peptides/chemical synthesis , Peptides/chemistry , Peptides/metabolism , Peptides/pharmacology , Protein Binding , Receptors, Scavenger/analysis , THP-1 Cells
12.
ACS Appl Mater Interfaces ; 13(48): 56825-56837, 2021 Dec 08.
Article En | MEDLINE | ID: mdl-34825820

Because of the blood-brain barrier and the high infiltration of glioma cells, the diagnostic accuracy and treatment efficiency of gliomas are still facing challenges. There is an urgent need to explore the integration of diagnostic and therapeutic methods to achieve an accurate diagnosis, guide surgery, and inhibit postoperative recurrence. In this work, we developed a macrophage loaded with a photothermal nanoprobe (MFe3O4-Cy5.5), which is able to cross the blood-brain barrier and accumulate into deep gliomas to achieve multimodal imaging and guided glioma surgery purposes. With desirable probing depth and high signal-to-noise ratio, Fe3O4-Cy5.5 can perform fluorescence, photoacoustic, and magnetic resonance imaging, which can distinguish brain tumors from the surrounding normal tissues and accurately guide glioma resection. Meanwhile, Fe3O4-Cy5.5 can effectively induce local photothermal therapy and inhibit the recurrence of glioma after surgery. These results demonstrate that the macrophage-mediated Fe3O4-Cy5.5, which can achieve a multimodal diagnosis, accurate imaging-guided surgery, and effective photothermal therapy, is a promising nanoplatform for gliomas.


Biomimetic Materials/pharmacology , Brain Neoplasms/therapy , Carbocyanines/pharmacology , Glioma/therapy , Magnetite Nanoparticles/chemistry , Photothermal Therapy , Animals , Biomimetic Materials/chemical synthesis , Biomimetic Materials/chemistry , Blood-Brain Barrier/drug effects , Brain Neoplasms/diagnostic imaging , Carbocyanines/chemistry , Glioma/diagnostic imaging , Humans , Macrophages/drug effects , Male , Materials Testing , Multimodal Imaging , Neoplasms, Experimental/diagnostic imaging , Neoplasms, Experimental/therapy , Particle Size , Porosity , Rats , Rats, Sprague-Dawley , Tumor Cells, Cultured
13.
Proc Natl Acad Sci U S A ; 118(41)2021 10 12.
Article En | MEDLINE | ID: mdl-34607961

Lysosomes adopt dynamic, tubular states that regulate antigen presentation, phagosome resolution, and autophagy. Tubular lysosomes are studied either by inducing autophagy or by activating immune cells, both of which lead to cell states where lysosomal gene expression differs from the resting state. Therefore, it has been challenging to pinpoint the biochemical properties lysosomes acquire upon tubulation that could drive their functionality. Here we describe a DNA-based assembly that tubulates lysosomes in macrophages without activating them. Proteolytic activity maps at single-lysosome resolution revealed that tubular lysosomes were less degradative and showed proximal to distal luminal pH and Ca2+ gradients. Such gradients had been predicted but never previously observed. We identify a role for tubular lysosomes in promoting phagocytosis and activating MMP9. The ability to tubulate lysosomes without starving or activating immune cells may help reveal new roles for tubular lysosomes.


DNA/chemistry , Lysosomes/metabolism , Macrophages/immunology , Matrix Metalloproteinase 9/metabolism , Phagocytosis/physiology , Animals , Aptamers, Nucleotide/pharmacology , Autophagy/physiology , COS Cells , Calcium/metabolism , Carbocyanines/pharmacology , Cell Line, Tumor , Chlorocebus aethiops , Hep G2 Cells , Humans , Lysosomes/drug effects , Mice , Nanocomposites/chemistry , Phagosomes/metabolism , RAW 264.7 Cells
14.
J Nanobiotechnology ; 19(1): 334, 2021 Oct 24.
Article En | MEDLINE | ID: mdl-34689764

Herein, an unprecedented synergistic strategy for the development of high-performance NIR-II fluorophore is proposed and validated. Based on an unsymmetrical cyanine dye design strategy, the NIR-II emissive dye NIC was successfully developed by replacing only one of the indoline donors of symmetrical cyanine dye ICG with a fully conjugated benz[c,d]indole donor. This minor structural change maximally maintains the high extinction coefficient advantage of cyanine dyes. NIC-ER with endogenous albumin-hitchhiking capability was constructed to further enhance its in vivo fluorescence brightness. In the presence of HSA (Human serum albumin), NIC-ER spontaneously resides in the albumin pocket, and a brilliant ~89-fold increase in fluorescence was observed. Due to its high molar absorptivity and moderate quantum yield, NIC-ER in HSA exhibits bright NIR-II emission with high photostability and significant Stokes shift (>110 nm). Moreover, NIC-ER was successfully employed for tumor-targeted NIR-II/PA imaging and efficient photothermal tumor elimination. Overall, our strategy may open up a new avenue for designing and constructing high-performance NIR-II fluorophores.


Carbocyanines , Coloring Agents , Photoacoustic Techniques/methods , Photothermal Therapy/methods , Spectroscopy, Near-Infrared/methods , Albumins/metabolism , Animals , Carbocyanines/chemistry , Carbocyanines/metabolism , Carbocyanines/pharmacology , Cell Line, Tumor , Coloring Agents/chemistry , Coloring Agents/metabolism , Coloring Agents/pharmacology , Mice , Mice, Nude , Neoplasms, Experimental/metabolism , Neoplasms, Experimental/pathology
15.
Chem Commun (Camb) ; 57(72): 9100-9103, 2021 Sep 09.
Article En | MEDLINE | ID: mdl-34498645

A rigid hemicyanine CSZ-J and a flexible molecule ESZ-J were synthesized. In particular, the conformationally restrained CSZ-J had higher fluorescence quantum yields, longer fluorescence lifetimes and higher triplet state quantum yields. CSZ-J could generate highly cytotoxic ROS simultaneously via type I and type II processes. This will contribute to the design and development of new photosensitizers in the future.


Antineoplastic Agents/pharmacology , Carbocyanines/pharmacology , Photochemotherapy , Photosensitizing Agents/pharmacology , Antineoplastic Agents/chemistry , Carbocyanines/chemistry , Cell Proliferation/drug effects , Cell Survival/drug effects , Drug Screening Assays, Antitumor , Humans , MCF-7 Cells , Molecular Conformation , Photosensitizing Agents/chemistry , Reactive Oxygen Species/metabolism
16.
J Am Chem Soc ; 143(31): 12345-12354, 2021 08 11.
Article En | MEDLINE | ID: mdl-34323480

Heavy-atom-based photosensitizers usually exhibit shortened triplet-state lifetimes, which is not ideal for hypoxic tumor photodynamic therapy. Although several heavy-atom-free photosensitizers possess long triplet-state lifetimes, the clinical applicability is limited by their short excitation wavelengths, poor photon capture abilities, and intrinsically hydrophobic structures. Herein we developed a novel NIR heavy-atom-free photosensitizer design strategy by introducing sterically bulky and electron-rich moieties at the meso position of the pentamethine cyanine (Cy5) skeleton, which simultaneously enhanced intersystem crossing (ISC) and prolonged excited-state lifetime. We found that the 1O2 generation ability is directly correlated to the electron-donating ability of the meso substituent in cyanine, and the excited-state lifetime was simultaneously much elongated when the substituents were anthracene derivatives substituted at the 9-position. Our star compound, ANOMe-Cy5, exhibits intense NIR absorption, the highest 1O2 quantum yield (4.48-fold higher than Cy5), the longest triplet-state lifetime (9.80-fold longer than Cy5), and lossless emission intensity (nearly no change compared with Cy5). Such excellent photophysical properties coupled with its inherently cationic and hydrophilic nature enable the photosensitizer to realize photoablation of solid tumor and antitumor lung metastasis. This study highlights the design of a new generation of NIR photosensitizers for imaging-guided photodynamic cancer treatment.


Antineoplastic Agents/pharmacology , Carbocyanines/pharmacology , Fluorescent Dyes/pharmacology , Photochemotherapy , Photosensitizing Agents/pharmacology , Animals , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/chemistry , Carbocyanines/chemical synthesis , Carbocyanines/chemistry , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Survival/drug effects , Density Functional Theory , Drug Screening Assays, Antitumor , Fluorescent Dyes/chemical synthesis , Fluorescent Dyes/chemistry , Mammary Neoplasms, Experimental/drug therapy , Mammary Neoplasms, Experimental/metabolism , Mammary Neoplasms, Experimental/pathology , Mice , Mice, Inbred BALB C , Molecular Structure , Photosensitizing Agents/chemical synthesis , Photosensitizing Agents/chemistry
17.
Angew Chem Int Ed Engl ; 60(41): 22441-22446, 2021 10 04.
Article En | MEDLINE | ID: mdl-34293228

Precise control of blood clotting and rapid reversal of anticoagulation are essential in many clinical situations. We were successful in modifying a thrombin-binding aptamer with a red-light photocleavable linker derived from Cy7 by Cu-catalyzed Click chemistry. We were able to show that we can successfully deactivate the modified aptamer with red light (660 nm) even in human blood-restoring the blood's natural coagulation capability.


Anticoagulants/pharmacology , Benzothiazoles/pharmacology , Blood Coagulation/drug effects , Carbocyanines/pharmacology , Light , Anticoagulants/chemistry , Benzothiazoles/chemistry , Carbocyanines/chemistry , Humans , Molecular Structure
18.
Molecules ; 26(14)2021 Jul 19.
Article En | MEDLINE | ID: mdl-34299628

We performed an X-ray crystallographic study of complexes of protein kinase PIM-1 with three inhibitors comprising an adenosine mimetic moiety, a linker, and a peptide-mimetic (d-Arg)6 fragment. Guided by the structural models, simplified chemical structures with a reduced number of polar groups and chiral centers were designed. The developed inhibitors retained low-nanomolar potency and possessed remarkable selectivity toward the PIM kinases. The new inhibitors were derivatized with biotin or fluorescent dye Cy5 and then applied for the detection of PIM kinases in biochemical solutions and in complex biological samples. The sandwich assay utilizing a PIM-2-selective detection antibody featured a low limit of quantification (44 pg of active recombinant PIM-2). Fluorescent probes were efficiently taken up by U2OS cells and showed a high extent of co-localization with PIM-1 fused with a fluorescent protein. Overall, the developed inhibitors and derivatives represent versatile chemical tools for studying PIM function in cellular systems in normal and disease physiology.


Fluorescent Dyes , Molecular Imaging , Peptidomimetics , Protein Kinase Inhibitors , Proto-Oncogene Proteins c-pim-1 , Carbocyanines/chemistry , Carbocyanines/pharmacology , Cell Line, Tumor , Crystallography, X-Ray , Fluorescent Dyes/chemistry , Fluorescent Dyes/pharmacology , Humans , Peptidomimetics/chemistry , Peptidomimetics/pharmacology , Protein Kinase Inhibitors/chemistry , Protein Kinase Inhibitors/pharmacology , Proto-Oncogene Proteins c-pim-1/antagonists & inhibitors , Proto-Oncogene Proteins c-pim-1/metabolism
19.
Sci Rep ; 11(1): 5209, 2021 03 04.
Article En | MEDLINE | ID: mdl-33664413

Diatom microalgae have great industrial potential as next-generation sources of biomaterials and biofuels. Effective scale-up of their production can be pursued by enhancing the efficiency of their photosynthetic process in a way that increases the solar-to-biomass conversion yield. A proof-of-concept demonstration is given of the possibility of enhancing the light absorption of algae and of increasing their efficiency in photosynthesis by in vivo incorporation of an organic dye which acts as an antenna and enhances cells' growth and biomass production without resorting to genetic modification. A molecular dye (Cy5) is incorporated in Thalassiosira weissflogii diatom cells by simply adding it to the culture medium and thus filling the orange gap that limits their absorption of sunlight. Cy5 enhances diatoms' photosynthetic oxygen production and cell density by 49% and 40%, respectively. Cy5 incorporation also increases by 12% the algal lipid free fatty acid (FFA) production versus the pristine cell culture, thus representing a suitable way to enhance biofuel generation from algal species. Time-resolved spectroscopy reveals Förster Resonance Energy Transfer (FRET) from Cy5 to algal chlorophyll. The present approach lays the basis for non-genetic tailoring of diatoms' spectral response to light harvesting, opening up new ways for their industrial valorization.


Diatoms/genetics , Microalgae/genetics , Oxygen/metabolism , Photosynthesis/genetics , Biofuels , Carbocyanines/pharmacology , Chlorophyll/genetics , Chlorophyll/metabolism , Diatoms/metabolism , Lipids/genetics , Microalgae/metabolism , Sunlight
20.
J Mater Chem B ; 9(11): 2688-2696, 2021 03 21.
Article En | MEDLINE | ID: mdl-33667292

Due to the hydrophobicity of the cyanine dye and the huge conjugated plane, the cyanine dye is prone to H-aggregation in aqueous solution, and the ultraviolet absorption is blue-shifted. Here, a hydrophilic quaternary stereo-specific cyanine (HQS-Cy) dye has been synthesized and polypeptide based nanoparticles have been prepared, which improve the water solubility of the cyanine in two aspects. First, at the molecular level, the sulfonic acid group increases the water solubility of the dye molecule while the dimethyl-ammonium functional group repels the molecule through the charge-charge interaction, destroying the planar characteristics of the cyanine structure, increasing the molecular distance between the dye molecules, and preventing the accumulation of cyanine. Secondly, at the nano-micelle level, the use of amphiphilic polypeptide blocks to encapsulate the dye increases the water solubility of the dye while also increasing its biocompatibility. The HQS-Cy@P NPs prepared by the above methods exhibit the maximum absorption at 985 nm and maximum fluorescence emission at 1050 nm in aqueous solution. HQS-Cy@P exhibits good photothermal stability and significant photothermal conversion efficiency of about 35.5%, and both in vitro and in vivo studies revealed that it is an efficient system for NIR-II imaging-guided photothermal therapy of cancer.


Antineoplastic Agents/pharmacology , Breast Neoplasms/drug therapy , Carbocyanines/pharmacology , Coloring Agents/pharmacology , Photothermal Therapy , Uterine Cervical Neoplasms/drug therapy , Animals , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/chemistry , Breast Neoplasms/diagnostic imaging , Carbocyanines/chemical synthesis , Carbocyanines/chemistry , Cell Line , Cell Proliferation/drug effects , Cell Survival/drug effects , Coloring Agents/chemical synthesis , Coloring Agents/chemistry , Dose-Response Relationship, Drug , Drug Screening Assays, Antitumor , Female , Humans , Infrared Rays , Mammary Neoplasms, Experimental/diagnostic imaging , Mammary Neoplasms, Experimental/drug therapy , Mice , Mice, Inbred BALB C , Molecular Structure , Optical Imaging , Solubility , Uterine Cervical Neoplasms/diagnostic imaging
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