prosense® 680 molecular imaging (ProSense Inc)
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Prosense® 680 Molecular Imaging, supplied by ProSense Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/prosense-680/prosense++680+molecular+imaging/us12264156-2824-7-7
Average 90 stars, based on 1 article reviews
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Western Blot:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Expressing:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Incubation:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Fluorescence:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Tomography:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Imaging:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Activation Assay:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Ligation:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Immunofluorescence:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Staining:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Activity Assay:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by Confocal Microscopy:Article Title: Simultaneous targeting of mitochondria and monocytes enhances neuroprotection against ischemia–reperfusion injury Article Snippet: Fluorescence molecular tomography (FMT) imaging using Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: Quantification of Article Title: Mapping Molecular Agents Distributions in Whole Mice Hearts Using Born-Normalized Optical Projection Tomography Article Snippet: In order to characterize the volumetric distribution of the two molecular probes (Prosense-680, Clio-750) and to determine the strength of their colocalization we implemented the Cross Correlation Function (CCF) ( ). Article Title: Detection of protease activity in cells and animals. Article Snippet: 100-250 words) Proteases are involved in a wide variety of biologically and medically important events.. They are entangled in a complex network of processes that regulate their activity, which makes their study intriguing, but challenging.. For comprehensive understanding of protease biology and effective drug discovery, it is therefore essential to study proteases in models that are close to their complex native environments such as live cells or whole organisms. Article Title: Recent advances in nanomedicines for imaging and therapy of myocardial ischemia-reperfusion injury. Article Snippet: Myocardial ischemia-reperfusion injury (IRI) is becoming a typical cardiovascular disease with increasing worldwide incidence.. It is usually induced by the restoration of normal blood flow to the ischemic myocardium after a period of recanalization and directly leads to myocardial damage.. Notably, the pathological mechanism of myocardial IRI is closely related to inflammation, oxidative stress, Ca2+ overload, and the opening of mitochondrial permeability transition pore channels. Article Title: Peroxisome proliferator-activated receptor-gamma targeting nanomedicine promotes cardiac healing after acute myocardial infarction by skewing monocyte/macrophage polarization in preclinical animal models. Article Snippet: NS, not significant. (D, E) Coronal FMT image acquired 24 h after the Article Title: Nanoparticle incorporating Toll-like receptor 4 inhibitor attenuates myocardial ischaemia-reperfusion injury by inhibiting monocyte-mediated inflammation in mice. Article Snippet: In the liver, lung, and pancreas, hypoxia caused by ischaemia has been reported to A B D E F C Figure 4 Effect of TAK-242-NP on inflammation and circulating HMGB1. (A) FMT images visualizing protease activity by |


