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1.
Acta Pharm Sin B ; 13(5): 1903-1918, 2023 May.
Artículo en Inglés | MEDLINE | ID: mdl-37250157

RESUMEN

Interaction between tumour cells and macrophages enables cancer cells to evade immune detection and clearance by interfering with macrophage phagocytosis. The anti-phagocytic signals regulated by anti-phagocytic proteins are termed "don't eat me" signals; these signals include sialic acid-binding immunoglobulin-type lectin-10 (Siglec-10) and the recently revealed CD24 immune checkpoint (ICP). In this study, we demonstrate that targeting a specific glycan on CD24 exhibits the potential to inhibit ICP. Sambucus nigra agglutinin (SNA), a sialic acid-binding lectin, was employed to block CD24 and to enhance phagocytosis in melanoma tumours. In addition, we prepared SNA-conjugated hollow gold-iron oxide nanoparticles for photothermal therapy of tumours. Our findings show that the combination treatment of SNA-conjugated photothermal nanoparticles and near-infrared exposure successfully augments tumour cell phagocytosis both in vitro and in vivo models.

2.
J Med Chem ; 65(1): 386-408, 2022 01 13.
Artículo en Inglés | MEDLINE | ID: mdl-34982557

RESUMEN

The serine protease inhibitor Rv3364c of Mycobacterium tuberculosis (MTB) is highly expressed in cells during MTB exposure. In this study, we showed that the 12WLVSKF17 motif of Rv3364c interacts with the BAR domain of SNX9 and inhibits endosome trafficking to interact with p47phox, thereby suppressing TLR4 inflammatory signaling in macrophages. Derived from the structure of this Rv3364c peptide motif, 2,4-diamino-6-(4-tert-butylphenyl)-1,3,5-trazine, DATPT as a 12WLVSKF17 peptide-mimetic small molecule has been identified. DATPT can block the SNX9-p47phox interaction in the endosome and suppress reactive oxygen species and inflammatory cytokine production; it demonstrated significant therapeutic effects in a mouse model of cecal ligation and puncture-induced sepsis. DATPT has considerably improved potency, with an IC50 500-fold (in vitro) or 2000-fold (in vivo) lower than that of the 12WLVSKF17 peptide. Furthermore, DATPT shows potent antibacterial activities by reduction in ATP production and leakage of intracellular ATP out of bacteria. These results provide evidence for peptide-derived small molecule DATPT with anti-inflammatory and antibacterial functions for the treatment of sepsis.


Asunto(s)
Antibacterianos/farmacología , Mycobacterium tuberculosis/química , Sepsis/tratamiento farmacológico , Bibliotecas de Moléculas Pequeñas , Nexinas de Clasificación/efectos de los fármacos , Adenosina Trifosfato/metabolismo , Animales , Antibacterianos/química , Citocinas/antagonistas & inhibidores , Endosomas/efectos de los fármacos , Ensayos Analíticos de Alto Rendimiento , Ratones , Ratones Noqueados , Fragmentos de Péptidos/efectos de los fármacos , Especies Reactivas de Oxígeno , Sepsis/microbiología , Inhibidores de Serina Proteinasa/química , Inhibidores de Serina Proteinasa/farmacología , Transducción de Señal/efectos de los fármacos , Nexinas de Clasificación/química
3.
J Am Chem Soc ; 143(36): 14635-14645, 2021 09 15.
Artículo en Inglés | MEDLINE | ID: mdl-34410692

RESUMEN

Antibodies are recognition molecules that can bind to diverse targets ranging from pathogens to small analytes with high binding affinity and specificity, making them widely employed for sensing and therapy. However, antibodies have limitations of low stability, long production time, short shelf life, and high cost. Here, we report a facile approach for the design of luminescent artificial antibodies with nonbiological polymeric recognition phases for the sensitive detection, rapid identification, and effective inactivation of pathogenic bacteria. Transition-metal dichalcogenide (TMD) nanosheets with a neutral dextran phase at the interfaces selectively recognized S. aureus, whereas the nanosheets bearing a carboxymethylated dextran phase selectively recognized E. coli O157:H7 with high binding affinity. The bacterial binding sites recognized by the artificial antibodies were thoroughly identified by experiments and molecular dynamics simulations, revealing the significance of their multivalent interactions with the bacterial membrane components for selective recognition. The luminescent WS2 artificial antibodies could rapidly detect the bacteria at a single copy from human serum without any purification and amplification. Moreover, the MoSe2 artificial antibodies selectively killed the pathogenic bacteria in the wounds of infected mice under light irradiation, leading to effective wound healing. This work demonstrates the potential of TMD artificial antibodies as an alternative to antibodies for sensing and therapy.


Asunto(s)
Antibacterianos/uso terapéutico , Infecciones por Escherichia coli/tratamiento farmacológico , Sustancias Luminiscentes/uso terapéutico , Nanoestructuras/uso terapéutico , Animales , Antibacterianos/química , Antibacterianos/efectos de la radiación , Dextranos/química , Escherichia coli O157/efectos de los fármacos , Escherichia coli O157/aislamiento & purificación , Luz , Sustancias Luminiscentes/química , Sustancias Luminiscentes/efectos de la radiación , Ratones , Simulación de Dinámica Molecular , Molibdeno/química , Molibdeno/efectos de la radiación , Molibdeno/uso terapéutico , Nanoestructuras/química , Nanoestructuras/efectos de la radiación , Terapia Fototérmica , Compuestos de Selenio/química , Compuestos de Selenio/efectos de la radiación , Compuestos de Selenio/uso terapéutico , Piel/microbiología , Espectrometría Raman , Staphylococcus aureus/efectos de los fármacos , Staphylococcus aureus/aislamiento & purificación , Sulfuros/química , Sulfuros/efectos de la radiación , Sulfuros/uso terapéutico , Compuestos de Tungsteno/química , Compuestos de Tungsteno/efectos de la radiación , Compuestos de Tungsteno/uso terapéutico , Cicatrización de Heridas/efectos de los fármacos
4.
Biomedicines ; 9(5)2021 May 13.
Artículo en Inglés | MEDLINE | ID: mdl-34068051

RESUMEN

Mycobacterium tuberculosis (MTB), the causative agent of tuberculosis (TB), avoids the host immune system through its virulence factors. MPT63 and MPT64 are the virulence factors secreted by MTB which regulate host proteins for the survival and proliferation of MTB in the host. Here, we found that MPT63 bound directly with TBK1 and p47phox, whereas MPT64 interacted with TBK1 and HK2. We constructed a MPT63/64-derived multifunctional recombinant protein (rMPT) that was able to interact with TBK1, p47phox, or HK2. rMPT was shown to regulate IFN-ß levels and increase inflammation and concentration of reactive oxygen species (ROS), while targeting macrophages and killing MTB, both in vitro and in vivo. Furthermore, the identification of the role of rMPT against MTB was achieved via vaccination in a mouse model. Taken together, we here present rMPT, which, by regulating important immune signaling systems, can be considered an effective vaccine or therapeutic agent against MTB.

5.
J Control Release ; 336: 344-353, 2021 08 10.
Artículo en Inglés | MEDLINE | ID: mdl-34147573

RESUMEN

Sepsis is a systemic inflammatory response syndrome caused by bacterial infection. The sepsis therapy has involved prescription of adequate antibiotics, requiring several days to determine the proper type without reducing the inflammatory response. Thus, it is necessary to rapidly decrease fundamental inflammation, which can induce serious organ damage. In the inflammatory mechanism, tumor necrosis factor-alpha (TNF-α) produced by macrophages has an important role in infiltration of macrophages into infected sites and as a trigger for secretion of pro-inflammatory cytokines. However, commercialized TNF-α antibody medicines have limits such as fibrosis, cytokine storms, and high production costs. There is a growing need for anti-inflammatory sepsis treatment free from side effects. For this reason, TNF-α converting enzyme (TACE) could be an innovative target to break the positive feedback loop of inflammatory mediators (TNF-α) since it converts the inactive TNF-α membrane bound form to the activated soluble form in macrophages. A non-viral gene delivery system was developed in this study to deliver siRNA into inflammation-mediated macrophages without toxicity. The peptide-based gene carrier created by conjugating positively-charged nine arginine (9R) and the TKPR (Thr-Lys-Pro-Arg) sequence from the Fc region of Immunoglobulin G (IgG) specifically binds to the neuropilin-1 (NRP-1) receptor on the macrophage surface. Our results demonstrated that siTACE/TKPR-9R complexes were internalized in macrophages and successfully down-regulated TACE mRNA level. Finally, RNA interference with cell-targeted peptide carriers indicates a fundamental therapy for acute inflammatory sepsis free of off-target effects.


Asunto(s)
Sepsis , Factor de Necrosis Tumoral alfa , Regulación hacia Abajo , Humanos , Macrófagos/metabolismo , Interferencia de ARN , Sepsis/terapia , Factor de Necrosis Tumoral alfa/metabolismo
6.
Adv Mater ; 33(22): e2101376, 2021 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-33890691

RESUMEN

Antibodies are widely used as recognition elements in sensing and therapy, but they suffer from poor stability, long discovery time, and high cost. Herein, a facile approach to create antibody mimics with flexible recognition phases and luminescent rigid scaffolds for the selective recognition, detection, and inactivation of pathogenic bacteria is reported. Tripeptides with a nitriloacetate-Cu group are spontaneously assembled on transition metal dichalcogenide (TMD) nanosheets via coordination bonding, providing a diversity of TMD-tripeptide assembly (TPA) antibody mimics. TMD-TPA antibody mimics can selectively recognize various pathogenic bacteria with nanomolar affinities. The bacterial binding sites for TMD-TPA are identified by experiments and molecular dynamics simulations, revealing that the dynamic and multivalent interactions of artificial antibodies play a crucial role for their recognition selectivity and affinity. The artificial antibodies allow the rapid and selective detection of pathogenic bacteria at single copy in human serum and urine, and their effective inactivation for therapy of infected mice. This work demonstrates the potential of TMD-TPA antibody mimics as an alternative to natural antibodies for sensing and therapy.


Asunto(s)
Nanoestructuras , Animales , Anticuerpos , Ratones , Peptoides
7.
EMBO Mol Med ; 12(12): e12497, 2020 12 07.
Artículo en Inglés | MEDLINE | ID: mdl-33258196

RESUMEN

The Rv2626c protein of Mycobacterium tuberculosis is a promising vaccine candidate owing to its strong serum antibody response in patients with tuberculosis. However, there is limited information regarding the intracellular response induced by Rv2626c in macrophages. In this study, we demonstrated that Rv2626c interacts with the RING domain of TRAF6 and inhibits lysine (K) 63-linked polyubiquitination of TRAF6 (E3 ubiquitin ligase activity); this results in the suppression of TLR4 inflammatory signaling in macrophages. Furthermore, we showed that the C-terminal 123-131-amino acid Rv2626c motif promotes macrophage recruitment, phagocytosis, M2 macrophage polarization, and subsequent bacterial clearance. We developed rRv2626c-CA, a conjugated peptide containing the C-terminal 123-131-amino acid Rv2626c that targets macrophages, penetrates the cell membrane, and has demonstrated significant therapeutic effects in a mouse model of cecal ligation and puncture-induced sepsis. This multifunctional rRv2626c-CA has considerably improved potency, with an IC50 that is 250-fold (in vitro) or 1,000-fold (in vivo) lower than that of rRv2626c-WT. We provide evidence for new peptide-based drugs with anti-inflammatory and antibacterial properties for the treatment of sepsis.


Asunto(s)
Mycobacterium tuberculosis/química , Péptidos/aislamiento & purificación , Péptidos/uso terapéutico , Sepsis/tratamiento farmacológico , Animales , Antibacterianos/química , Antibacterianos/aislamiento & purificación , Antibacterianos/uso terapéutico , Antiinflamatorios/química , Antiinflamatorios/aislamiento & purificación , Antiinflamatorios/uso terapéutico , Modelos Animales de Enfermedad , Femenino , Células HEK293 , Humanos , Ratones , Ratones Endogámicos C57BL , Péptidos/química
8.
Int J Mol Sci ; 21(22)2020 Nov 10.
Artículo en Inglés | MEDLINE | ID: mdl-33182702

RESUMEN

Dense granule proteins (GRAs) are essential components in Toxoplasma gondii, which are suggested to be promising serodiagnostic markers in toxoplasmosis. In this study, we investigated the function of GRA9 in host response and the associated regulatory mechanism, which were unknown. We found that GRA9 interacts with NLR family pyrin domain containing 3 (NLRP3) involved in inflammation by forming the NLRP3 inflammasome. The C-terminal of GRA9 (GRA9C) is essential for GRA9-NLRP3 interaction by disrupting the NLRP3 inflammasome through blocking the binding of apoptotic speck-containing (ASC)-NLRP3. Notably, Q200 of GRA9C is essential for the interaction of NLRP3 and blocking the conjugation of ASC. Recombinant GRA9C (rGRA9C) showed an anti-inflammatory effect and the elimination of bacteria by converting M1 to M2 macrophages. In vivo, rGRA9C increased the anti-inflammatory and bactericidal effects and subsequent anti-septic activity in CLP- and E. coli- or P. aeruginosa-induced sepsis model mice by increasing M2 polarization. Taken together, our findings defined a role of T. gondii GRA9 associated with NLRP3 in host macrophages, suggesting its potential as a new candidate therapeutic agent for sepsis.


Asunto(s)
Inflamasomas/inmunología , Proteína con Dominio Pirina 3 de la Familia NLR/inmunología , Proteínas Protozoarias/inmunología , Sepsis/terapia , Toxoplasma/inmunología , Animales , Antígenos de Protozoos/química , Antígenos de Protozoos/inmunología , Proteínas Adaptadoras de Señalización CARD/inmunología , Modelos Animales de Enfermedad , Femenino , Interacciones Huésped-Parásitos/inmunología , Macrófagos/clasificación , Macrófagos/inmunología , Ratones , Ratones Endogámicos C57BL , Mitocondrias/inmunología , Proteínas Protozoarias/química , Proteínas Protozoarias/genética , Sepsis/inmunología , Sepsis/prevención & control , Toxoplasma/genética , Toxoplasma/patogenicidad
9.
ACS Nano ; 14(8): 10324-10336, 2020 08 25.
Artículo en Inglés | MEDLINE | ID: mdl-32806029

RESUMEN

Sepsis is an aberrant systemic inflammatory response mediated by excessive production of reactive oxygen species (ROS) and reactive nitrogen species (RNS). Developing an efficient antioxidant therapy for sepsis via scavenging ROS and RNS remains a big challenge owing to the insufficient activity and sustainability of conventional antioxidants. Herein, biocompatible transition-metal dichalcogenide antioxidants with excellent scavenging activity and sustainability for H2O2, O2•-, OH•, and nitric oxide are developed for effective sepsis treatment. WS2, MoSe2, and WSe2 nanosheets exfoliated and functionalized with a biocompatible polymer effectively scavenge mitochondrial and intracellular ROS and RNS in inflammatory cells. Among the nanosheets, WS2 most efficiently suppresses the excessive secretion of inflammatory cytokines along with scavenging ROS and RNS without affecting the expression levels of the anti-inflammatory cytokine and ROS-producing enzymes. The WS2 nanosheets significantly improve the survival rate up to 90% for severely septic mice by reducing systemic inflammation. The pharmacokinetics suggests that the WS2 nanosheets can be excreted from mice 3 days after intravenous injection. This work demonstrates the potential of therapeutic nanosheet antioxidants for effective treatment of ROS and RNS-related diseases.


Asunto(s)
Antioxidantes , Sepsis , Animales , Antioxidantes/farmacología , Peróxido de Hidrógeno , Ratones , Nitrógeno , Oxígeno , Especies de Nitrógeno Reactivo , Especies Reactivas de Oxígeno , Sepsis/tratamiento farmacológico
10.
Oncotarget ; 11(1): 62-73, 2020 Jan 07.
Artículo en Inglés | MEDLINE | ID: mdl-32002124

RESUMEN

Targeted tumor and efficient, specific biological drug delivery in vivo has been one of the main challenges in protein-based cancer-targeted therapies. Mitochondria are potential therapeutic targets for various anti-cancer drugs. We have previously reported that protein kinase Cα-mediated phosphorylation of Toxoplasma gondii GRA8 is required for mitochondrial trafficking and regulating the interaction of the C-terminal of GRA8 with ATP5A1/SIRT3 in mitochondria. Furthermore, SIRT3 facilitates ATP5A1 deacetylation, mitochondrial activation, and subsequent antiseptic activity in vivo. Herein we developed a recombinant acidity-triggered rational membrane (ATRAM)-conjugated multifunctional GRA8 peptide (rATRAM-G8-M/AS) comprising ATRAM as the cancer-targeting cell-penetrating peptide, and essential/minimal residues for mitochondrial targeting or ATP5A1/SIRT3 binding. This peptide construct showed considerably improved potency about cancer cell death via mitochondria activity and biogenesis compared with rGRA8 alone in HCT116 human carcinoma cells, reaching an IC50 value of up to 200-fold lower in vitro and 500-fold lower in vivo. Notably, rATRAM-G8-M/AS treatment showed significant therapeutic effects in a mouse xenograft model through mitochondrial metabolic resuscitation, and it produced negligible immunogenicity and immune responses in vivo. Thus, these results demonstrate that rATRAM-G8-M/AS represents a useful therapeutic strategy against tumors, particularly colon cancer. This strategy represents an urgently needed paradigm shift for therapeutic intervention.

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