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Optical and <t>SPECT</t> <t>imaging</t> of [111In]DTPAHQA in (a) control and (b) chemotherapy-treated MCF-7 tumor-bearing mice. Chemotherapy group received a single i.p. injection of cyclophosphamide (265 mg/kg) followed by i.v. injection of [111In] DTPA-HQA 72 h later. Images were acquired 24 h after probe injection. Reproduced with permission from [52].
Spect Imaging Of 99m Tc Peptide Z Her2:342, supplied by Affibody, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Optical and <t>SPECT</t> <t>imaging</t> of [111In]DTPAHQA in (a) control and (b) chemotherapy-treated MCF-7 tumor-bearing mice. Chemotherapy group received a single i.p. injection of cyclophosphamide (265 mg/kg) followed by i.v. injection of [111In] DTPA-HQA 72 h later. Images were acquired 24 h after probe injection. Reproduced with permission from [52].
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Optical and <t>SPECT</t> <t>imaging</t> of [111In]DTPAHQA in (a) control and (b) chemotherapy-treated MCF-7 tumor-bearing mice. Chemotherapy group received a single i.p. injection of cyclophosphamide (265 mg/kg) followed by i.v. injection of [111In] DTPA-HQA 72 h later. Images were acquired 24 h after probe injection. Reproduced with permission from [52].
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Optical and <t>SPECT</t> <t>imaging</t> of [111In]DTPAHQA in (a) control and (b) chemotherapy-treated MCF-7 tumor-bearing mice. Chemotherapy group received a single i.p. injection of cyclophosphamide (265 mg/kg) followed by i.v. injection of [111In] DTPA-HQA 72 h later. Images were acquired 24 h after probe injection. Reproduced with permission from [52].
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Optical and <t>SPECT</t> <t>imaging</t> of [111In]DTPAHQA in (a) control and (b) chemotherapy-treated MCF-7 tumor-bearing mice. Chemotherapy group received a single i.p. injection of cyclophosphamide (265 mg/kg) followed by i.v. injection of [111In] DTPA-HQA 72 h later. Images were acquired 24 h after probe injection. Reproduced with permission from [52].
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Affibody peptide-based chelators for site-specific labeling of affibody molecules with 99m tc
Optical and <t>SPECT</t> <t>imaging</t> of [111In]DTPAHQA in (a) control and (b) chemotherapy-treated MCF-7 tumor-bearing mice. Chemotherapy group received a single i.p. injection of cyclophosphamide (265 mg/kg) followed by i.v. injection of [111In] DTPA-HQA 72 h later. Images were acquired 24 h after probe injection. Reproduced with permission from [52].
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NanoCarrier Co 99m tc-labeled polymer-peptide nanocarrier conjugates
Characteristics of potential radionuclides for nanotargeted tumor imaging [ <xref ref-type= 20 , 21 , 28 , 29 ]." width="250" height="auto" />
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Image Search Results


Optical and SPECT imaging of [111In]DTPAHQA in (a) control and (b) chemotherapy-treated MCF-7 tumor-bearing mice. Chemotherapy group received a single i.p. injection of cyclophosphamide (265 mg/kg) followed by i.v. injection of [111In] DTPA-HQA 72 h later. Images were acquired 24 h after probe injection. Reproduced with permission from [52].

Journal: Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie

Article Title: The role of radionuclide probes for monitoring anti-tumor drugs efficacy: A brief review

doi: 10.1016/j.biopha.2017.08.079

Figure Lengend Snippet: Optical and SPECT imaging of [111In]DTPAHQA in (a) control and (b) chemotherapy-treated MCF-7 tumor-bearing mice. Chemotherapy group received a single i.p. injection of cyclophosphamide (265 mg/kg) followed by i.v. injection of [111In] DTPA-HQA 72 h later. Images were acquired 24 h after probe injection. Reproduced with permission from [52].

Article Snippet: Zhang et al. [ 57 ] evaluated SPECT imaging of 99m Tc-peptide-Z HER2:342 , an affibody molecule with high affinity for HER2, for monitoring the therapeutic response to trastuzumab in nude mice bearing HER2-positive SKOV-3 xenografts.

Techniques: Single Photon Emission Computed Tomography, Imaging, Control, Injection

Representative Dual SPECT/CT images of EL4 lymphoma apoptosis with 111In-labeled annexin A5-CCPM in A) non-treated mouse and E) treated mouse. Representative fluorescence molecular tomographic images of B) non-treated mouse and F) treated mouse. Representative autoradiographs of excised tumors of C) non-treated group and G) treated group. Fluorescence images of the same slides used in autoradiographic studies in D) non-treated group and H) treated group. This research was originally published in JNM. R. Zhang, W. Lu, X. Wen, M. Huang, M. Zhou, D. Liang, C. Li, “Annexin A5-Conjugated Polymeric Micelles for Dual SPECT and Optical Detection of Apoptosis” J. Nucl. Med. 52 (2011) 958–964. The Society of Nuclear Medicine and Molecular Imaging, Inc © [80].

Journal: Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie

Article Title: The role of radionuclide probes for monitoring anti-tumor drugs efficacy: A brief review

doi: 10.1016/j.biopha.2017.08.079

Figure Lengend Snippet: Representative Dual SPECT/CT images of EL4 lymphoma apoptosis with 111In-labeled annexin A5-CCPM in A) non-treated mouse and E) treated mouse. Representative fluorescence molecular tomographic images of B) non-treated mouse and F) treated mouse. Representative autoradiographs of excised tumors of C) non-treated group and G) treated group. Fluorescence images of the same slides used in autoradiographic studies in D) non-treated group and H) treated group. This research was originally published in JNM. R. Zhang, W. Lu, X. Wen, M. Huang, M. Zhou, D. Liang, C. Li, “Annexin A5-Conjugated Polymeric Micelles for Dual SPECT and Optical Detection of Apoptosis” J. Nucl. Med. 52 (2011) 958–964. The Society of Nuclear Medicine and Molecular Imaging, Inc © [80].

Article Snippet: Zhang et al. [ 57 ] evaluated SPECT imaging of 99m Tc-peptide-Z HER2:342 , an affibody molecule with high affinity for HER2, for monitoring the therapeutic response to trastuzumab in nude mice bearing HER2-positive SKOV-3 xenografts.

Techniques: Single Photon Emission Computed Tomography, Labeling, Fluorescence, Imaging

Characteristics of potential radionuclides for nanotargeted tumor imaging [ <xref ref-type= 20 , 21 , 28 , 29 ]." width="100%" height="100%">

Journal: Journal of Biomedicine and Biotechnology

Article Title: Nanotargeted Radionuclides for Cancer Nuclear Imaging and Internal Radiotherapy

doi: 10.1155/2010/953537

Figure Lengend Snippet: Characteristics of potential radionuclides for nanotargeted tumor imaging [ 20 , 21 , 28 , 29 ].

Article Snippet: Tumor targeting angiogenesis and comparison of 99m Tc-labeled peptide and 99m Tc-labeled polymer-peptide nanocarrier conjugates were investigated [ ].

Techniques: Imaging

Characteristics of nanotargeted nuclear imaging modalities [ <xref ref-type= 20 , 21 ]." width="100%" height="100%">

Journal: Journal of Biomedicine and Biotechnology

Article Title: Nanotargeted Radionuclides for Cancer Nuclear Imaging and Internal Radiotherapy

doi: 10.1155/2010/953537

Figure Lengend Snippet: Characteristics of nanotargeted nuclear imaging modalities [ 20 , 21 ].

Article Snippet: Tumor targeting angiogenesis and comparison of 99m Tc-labeled peptide and 99m Tc-labeled polymer-peptide nanocarrier conjugates were investigated [ ].

Techniques: Imaging, Single Photon Emission Computed Tomography, Labeling

Selected passively nanotargeted tumor nuclear imaging and radiotherapeutic applications.

Journal: Journal of Biomedicine and Biotechnology

Article Title: Nanotargeted Radionuclides for Cancer Nuclear Imaging and Internal Radiotherapy

doi: 10.1155/2010/953537

Figure Lengend Snippet: Selected passively nanotargeted tumor nuclear imaging and radiotherapeutic applications.

Article Snippet: Tumor targeting angiogenesis and comparison of 99m Tc-labeled peptide and 99m Tc-labeled polymer-peptide nanocarrier conjugates were investigated [ ].

Techniques: Imaging, Liposomes, Infection, In Vivo, Drug discovery

Selected actively nanotargeted tumor nuclear imaging and radiotherapeutic applications.

Journal: Journal of Biomedicine and Biotechnology

Article Title: Nanotargeted Radionuclides for Cancer Nuclear Imaging and Internal Radiotherapy

doi: 10.1155/2010/953537

Figure Lengend Snippet: Selected actively nanotargeted tumor nuclear imaging and radiotherapeutic applications.

Article Snippet: Tumor targeting angiogenesis and comparison of 99m Tc-labeled peptide and 99m Tc-labeled polymer-peptide nanocarrier conjugates were investigated [ ].

Techniques: Imaging, Single Photon Emission Computed Tomography, Labeling, In Vivo, Polymer, Comparison, Liposomes