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anti sert rabbit polyclonal antibody  (Proteintech)


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    Structured Review

    Proteintech anti sert rabbit polyclonal antibody
    Anti Sert Rabbit Polyclonal Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 94/100, based on 36 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+anti+sert/Serotonin+transporter+Polyclonal+antibody/pm41722784-79-24-29
    Average 94 stars, based on 36 article reviews
    anti sert rabbit polyclonal antibody - by Bioz Stars, 2026-09
    94/100 stars

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    Related Articles

    other:

    Article Title: 5-HT regulates resistance to aumolertinib by attenuating ferroptosis in lung adenocarcinoma
    Article Snippet: Rabbit anti-SERT , Proteintech , 19559-1-AP.

    Article Title: Sleep disturbance triggers aberrant activation of vagus circuitry and induces intestinal stem cell dysfunction.
    Article Snippet: Primary antibodies used in this study include: Rabbit-anti-β-Actin (YEASEN, 30101, 1:1000), Mouse-anti-β-Tubulin (Beyotime, AF0001, 1:5000), Mouse-anti-TCF1 (Santa Cruz, sc-271453, 1:500), Rabbit-anti-LEF1 (Cell Signaling Technology, 2230, 1:1000), Rabbit-anti-c-Myc (Abcam, ab32072, 1:1000), Rabbit-anti-CyclinD1 (Cell Signaling Technology, 2978, 1:1000), Rabbit-anti-Axin2 (Abcam, ab109307, 1:1000), Rabbit-anti-Olfm4 (Cell Signaling Technology, 39141, 1:1000), Rabbit-anti-Ubiquitin (K48) (Abcam, ab140601, 1:1000), Rabbit-anti-Ubiquitin (K63) (Abcam, ab179434, 1:1000), Rabbit-anti-p62 (Cell Signaling Technology, 23214, 1:1000), Mouse-anti-LC3B (Cell Signaling Technology, 83506, 1:1000), Rabbit-anti-phospho-elF2a (Ser51) (Cell Signaling Technology, 3398, 1:1000), Rabbit-anti-eiF2a (Cell Signaling Technology, 5324, 1:1000), Mouse-anti-Ubiquitin (P4D1) (Cell Signaling Technology, 3936, 1:1000), Mouse-anti-ATF4 (Santa Cruz, sc-390063, 1:400), Mouse-anti-GADD34 (Santa Cruz, sc-373815, 1:500), Mouse-anti-GADD153 (Santa Cruz, sc-7351, 1:500), Rabbit-anti-Sert (Proteintech, 19559-1-AP, 1:1000), Rabbit-anti-HTR4 (Lifespan, LS-C386176, 1:500), Rabbit-anti-CREB (phospho S133) (Abcam, ab220798, 1:100).



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    Proteintech rabbit anti sert antibody
    Figure 1. Restraint stress induced an increase in intestinal 5-HT levels. (a) Changes in 5-HT levels in serum and intestine of mice (n= 5). (b,c) Changes <t>in</t> <t>Tph1</t> and Tph2 mRNA levels in jejunum and colon tissues of mice (n = 10). (d) EC+ cells in the jejunum and colon were detected by immunohisto- chemistry, and (e,f) the average integrated optical density (IOD) of the positive cells was measured by ImageJ 1.54p (n = 5). (g–i) HTR7 immunofluorescence staining and HTR7 cell intensities in jejunum and colon were analyzed by ImageJ. (g–j) The expressions of TPH1, HTR7, <t>SERT</t> and β-actin protein were examined in jejunum and colon by Western blot, and relative protein levels were normalized to β-actin (n = 3) (k,l). Each sample was assayed three times. Data are presented as the mean ± SEM. Differences were assessed by ANOVA and denoted as follows: * p < 0.05; ** p < 0.01; *** p < 0.001 indicate significant difference. C: control group; S: restraint stress; S + PCPA: restraint stress + PCPA; S + IWP-2: restraint stress + IWP-2.
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    Figure 1. Restraint stress induced an increase in intestinal 5-HT levels. (a) Changes in 5-HT levels in serum and intestine of mice (n= 5). (b,c) Changes <t>in</t> <t>Tph1</t> and Tph2 mRNA levels in jejunum and colon tissues of mice (n = 10). (d) EC+ cells in the jejunum and colon were detected by immunohisto- chemistry, and (e,f) the average integrated optical density (IOD) of the positive cells was measured by ImageJ 1.54p (n = 5). (g–i) HTR7 immunofluorescence staining and HTR7 cell intensities in jejunum and colon were analyzed by ImageJ. (g–j) The expressions of TPH1, HTR7, <t>SERT</t> and β-actin protein were examined in jejunum and colon by Western blot, and relative protein levels were normalized to β-actin (n = 3) (k,l). Each sample was assayed three times. Data are presented as the mean ± SEM. Differences were assessed by ANOVA and denoted as follows: * p < 0.05; ** p < 0.01; *** p < 0.001 indicate significant difference. C: control group; S: restraint stress; S + PCPA: restraint stress + PCPA; S + IWP-2: restraint stress + IWP-2.
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    Figure 1. Restraint stress induced an increase in intestinal 5-HT levels. (a) Changes in 5-HT levels in serum and intestine of mice (n= 5). (b,c) Changes in Tph1 and Tph2 mRNA levels in jejunum and colon tissues of mice (n = 10). (d) EC+ cells in the jejunum and colon were detected by immunohisto- chemistry, and (e,f) the average integrated optical density (IOD) of the positive cells was measured by ImageJ 1.54p (n = 5). (g–i) HTR7 immunofluorescence staining and HTR7 cell intensities in jejunum and colon were analyzed by ImageJ. (g–j) The expressions of TPH1, HTR7, SERT and β-actin protein were examined in jejunum and colon by Western blot, and relative protein levels were normalized to β-actin (n = 3) (k,l). Each sample was assayed three times. Data are presented as the mean ± SEM. Differences were assessed by ANOVA and denoted as follows: * p < 0.05; ** p < 0.01; *** p < 0.001 indicate significant difference. C: control group; S: restraint stress; S + PCPA: restraint stress + PCPA; S + IWP-2: restraint stress + IWP-2.

    Journal: International journal of molecular sciences

    Article Title: Restraint Stress Disrupted Intestinal Homeostasis via 5-HT/HTR7/Wnt/β-Catenin/NF-kB Signaling.

    doi: 10.3390/ijms26094021

    Figure Lengend Snippet: Figure 1. Restraint stress induced an increase in intestinal 5-HT levels. (a) Changes in 5-HT levels in serum and intestine of mice (n= 5). (b,c) Changes in Tph1 and Tph2 mRNA levels in jejunum and colon tissues of mice (n = 10). (d) EC+ cells in the jejunum and colon were detected by immunohisto- chemistry, and (e,f) the average integrated optical density (IOD) of the positive cells was measured by ImageJ 1.54p (n = 5). (g–i) HTR7 immunofluorescence staining and HTR7 cell intensities in jejunum and colon were analyzed by ImageJ. (g–j) The expressions of TPH1, HTR7, SERT and β-actin protein were examined in jejunum and colon by Western blot, and relative protein levels were normalized to β-actin (n = 3) (k,l). Each sample was assayed three times. Data are presented as the mean ± SEM. Differences were assessed by ANOVA and denoted as follows: * p < 0.05; ** p < 0.01; *** p < 0.001 indicate significant difference. C: control group; S: restraint stress; S + PCPA: restraint stress + PCPA; S + IWP-2: restraint stress + IWP-2.

    Article Snippet: The membrane was then blocked with 5% skimmed milk in Tris-buffered saline with Tween 20 (TBST) at room temperature for 1.5 h. Subsequently, the membrane was incubated overnight at 4 ◦C with the antibodies: rabbit anti-Claudin-3 antibody (1:1000, ab15102, Abcam, Cambridge, CA, USA), rabbit antiClaudin-1 antibody (1:3000, ab15098, Abcam, Cambridge, CA, USA), rabbit anti-Occludin antibody (1:1000, ab216327, Abcam, Cambridge, CA, USA), rabbit anti-TPH1 antibody (1:1000, ab52954, Abcam, Cambridge, CA, USA), rabbit anti-SERT antibody (1:1000, 19559- 1-AP, Proteintech, Wuhan, China), rabbit anti-HTR7 antibody (1:1000, DF13323, Affinity, OH, USA), mouse anti-β-catenin (1:8000, 66379-1-AP, Proteintech, Wuhan, China), rabbit anti-APC antibody (1:1000, ab40778, Abcam, Cambridge, CA, USA), rabbit anti-Axin1 antibody (1:1000, C76H11, Cell Signaling Technology, Beverly, MA, USA), rabbit anti-GSK3β antibody (1:1000, SC-377213, Santa Cruz, Dallas, TX, USA), rabbit anti-TCF3 antibody (1:2000, 21242-1-AP, Proteintech, Wuhan, China), rabbit anti-Phospho-IkB (1:1000, ab133462, Abcam, Cambridge, CA, USA), rabbit anti-Phospho-NF-kB p65 (1:1000, ab76302, Abcam, Cambridge, CA, USA), mouse anti-β-actin antibody (1:10,000, 66009-1-lg, Proteintech, Wuhan, China), rabbit anti-Lgr5 (1:1000, DF2816, Affinity Biosciences, Jiangsu, China), rabbit anti-Axin2 (1:1000, 20540-1-AP, Proteintech, Wuhan, China), and mouse anti-c-Myc (1:1000, sc-40, Santa Cruz, Dallas, TX, USA) overnight at 4 ◦C.

    Techniques: Immunohistochemistry, Immunofluorescence, Staining, Western Blot, Control

    Figure 4. 5-HT activated Wnt/β-catenin by acting on the HTR7 receptor. The expression of β-catenin and β-actin protein were examined in jejunum (a) and colon (b) by Western blot, and relative protein levels were normalized to β-actin (n = 3). Immunofluorescence staining of β-catenin in Caco2 cells (c) and total and nuclear β-catenin intensities were analyzed by ImageJ (d) (n = 6 hole). 5-HT and SB269970 treated Caco2 cells were used for β-catenin coimmunoprecipitation, input samples from the coimmunoprecipitation assay were analyzed by Western blot (e), and relative protein levels were normalized to β-actin (f) (n = 3). The expressions of TPH1, APC, Axin1, GSK3-β, β-catenin and β-actin protein were examined in jejunum (g) by Western blot, and relative protein levels were normalized to β-actin (h) (n = 3). The expression of β-catenin, TCF3, APC, Axin1, GSK3-β, TPH1, SERT, HTR7 and β-actin protein were examined in colon (i,l) by Western blot, and relative protein levels were normalized to β-actin (j,k,m) (n = 3). Each sample was assayed three times. Data are presented as the mean ± SEM. Differences were assessed by ANOVA and denoted as follows: * p < 0.05; ** p < 0.01; *** p < 0.001 indicate significant difference. C: control group; S: restraint stress; S + PCPA: restraint stress + PCPA; S + IWP-2: restraint stress + IWP-2.

    Journal: International journal of molecular sciences

    Article Title: Restraint Stress Disrupted Intestinal Homeostasis via 5-HT/HTR7/Wnt/β-Catenin/NF-kB Signaling.

    doi: 10.3390/ijms26094021

    Figure Lengend Snippet: Figure 4. 5-HT activated Wnt/β-catenin by acting on the HTR7 receptor. The expression of β-catenin and β-actin protein were examined in jejunum (a) and colon (b) by Western blot, and relative protein levels were normalized to β-actin (n = 3). Immunofluorescence staining of β-catenin in Caco2 cells (c) and total and nuclear β-catenin intensities were analyzed by ImageJ (d) (n = 6 hole). 5-HT and SB269970 treated Caco2 cells were used for β-catenin coimmunoprecipitation, input samples from the coimmunoprecipitation assay were analyzed by Western blot (e), and relative protein levels were normalized to β-actin (f) (n = 3). The expressions of TPH1, APC, Axin1, GSK3-β, β-catenin and β-actin protein were examined in jejunum (g) by Western blot, and relative protein levels were normalized to β-actin (h) (n = 3). The expression of β-catenin, TCF3, APC, Axin1, GSK3-β, TPH1, SERT, HTR7 and β-actin protein were examined in colon (i,l) by Western blot, and relative protein levels were normalized to β-actin (j,k,m) (n = 3). Each sample was assayed three times. Data are presented as the mean ± SEM. Differences were assessed by ANOVA and denoted as follows: * p < 0.05; ** p < 0.01; *** p < 0.001 indicate significant difference. C: control group; S: restraint stress; S + PCPA: restraint stress + PCPA; S + IWP-2: restraint stress + IWP-2.

    Article Snippet: The membrane was then blocked with 5% skimmed milk in Tris-buffered saline with Tween 20 (TBST) at room temperature for 1.5 h. Subsequently, the membrane was incubated overnight at 4 ◦C with the antibodies: rabbit anti-Claudin-3 antibody (1:1000, ab15102, Abcam, Cambridge, CA, USA), rabbit antiClaudin-1 antibody (1:3000, ab15098, Abcam, Cambridge, CA, USA), rabbit anti-Occludin antibody (1:1000, ab216327, Abcam, Cambridge, CA, USA), rabbit anti-TPH1 antibody (1:1000, ab52954, Abcam, Cambridge, CA, USA), rabbit anti-SERT antibody (1:1000, 19559- 1-AP, Proteintech, Wuhan, China), rabbit anti-HTR7 antibody (1:1000, DF13323, Affinity, OH, USA), mouse anti-β-catenin (1:8000, 66379-1-AP, Proteintech, Wuhan, China), rabbit anti-APC antibody (1:1000, ab40778, Abcam, Cambridge, CA, USA), rabbit anti-Axin1 antibody (1:1000, C76H11, Cell Signaling Technology, Beverly, MA, USA), rabbit anti-GSK3β antibody (1:1000, SC-377213, Santa Cruz, Dallas, TX, USA), rabbit anti-TCF3 antibody (1:2000, 21242-1-AP, Proteintech, Wuhan, China), rabbit anti-Phospho-IkB (1:1000, ab133462, Abcam, Cambridge, CA, USA), rabbit anti-Phospho-NF-kB p65 (1:1000, ab76302, Abcam, Cambridge, CA, USA), mouse anti-β-actin antibody (1:10,000, 66009-1-lg, Proteintech, Wuhan, China), rabbit anti-Lgr5 (1:1000, DF2816, Affinity Biosciences, Jiangsu, China), rabbit anti-Axin2 (1:1000, 20540-1-AP, Proteintech, Wuhan, China), and mouse anti-c-Myc (1:1000, sc-40, Santa Cruz, Dallas, TX, USA) overnight at 4 ◦C.

    Techniques: Expressing, Western Blot, Immunofluorescence, Staining, Co-Immunoprecipitation Assay, Control