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polyclonal rabbit anti human stmn1 ser38 antibody  (Cell Signaling Technology Inc)


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    Structured Review

    Cell Signaling Technology Inc polyclonal rabbit anti human stmn1 ser38 antibody
    Relationship between <t>STMN1</t> and its phosphorylation-related proteins and clinical outcomes for breast cancer patients. (A) Relationship between Kaplan-Meier analysis of DFS and STMN1 level by IHC (400×). (B) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser16 levelby IHC (400×). (C) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser25 levelby IHC (400×). (D) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at <t>Ser38</t> levelby IHC (400×). (E) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser63 levelby IHC (400×). (F) Relationship between Kaplan-Meier analysis of DFS and GRP78 level by IHC (400×). DFS, disease-free survival.
    Polyclonal Rabbit Anti Human Stmn1 Ser38 Antibody, supplied by Cell Signaling Technology Inc, 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/result/polyclonal rabbit anti human stmn1 ser38 antibody/product/Cell Signaling Technology Inc
    Average 94 stars, based on 36 article reviews
    polyclonal rabbit anti human stmn1 ser38 antibody - by Bioz Stars, 2026-02
    94/100 stars

    Images

    1) Product Images from "The prognostic role of a phospho-Stathmin 1 signature in breast cancer treated with neoadjuvant chemotherapy"

    Article Title: The prognostic role of a phospho-Stathmin 1 signature in breast cancer treated with neoadjuvant chemotherapy

    Journal: Gland Surgery

    doi: 10.21037/gs-22-628

    Relationship between STMN1 and its phosphorylation-related proteins and clinical outcomes for breast cancer patients. (A) Relationship between Kaplan-Meier analysis of DFS and STMN1 level by IHC (400×). (B) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser16 levelby IHC (400×). (C) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser25 levelby IHC (400×). (D) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser38 levelby IHC (400×). (E) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser63 levelby IHC (400×). (F) Relationship between Kaplan-Meier analysis of DFS and GRP78 level by IHC (400×). DFS, disease-free survival.
    Figure Legend Snippet: Relationship between STMN1 and its phosphorylation-related proteins and clinical outcomes for breast cancer patients. (A) Relationship between Kaplan-Meier analysis of DFS and STMN1 level by IHC (400×). (B) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser16 levelby IHC (400×). (C) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser25 levelby IHC (400×). (D) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser38 levelby IHC (400×). (E) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser63 levelby IHC (400×). (F) Relationship between Kaplan-Meier analysis of DFS and GRP78 level by IHC (400×). DFS, disease-free survival.

    Techniques Used: Phospho-proteomics

    Relationship between STMN1 phosphorylation and pathologic response. (A) Correlation between pathologic response and STMN1 expression. (B) Correlation between pathologic response and STMN1 phosphorylation at Ser-16. (C) Correlation between pathologic response and STMN1 phosphorylation at Ser-25. (D) Correlation between pathologic response and STMN1 phosphorylation at Ser-38. (E) Correlation between pathologic response and STMN1 phosphorylation at Ser-63. (F) Correlation between pathologic response and GRP78. pCR, pathological complete response.
    Figure Legend Snippet: Relationship between STMN1 phosphorylation and pathologic response. (A) Correlation between pathologic response and STMN1 expression. (B) Correlation between pathologic response and STMN1 phosphorylation at Ser-16. (C) Correlation between pathologic response and STMN1 phosphorylation at Ser-25. (D) Correlation between pathologic response and STMN1 phosphorylation at Ser-38. (E) Correlation between pathologic response and STMN1 phosphorylation at Ser-63. (F) Correlation between pathologic response and GRP78. pCR, pathological complete response.

    Techniques Used: Phospho-proteomics, Expressing

    p-STMN1/GRP78 model powerfully predicts DFS for patients treated with NACT. (A) Kaplan-Meier analysis of DFS in breast cancer patients from high and low-risk groups classified by the p-STMN1/GRP78 model. (B) ROC curves to test the prognostic accuracy of the p-STMN1/GRP78 model. DFS, disease-free survival; ROC, receiver operating characteristic; AUC, area under the receiver operating characteristic curve.
    Figure Legend Snippet: p-STMN1/GRP78 model powerfully predicts DFS for patients treated with NACT. (A) Kaplan-Meier analysis of DFS in breast cancer patients from high and low-risk groups classified by the p-STMN1/GRP78 model. (B) ROC curves to test the prognostic accuracy of the p-STMN1/GRP78 model. DFS, disease-free survival; ROC, receiver operating characteristic; AUC, area under the receiver operating characteristic curve.

    Techniques Used:



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    Relationship between <t>STMN1</t> and its phosphorylation-related proteins and clinical outcomes for breast cancer patients. (A) Relationship between Kaplan-Meier analysis of DFS and STMN1 level by IHC (400×). (B) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser16 levelby IHC (400×). (C) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser25 levelby IHC (400×). (D) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at <t>Ser38</t> levelby IHC (400×). (E) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser63 levelby IHC (400×). (F) Relationship between Kaplan-Meier analysis of DFS and GRP78 level by IHC (400×). DFS, disease-free survival.
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    Image Search Results


    Sequences of shRNAs targeting  STMN1.

    Journal: Molecular and Clinical Oncology

    Article Title: Stathmin1 promotes lymph node metastasis in hypopharyngeal squamous cell carcinoma via regulation of HIF‑1α/VEGF‑A axis and MTA1 expression

    doi: 10.3892/mco.2023.2617

    Figure Lengend Snippet: Sequences of shRNAs targeting STMN1.

    Article Snippet: The sections were subsequently incubated with rabbit anti-STMN1 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.), or rabbit anti-D2-40 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.) (Anti-D2-40 antibody was used to stain lymphatic vessels, and in stained lymphatic vessels, the presence of tumor embolus represented LVI) overnight at 4 ̊C.

    Techniques: Sequencing, shRNA

    Primer sequences of genes analyzed for reverse transcription-quantitative PCR.

    Journal: Molecular and Clinical Oncology

    Article Title: Stathmin1 promotes lymph node metastasis in hypopharyngeal squamous cell carcinoma via regulation of HIF‑1α/VEGF‑A axis and MTA1 expression

    doi: 10.3892/mco.2023.2617

    Figure Lengend Snippet: Primer sequences of genes analyzed for reverse transcription-quantitative PCR.

    Article Snippet: The sections were subsequently incubated with rabbit anti-STMN1 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.), or rabbit anti-D2-40 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.) (Anti-D2-40 antibody was used to stain lymphatic vessels, and in stained lymphatic vessels, the presence of tumor embolus represented LVI) overnight at 4 ̊C.

    Techniques:

    Clinicopathological characteristics of the included cases.

    Journal: Molecular and Clinical Oncology

    Article Title: Stathmin1 promotes lymph node metastasis in hypopharyngeal squamous cell carcinoma via regulation of HIF‑1α/VEGF‑A axis and MTA1 expression

    doi: 10.3892/mco.2023.2617

    Figure Lengend Snippet: Clinicopathological characteristics of the included cases.

    Article Snippet: The sections were subsequently incubated with rabbit anti-STMN1 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.), or rabbit anti-D2-40 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.) (Anti-D2-40 antibody was used to stain lymphatic vessels, and in stained lymphatic vessels, the presence of tumor embolus represented LVI) overnight at 4 ̊C.

    Techniques: Expressing

    STMN1 expression differences and immunohistochemical staining for STMN1 and LVI. (A and B) STMN1 expression level was increased in HSCC tissues compared with normal hypopharyngeal tissues, and was further increased in HSCC tissues of patients with metastases. (C and D) STMN1 expression status in different HSCC samples (magnification, x200). (E and F) LVI statuses in different HSCC samples along with STMN1 expression statuses (magnification, x400). STMN1, stathmin1; LVI, lymphatic vessel invasion; HSCC, hypopharyngeal squamous cell carcinoma.

    Journal: Molecular and Clinical Oncology

    Article Title: Stathmin1 promotes lymph node metastasis in hypopharyngeal squamous cell carcinoma via regulation of HIF‑1α/VEGF‑A axis and MTA1 expression

    doi: 10.3892/mco.2023.2617

    Figure Lengend Snippet: STMN1 expression differences and immunohistochemical staining for STMN1 and LVI. (A and B) STMN1 expression level was increased in HSCC tissues compared with normal hypopharyngeal tissues, and was further increased in HSCC tissues of patients with metastases. (C and D) STMN1 expression status in different HSCC samples (magnification, x200). (E and F) LVI statuses in different HSCC samples along with STMN1 expression statuses (magnification, x400). STMN1, stathmin1; LVI, lymphatic vessel invasion; HSCC, hypopharyngeal squamous cell carcinoma.

    Article Snippet: The sections were subsequently incubated with rabbit anti-STMN1 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.), or rabbit anti-D2-40 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.) (Anti-D2-40 antibody was used to stain lymphatic vessels, and in stained lymphatic vessels, the presence of tumor embolus represented LVI) overnight at 4 ̊C.

    Techniques: Expressing, Immunohistochemical staining, Staining

    The transfection efficacy evaluation of STMN1 knockdown and the results of cell functional experiments. (A and B) The relative mRNA and protein expression levels of STMN1 in different groups. All of them were evidently decreased after STMN1 knockdown with different shRNA sequences, compared with the NC shRNA group. (C-E) The OD 450 , the relative migratory ratio at 48 h, and the relative number of invasive cells were all significantly decreased after STMN1 knockdown with different shRNA sequences; all were compared with the NC shRNA group. The magnification of picture D and picture E were 100 times and 200 times, respectively. * P<0.05 and ** P<0.01. STMN1, stathmin1; shRNA, short hairpin RNA; NC, negative control.

    Journal: Molecular and Clinical Oncology

    Article Title: Stathmin1 promotes lymph node metastasis in hypopharyngeal squamous cell carcinoma via regulation of HIF‑1α/VEGF‑A axis and MTA1 expression

    doi: 10.3892/mco.2023.2617

    Figure Lengend Snippet: The transfection efficacy evaluation of STMN1 knockdown and the results of cell functional experiments. (A and B) The relative mRNA and protein expression levels of STMN1 in different groups. All of them were evidently decreased after STMN1 knockdown with different shRNA sequences, compared with the NC shRNA group. (C-E) The OD 450 , the relative migratory ratio at 48 h, and the relative number of invasive cells were all significantly decreased after STMN1 knockdown with different shRNA sequences; all were compared with the NC shRNA group. The magnification of picture D and picture E were 100 times and 200 times, respectively. * P<0.05 and ** P<0.01. STMN1, stathmin1; shRNA, short hairpin RNA; NC, negative control.

    Article Snippet: The sections were subsequently incubated with rabbit anti-STMN1 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.), or rabbit anti-D2-40 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.) (Anti-D2-40 antibody was used to stain lymphatic vessels, and in stained lymphatic vessels, the presence of tumor embolus represented LVI) overnight at 4 ̊C.

    Techniques: Transfection, Knockdown, Functional Assay, Expressing, shRNA, Negative Control

    Bioinformatics analyses for target genes and pathways of STMN1. (A) STMN1 was evidently enriched in the HIF-1α pathway in head and neck squamous cell carcinoma. (B) Gene expression levels of HIF-1α pathway were different between cases with high expression of STMN1 and those with low expression of STMN1. (C and D) Target gene prediction analysis from website https://www.aclbi.com , which demonstrated that the expression level of MTA1 was significantly correlated with that of STMN1. STMN1, stathmin1; HIF-1α, hypoxia inducible factor-1alpha; MTA1, tumor metastasis-associated protein 1.

    Journal: Molecular and Clinical Oncology

    Article Title: Stathmin1 promotes lymph node metastasis in hypopharyngeal squamous cell carcinoma via regulation of HIF‑1α/VEGF‑A axis and MTA1 expression

    doi: 10.3892/mco.2023.2617

    Figure Lengend Snippet: Bioinformatics analyses for target genes and pathways of STMN1. (A) STMN1 was evidently enriched in the HIF-1α pathway in head and neck squamous cell carcinoma. (B) Gene expression levels of HIF-1α pathway were different between cases with high expression of STMN1 and those with low expression of STMN1. (C and D) Target gene prediction analysis from website https://www.aclbi.com , which demonstrated that the expression level of MTA1 was significantly correlated with that of STMN1. STMN1, stathmin1; HIF-1α, hypoxia inducible factor-1alpha; MTA1, tumor metastasis-associated protein 1.

    Article Snippet: The sections were subsequently incubated with rabbit anti-STMN1 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.), or rabbit anti-D2-40 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.) (Anti-D2-40 antibody was used to stain lymphatic vessels, and in stained lymphatic vessels, the presence of tumor embolus represented LVI) overnight at 4 ̊C.

    Techniques: Gene Expression, Expressing

    The mRNA and protein expression levels of the target genes of STMN1 in FaDu cells. (A-C) The relative mRNA and protein expression levels of HIF-1α were signifiicantly decreased after STMN1 knockdown with different shRNA sequences. (D) The relative expression level of VEGF-A, the downstream protein of HIF-1α, was significantly decreased after STMN1 knockdown. (E and F) Both relative mRNA and protein expression levels of MTA1 significantly decreased after STMN1 knockdown. All were compared with the NC shRNA group. * P<0.05, ** P<0.01 and *** P<0.001. STMN1, stathmin1; HIF-1α, hypoxia inducible factor-1alpha; shRNA, short hairpin RNA; VEGF, vascular endothelial growth factor; MTA1, tumor metastasis-associated protein 1; NC, negative control.

    Journal: Molecular and Clinical Oncology

    Article Title: Stathmin1 promotes lymph node metastasis in hypopharyngeal squamous cell carcinoma via regulation of HIF‑1α/VEGF‑A axis and MTA1 expression

    doi: 10.3892/mco.2023.2617

    Figure Lengend Snippet: The mRNA and protein expression levels of the target genes of STMN1 in FaDu cells. (A-C) The relative mRNA and protein expression levels of HIF-1α were signifiicantly decreased after STMN1 knockdown with different shRNA sequences. (D) The relative expression level of VEGF-A, the downstream protein of HIF-1α, was significantly decreased after STMN1 knockdown. (E and F) Both relative mRNA and protein expression levels of MTA1 significantly decreased after STMN1 knockdown. All were compared with the NC shRNA group. * P<0.05, ** P<0.01 and *** P<0.001. STMN1, stathmin1; HIF-1α, hypoxia inducible factor-1alpha; shRNA, short hairpin RNA; VEGF, vascular endothelial growth factor; MTA1, tumor metastasis-associated protein 1; NC, negative control.

    Article Snippet: The sections were subsequently incubated with rabbit anti-STMN1 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.), or rabbit anti-D2-40 polyclonal antibody (1:75) (Wuhan Boster Biological Technology, Ltd.) (Anti-D2-40 antibody was used to stain lymphatic vessels, and in stained lymphatic vessels, the presence of tumor embolus represented LVI) overnight at 4 ̊C.

    Techniques: Expressing, Knockdown, shRNA, Negative Control

    Relationship between STMN1 and its phosphorylation-related proteins and clinical outcomes for breast cancer patients. (A) Relationship between Kaplan-Meier analysis of DFS and STMN1 level by IHC (400×). (B) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser16 levelby IHC (400×). (C) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser25 levelby IHC (400×). (D) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser38 levelby IHC (400×). (E) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser63 levelby IHC (400×). (F) Relationship between Kaplan-Meier analysis of DFS and GRP78 level by IHC (400×). DFS, disease-free survival.

    Journal: Gland Surgery

    Article Title: The prognostic role of a phospho-Stathmin 1 signature in breast cancer treated with neoadjuvant chemotherapy

    doi: 10.21037/gs-22-628

    Figure Lengend Snippet: Relationship between STMN1 and its phosphorylation-related proteins and clinical outcomes for breast cancer patients. (A) Relationship between Kaplan-Meier analysis of DFS and STMN1 level by IHC (400×). (B) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser16 levelby IHC (400×). (C) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser25 levelby IHC (400×). (D) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser38 levelby IHC (400×). (E) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser63 levelby IHC (400×). (F) Relationship between Kaplan-Meier analysis of DFS and GRP78 level by IHC (400×). DFS, disease-free survival.

    Article Snippet: Polyclonal rabbit anti-human STMN1 antibody (Proteintech) was diluted to 1:400 and incubated with samples in a humid chamber at 4 °C overnight.

    Techniques: Phospho-proteomics

    Relationship between STMN1 phosphorylation and pathologic response. (A) Correlation between pathologic response and STMN1 expression. (B) Correlation between pathologic response and STMN1 phosphorylation at Ser-16. (C) Correlation between pathologic response and STMN1 phosphorylation at Ser-25. (D) Correlation between pathologic response and STMN1 phosphorylation at Ser-38. (E) Correlation between pathologic response and STMN1 phosphorylation at Ser-63. (F) Correlation between pathologic response and GRP78. pCR, pathological complete response.

    Journal: Gland Surgery

    Article Title: The prognostic role of a phospho-Stathmin 1 signature in breast cancer treated with neoadjuvant chemotherapy

    doi: 10.21037/gs-22-628

    Figure Lengend Snippet: Relationship between STMN1 phosphorylation and pathologic response. (A) Correlation between pathologic response and STMN1 expression. (B) Correlation between pathologic response and STMN1 phosphorylation at Ser-16. (C) Correlation between pathologic response and STMN1 phosphorylation at Ser-25. (D) Correlation between pathologic response and STMN1 phosphorylation at Ser-38. (E) Correlation between pathologic response and STMN1 phosphorylation at Ser-63. (F) Correlation between pathologic response and GRP78. pCR, pathological complete response.

    Article Snippet: Polyclonal rabbit anti-human STMN1 antibody (Proteintech) was diluted to 1:400 and incubated with samples in a humid chamber at 4 °C overnight.

    Techniques: Phospho-proteomics, Expressing

    p-STMN1/GRP78 model powerfully predicts DFS for patients treated with NACT. (A) Kaplan-Meier analysis of DFS in breast cancer patients from high and low-risk groups classified by the p-STMN1/GRP78 model. (B) ROC curves to test the prognostic accuracy of the p-STMN1/GRP78 model. DFS, disease-free survival; ROC, receiver operating characteristic; AUC, area under the receiver operating characteristic curve.

    Journal: Gland Surgery

    Article Title: The prognostic role of a phospho-Stathmin 1 signature in breast cancer treated with neoadjuvant chemotherapy

    doi: 10.21037/gs-22-628

    Figure Lengend Snippet: p-STMN1/GRP78 model powerfully predicts DFS for patients treated with NACT. (A) Kaplan-Meier analysis of DFS in breast cancer patients from high and low-risk groups classified by the p-STMN1/GRP78 model. (B) ROC curves to test the prognostic accuracy of the p-STMN1/GRP78 model. DFS, disease-free survival; ROC, receiver operating characteristic; AUC, area under the receiver operating characteristic curve.

    Article Snippet: Polyclonal rabbit anti-human STMN1 antibody (Proteintech) was diluted to 1:400 and incubated with samples in a humid chamber at 4 °C overnight.

    Techniques:

    Relationship between STMN1 and its phosphorylation-related proteins and clinical outcomes for breast cancer patients. (A) Relationship between Kaplan-Meier analysis of DFS and STMN1 level by IHC (400×). (B) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser16 levelby IHC (400×). (C) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser25 levelby IHC (400×). (D) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser38 levelby IHC (400×). (E) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser63 levelby IHC (400×). (F) Relationship between Kaplan-Meier analysis of DFS and GRP78 level by IHC (400×). DFS, disease-free survival.

    Journal: Gland Surgery

    Article Title: The prognostic role of a phospho-Stathmin 1 signature in breast cancer treated with neoadjuvant chemotherapy

    doi: 10.21037/gs-22-628

    Figure Lengend Snippet: Relationship between STMN1 and its phosphorylation-related proteins and clinical outcomes for breast cancer patients. (A) Relationship between Kaplan-Meier analysis of DFS and STMN1 level by IHC (400×). (B) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser16 levelby IHC (400×). (C) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser25 levelby IHC (400×). (D) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser38 levelby IHC (400×). (E) Relationship between Kaplan-Meier analysis of DFS and STMN1 phosphorylation at Ser63 levelby IHC (400×). (F) Relationship between Kaplan-Meier analysis of DFS and GRP78 level by IHC (400×). DFS, disease-free survival.

    Article Snippet: Polyclonal rabbit anti-human STMN1 Ser38 antibody (Cell Signaling Technologies) was diluted to 1:100 and incubated with samples in a humid chamber at 4 °C overnight. respectively.

    Techniques: Phospho-proteomics

    Relationship between STMN1 phosphorylation and pathologic response. (A) Correlation between pathologic response and STMN1 expression. (B) Correlation between pathologic response and STMN1 phosphorylation at Ser-16. (C) Correlation between pathologic response and STMN1 phosphorylation at Ser-25. (D) Correlation between pathologic response and STMN1 phosphorylation at Ser-38. (E) Correlation between pathologic response and STMN1 phosphorylation at Ser-63. (F) Correlation between pathologic response and GRP78. pCR, pathological complete response.

    Journal: Gland Surgery

    Article Title: The prognostic role of a phospho-Stathmin 1 signature in breast cancer treated with neoadjuvant chemotherapy

    doi: 10.21037/gs-22-628

    Figure Lengend Snippet: Relationship between STMN1 phosphorylation and pathologic response. (A) Correlation between pathologic response and STMN1 expression. (B) Correlation between pathologic response and STMN1 phosphorylation at Ser-16. (C) Correlation between pathologic response and STMN1 phosphorylation at Ser-25. (D) Correlation between pathologic response and STMN1 phosphorylation at Ser-38. (E) Correlation between pathologic response and STMN1 phosphorylation at Ser-63. (F) Correlation between pathologic response and GRP78. pCR, pathological complete response.

    Article Snippet: Polyclonal rabbit anti-human STMN1 Ser38 antibody (Cell Signaling Technologies) was diluted to 1:100 and incubated with samples in a humid chamber at 4 °C overnight. respectively.

    Techniques: Phospho-proteomics, Expressing

    p-STMN1/GRP78 model powerfully predicts DFS for patients treated with NACT. (A) Kaplan-Meier analysis of DFS in breast cancer patients from high and low-risk groups classified by the p-STMN1/GRP78 model. (B) ROC curves to test the prognostic accuracy of the p-STMN1/GRP78 model. DFS, disease-free survival; ROC, receiver operating characteristic; AUC, area under the receiver operating characteristic curve.

    Journal: Gland Surgery

    Article Title: The prognostic role of a phospho-Stathmin 1 signature in breast cancer treated with neoadjuvant chemotherapy

    doi: 10.21037/gs-22-628

    Figure Lengend Snippet: p-STMN1/GRP78 model powerfully predicts DFS for patients treated with NACT. (A) Kaplan-Meier analysis of DFS in breast cancer patients from high and low-risk groups classified by the p-STMN1/GRP78 model. (B) ROC curves to test the prognostic accuracy of the p-STMN1/GRP78 model. DFS, disease-free survival; ROC, receiver operating characteristic; AUC, area under the receiver operating characteristic curve.

    Article Snippet: Polyclonal rabbit anti-human STMN1 Ser38 antibody (Cell Signaling Technologies) was diluted to 1:100 and incubated with samples in a humid chamber at 4 °C overnight. respectively.

    Techniques:

    Journal: Cell Reports

    Article Title: Augmin-dependent microtubule self-organization drives kinetochore fiber maturation in mammals

    doi: 10.1016/j.celrep.2022.110610

    Figure Lengend Snippet:

    Article Snippet: Rabbit polyclonal anti-STMN1 , Proteintech , Cat# 11157-1-AP, RRID:AB_2197114.

    Techniques: Recombinant, Software