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Yeasen Biotechnology daffm-da
Daffm Da, supplied by Yeasen Biotechnology, 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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daffm-da - by Bioz Stars, 2026-10
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Article Title: Utilizing the superoxide dismutase activity of ceria nanoparticles to endow poly-l-lactic acid bone implants with antitumor function.
Article Snippet: Currently, numerous bone tumor patients undergo tumor recurrence after surgical resection, which seriously affects their quality of life.. In this study, the ceria (CeO2) nanoparticle was added to Poly-L-Lactic Acid (PLLA) bone implants endowing the bone implant with antitumor function.. The results showed that the reactive oxygen species increased in U2OS cells while it dropped in HEK293 cells as the CeO2 content increased.

Cell Culture:

Article Title: Utilizing the superoxide dismutase activity of ceria nanoparticles to endow poly-l-lactic acid bone implants with antitumor function.
Article Snippet: Currently, numerous bone tumor patients undergo tumor recurrence after surgical resection, which seriously affects their quality of life.. In this study, the ceria (CeO2) nanoparticle was added to Poly-L-Lactic Acid (PLLA) bone implants endowing the bone implant with antitumor function.. The results showed that the reactive oxygen species increased in U2OS cells while it dropped in HEK293 cells as the CeO2 content increased.



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a Distribution of <t>the</t> <t>actinotrichia</t> at the tips of spiny rays (left) and soft rays (right) at three stages of fin deveolpent in fixed samples (DF-st3 larvae, n = 3; DF-st4 larvae, n = 4; juveniles, n = 4); the lower pair of panels of each stage are magnified images of the yellow dashed box in the upper panels. Spiny-ray bones are outlined in orange. Actinotrichia distribution and spiny- and soft-ray bone morphology in wild-type fish ( b) ( n = 8) and in the actinodin1 –/– / actinodin2 +/– knockout fish ( c ) ( n = 6). All panels except the top-left panel represent magnified views of the area enclosed by the yellow dashed box in the top-left panel. White arrowheads indicate abnormal bending of the soft rays in the knockout fish. Yellow arrowheads show aberrantly positioned segmental structures in the soft rays of the knockout fish. Actinotrichia were labeled with <t>DAFFM</t> DA (green), and the spiny- and soft-ray bones were labeled with alizarin red (magenta). d Schematic illustration of the spiny- and soft-ray morphology in fish with a loss of actinotrichia.
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a Distribution of <t>the</t> <t>actinotrichia</t> at the tips of spiny rays (left) and soft rays (right) at three stages of fin deveolpent in fixed samples (DF-st3 larvae, n = 3; DF-st4 larvae, n = 4; juveniles, n = 4); the lower pair of panels of each stage are magnified images of the yellow dashed box in the upper panels. Spiny-ray bones are outlined in orange. Actinotrichia distribution and spiny- and soft-ray bone morphology in wild-type fish ( b) ( n = 8) and in the actinodin1 –/– / actinodin2 +/– knockout fish ( c ) ( n = 6). All panels except the top-left panel represent magnified views of the area enclosed by the yellow dashed box in the top-left panel. White arrowheads indicate abnormal bending of the soft rays in the knockout fish. Yellow arrowheads show aberrantly positioned segmental structures in the soft rays of the knockout fish. Actinotrichia were labeled with <t>DAFFM</t> DA (green), and the spiny- and soft-ray bones were labeled with alizarin red (magenta). d Schematic illustration of the spiny- and soft-ray morphology in fish with a loss of actinotrichia.
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a Distribution of <t>the</t> <t>actinotrichia</t> at the tips of spiny rays (left) and soft rays (right) at three stages of fin deveolpent in fixed samples (DF-st3 larvae, n = 3; DF-st4 larvae, n = 4; juveniles, n = 4); the lower pair of panels of each stage are magnified images of the yellow dashed box in the upper panels. Spiny-ray bones are outlined in orange. Actinotrichia distribution and spiny- and soft-ray bone morphology in wild-type fish ( b) ( n = 8) and in the actinodin1 –/– / actinodin2 +/– knockout fish ( c ) ( n = 6). All panels except the top-left panel represent magnified views of the area enclosed by the yellow dashed box in the top-left panel. White arrowheads indicate abnormal bending of the soft rays in the knockout fish. Yellow arrowheads show aberrantly positioned segmental structures in the soft rays of the knockout fish. Actinotrichia were labeled with <t>DAFFM</t> DA (green), and the spiny- and soft-ray bones were labeled with alizarin red (magenta). d Schematic illustration of the spiny- and soft-ray morphology in fish with a loss of actinotrichia.
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a Distribution of <t>the</t> <t>actinotrichia</t> at the tips of spiny rays (left) and soft rays (right) at three stages of fin deveolpent in fixed samples (DF-st3 larvae, n = 3; DF-st4 larvae, n = 4; juveniles, n = 4); the lower pair of panels of each stage are magnified images of the yellow dashed box in the upper panels. Spiny-ray bones are outlined in orange. Actinotrichia distribution and spiny- and soft-ray bone morphology in wild-type fish ( b) ( n = 8) and in the actinodin1 –/– / actinodin2 +/– knockout fish ( c ) ( n = 6). All panels except the top-left panel represent magnified views of the area enclosed by the yellow dashed box in the top-left panel. White arrowheads indicate abnormal bending of the soft rays in the knockout fish. Yellow arrowheads show aberrantly positioned segmental structures in the soft rays of the knockout fish. Actinotrichia were labeled with <t>DAFFM</t> DA (green), and the spiny- and soft-ray bones were labeled with alizarin red (magenta). d Schematic illustration of the spiny- and soft-ray morphology in fish with a loss of actinotrichia.
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a Distribution of <t>the</t> <t>actinotrichia</t> at the tips of spiny rays (left) and soft rays (right) at three stages of fin deveolpent in fixed samples (DF-st3 larvae, n = 3; DF-st4 larvae, n = 4; juveniles, n = 4); the lower pair of panels of each stage are magnified images of the yellow dashed box in the upper panels. Spiny-ray bones are outlined in orange. Actinotrichia distribution and spiny- and soft-ray bone morphology in wild-type fish ( b) ( n = 8) and in the actinodin1 –/– / actinodin2 +/– knockout fish ( c ) ( n = 6). All panels except the top-left panel represent magnified views of the area enclosed by the yellow dashed box in the top-left panel. White arrowheads indicate abnormal bending of the soft rays in the knockout fish. Yellow arrowheads show aberrantly positioned segmental structures in the soft rays of the knockout fish. Actinotrichia were labeled with <t>DAFFM</t> DA (green), and the spiny- and soft-ray bones were labeled with alizarin red (magenta). d Schematic illustration of the spiny- and soft-ray morphology in fish with a loss of actinotrichia.
Daffm Da, supplied by Yeasen Biotechnology, 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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a Distribution of <t>the</t> <t>actinotrichia</t> at the tips of spiny rays (left) and soft rays (right) at three stages of fin deveolpent in fixed samples (DF-st3 larvae, n = 3; DF-st4 larvae, n = 4; juveniles, n = 4); the lower pair of panels of each stage are magnified images of the yellow dashed box in the upper panels. Spiny-ray bones are outlined in orange. Actinotrichia distribution and spiny- and soft-ray bone morphology in wild-type fish ( b) ( n = 8) and in the actinodin1 –/– / actinodin2 +/– knockout fish ( c ) ( n = 6). All panels except the top-left panel represent magnified views of the area enclosed by the yellow dashed box in the top-left panel. White arrowheads indicate abnormal bending of the soft rays in the knockout fish. Yellow arrowheads show aberrantly positioned segmental structures in the soft rays of the knockout fish. Actinotrichia were labeled with <t>DAFFM</t> DA (green), and the spiny- and soft-ray bones were labeled with alizarin red (magenta). d Schematic illustration of the spiny- and soft-ray morphology in fish with a loss of actinotrichia.
Daffm Da Solution Nitric Oxide Detection Probe, supplied by Yeasen Biotechnology, 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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a Distribution of <t>the</t> <t>actinotrichia</t> at the tips of spiny rays (left) and soft rays (right) at three stages of fin deveolpent in fixed samples (DF-st3 larvae, n = 3; DF-st4 larvae, n = 4; juveniles, n = 4); the lower pair of panels of each stage are magnified images of the yellow dashed box in the upper panels. Spiny-ray bones are outlined in orange. Actinotrichia distribution and spiny- and soft-ray bone morphology in wild-type fish ( b) ( n = 8) and in the actinodin1 –/– / actinodin2 +/– knockout fish ( c ) ( n = 6). All panels except the top-left panel represent magnified views of the area enclosed by the yellow dashed box in the top-left panel. White arrowheads indicate abnormal bending of the soft rays in the knockout fish. Yellow arrowheads show aberrantly positioned segmental structures in the soft rays of the knockout fish. Actinotrichia were labeled with <t>DAFFM</t> DA (green), and the spiny- and soft-ray bones were labeled with alizarin red (magenta). d Schematic illustration of the spiny- and soft-ray morphology in fish with a loss of actinotrichia.
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a Distribution of <t>the</t> <t>actinotrichia</t> at the tips of spiny rays (left) and soft rays (right) at three stages of fin deveolpent in fixed samples (DF-st3 larvae, n = 3; DF-st4 larvae, n = 4; juveniles, n = 4); the lower pair of panels of each stage are magnified images of the yellow dashed box in the upper panels. Spiny-ray bones are outlined in orange. Actinotrichia distribution and spiny- and soft-ray bone morphology in wild-type fish ( b) ( n = 8) and in the actinodin1 –/– / actinodin2 +/– knockout fish ( c ) ( n = 6). All panels except the top-left panel represent magnified views of the area enclosed by the yellow dashed box in the top-left panel. White arrowheads indicate abnormal bending of the soft rays in the knockout fish. Yellow arrowheads show aberrantly positioned segmental structures in the soft rays of the knockout fish. Actinotrichia were labeled with <t>DAFFM</t> DA (green), and the spiny- and soft-ray bones were labeled with alizarin red (magenta). d Schematic illustration of the spiny- and soft-ray morphology in fish with a loss of actinotrichia.
3 Amino 4 Aminomethyl 2’,7’ Difluorescein Diacetate (Daffm Da), supplied by Beyotime, 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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Image Search Results


a Distribution of the actinotrichia at the tips of spiny rays (left) and soft rays (right) at three stages of fin deveolpent in fixed samples (DF-st3 larvae, n = 3; DF-st4 larvae, n = 4; juveniles, n = 4); the lower pair of panels of each stage are magnified images of the yellow dashed box in the upper panels. Spiny-ray bones are outlined in orange. Actinotrichia distribution and spiny- and soft-ray bone morphology in wild-type fish ( b) ( n = 8) and in the actinodin1 –/– / actinodin2 +/– knockout fish ( c ) ( n = 6). All panels except the top-left panel represent magnified views of the area enclosed by the yellow dashed box in the top-left panel. White arrowheads indicate abnormal bending of the soft rays in the knockout fish. Yellow arrowheads show aberrantly positioned segmental structures in the soft rays of the knockout fish. Actinotrichia were labeled with DAFFM DA (green), and the spiny- and soft-ray bones were labeled with alizarin red (magenta). d Schematic illustration of the spiny- and soft-ray morphology in fish with a loss of actinotrichia.

Journal: Nature Communications

Article Title: Actinotrichia-independent developmental mechanisms of spiny rays facilitate the morphological diversification of Acanthomorpha fish fins

doi: 10.1038/s41467-026-69180-y

Figure Lengend Snippet: a Distribution of the actinotrichia at the tips of spiny rays (left) and soft rays (right) at three stages of fin deveolpent in fixed samples (DF-st3 larvae, n = 3; DF-st4 larvae, n = 4; juveniles, n = 4); the lower pair of panels of each stage are magnified images of the yellow dashed box in the upper panels. Spiny-ray bones are outlined in orange. Actinotrichia distribution and spiny- and soft-ray bone morphology in wild-type fish ( b) ( n = 8) and in the actinodin1 –/– / actinodin2 +/– knockout fish ( c ) ( n = 6). All panels except the top-left panel represent magnified views of the area enclosed by the yellow dashed box in the top-left panel. White arrowheads indicate abnormal bending of the soft rays in the knockout fish. Yellow arrowheads show aberrantly positioned segmental structures in the soft rays of the knockout fish. Actinotrichia were labeled with DAFFM DA (green), and the spiny- and soft-ray bones were labeled with alizarin red (magenta). d Schematic illustration of the spiny- and soft-ray morphology in fish with a loss of actinotrichia.

Article Snippet: To observe the actinotrichia, vital staining with 5 μM of DAFFM DA (Goryo Chemical, #SK1004-01) was used.

Techniques: Knock-Out, Labeling