人心脏成纤维细胞(Sciencell进口)
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人心脏成纤维细胞(Sciencell进口)

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  • 2025年12月07日
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 英文名

      Human Cardiac Fibroblasts

    • 库存

      999

    • 品系

      原代细胞

    • 组织来源

      人心脏组织

    • 物种来源

    • 器官来源

      心脏

    • 运输方式

      干冰

    • 规格

      5 x 10^5 cells/vial

    人心脏成纤维细胞说明:心脏成纤维细胞(CF)是构成心脏的主要细胞类型。它们对于心肌细胞起结构支持作用,在生长和病理条件下,负责细胞外基质的合成。CF是心肌损伤反应的重要细胞成分,并能产生旁分泌生长因子。CF的增殖和基质合成对于心肌梗塞、心肌纤维化部位瘢痕形成具有重要作用,并常并发心脏肥厚。CF通过调节整合素的表达来适应病理情况下周围环境的变化。CF的培养已被广泛应用为生理(运动)和病理(高血压)应激下心脏基质重塑研究的模型。

    人心脏成纤维细胞(HCF)提取于人心脏组织,于原代冻存。每管含有细胞数>5×105cells/ml。此细胞通过纤维连接蛋白抗体免疫荧光检测方法验证。经测试不含有HIV-1、HBV、HCV、支原体、细菌、酵母和真菌。细胞可以达到15倍增。

    推荐培养基:成纤维细胞专用培养液 (FM, Cat. No. 2331)

    产品使用说明:仅供科研研究使用!

     

    引用文献

    1. Chida J, Araki H, Maeda Y. (2014) "Specific growth suppression of human cancer cells by targeted delivery of Dictyostelium mitochondrial ribosomal protein S4." Cancer cell int. 14: 56.

    2. Huntley BK, Ichiki T, Sangaralingham SJ, Chen HH, Burnett JC Jr. (2010) "B-type natriuretic peptide and extracellular matrix protein interactions in human cardiac fibroblasts." J Cell Physiol. 225: 251-5.

    3. Lin CS, Pan CH, Wen CH, Yang TH, Kuan TC. (2010) "Regulation of angiotensin converting enzyme II by angiotensin peptides in human cardiofibroblasts." Peptides. 31: 1334-40.

    4. Westenbrink BD, Ruifrok WP, Voors AA, Tilton RG, van Veldhuisen DJ, Schoemaker RG, van Gilst WH, de Boer RA. (2010) "Vascular endothelial growth factor is crucial for erythropoietin-induced improvement of cardiac function in heart failure." Cardiovasc Res. 87: 30-9.

    5. Huntley BK, Ichiki T, Sangaralingham SJ, Chen HH, Burnett JC. (2010) "B?type natriuretic peptide and extracellular matrix protein interactions in human cardiac fibroblasts." J of cell physiol. 225: 251-55.

    6. McKie PM, Cataliotti A, Huntley BK, Martin FL, Olson TM, Burnett JC Jr. (2009) "A human atrial natriuretic peptide gene mutation reveals a novel peptide with enhanced blood pressure-lowering, renal-enhancing, and aldosterone-suppressing actions." J Am Coll Cardiol. 54: 1024-32.

    7. Lisy O, Huntley BK, McCormick DJ, Kurlansky PA, Burnett JC Jr. (2008) "Design, synthesis, and actions of a novel chimeric natriuretic peptide: CD-NP." J Am Coll Cardiol. 52: 60-8.

    8. Pan CH, Wen CH, Lin CS. (2008) "Interplay of angiotensin II and angiotensin(1-7) in the regulation of matrix metalloproteinases of human cardiocytes." Exp Physiol. 93: 599-612.

    9. Reddy VS, Harskamp RE, van Ginkel MW, Calhoon J, Baisden CE, Kim IS, Valente AJ, Chandrasekar B. (2008) "Interleukin-18 stimulates fibronectin expression in primary human cardiac fibroblasts via PI3K-Akt-dependent NF-kappaB activation." J Cell Physiol. 215: 697-707.

    10. Saxena A, Fish JE, White MD, Yu S, Smyth JW, Shaw RM, DiMaio JM, Srivastava D. (2008) "Stromal cell-derived factor-1alpha is cardioprotective after myocardial infarction." Circulation. 117: 2224-31.

    11. Bunda S, Liu P, Wang Y, Liu K, Hinek A. (2007) "Aldosterone induces elastin production in cardiac fibroblasts through activation of insulin-like growth factor-I receptors in a mineralocorticoid receptor-independent manner." Am J Pathol. 171: 809-19.

    12. Cortez DM, Feldman MD, Mummidi S, Valente AJ, Steffensen B, Vincenti M, Barnes JL, Chandrasekar B. (2007) "IL-17 stimulates MMP-1 expression in primary human cardiac fibroblasts via p38 MAPK- and ERK1/2-dependent C/EBP-beta , NF-kappaB, and AP-1 activation." Am J Physiol Heart Circ Physiol. 293: H3356-65.

    13. Noser JA, Mael AA, Sakuma R, Ohmine S, Marcato P, Lee PW, Ikeda Y. (2007) "The RAS/Raf1/MEK/ERK Signaling Pathway Facilitates VSV-mediated Oncolysis: Impli cation for the Defective Interferon Response in Cancer Cells." Mol Ther. 15: 1531-6.

    14. Huntley BK, Sandberg SM, Noser JA, Cataliotti A, Redfield MM, Matsuda Y, Burnett JC Jr. (2006) "BNP-induced activation of cGMP in human cardiac fibroblasts: Interactions with fibronectin and natriuretic peptide receptors." J Cell Physiol. 209: 943-9.

    15. Doxorubicin induces trans-differentiation and MMP1 expression in cardiac fibroblasts via cell death-independent pathways,PLoS One. 2019; 14(9): e0221940.Published online 2019 Sep 12. doi: 10.1371/journal.pone.0221940

    16. Tumor‐stroma interactions differentially alter drug sensitivity based on the origin of stromal cells,Mol Syst Biol. 2018 Aug; 14(8): e8322.Published online 2018 Aug 6. doi: 10.15252/msb.20188322

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    图标文献和实验
    该产品被引用文献

    1. Chida J, Araki H, Maeda Y. (2014) "Specific growth suppression of human cancer cells by targeted delivery of Dictyostelium mitochondrial ribosomal protein S4." Cancer cell int. 14: 56.

    2. Huntley BK, Ichiki T, Sangaralingham SJ, Chen HH, Burnett JC Jr. (2010) "B-type natriuretic peptide and extracellular matrix protein interactions in human cardiac fibroblasts." J Cell Physiol. 225: 251-5.

    3. Lin CS, Pan CH, Wen CH, Yang TH, Kuan TC. (2010) "Regulation of angiotensin converting enzyme II by angiotensin peptides in human cardiofibroblasts." Peptides. 31: 1334-40.

    4. Westenbrink BD, Ruifrok WP, Voors AA, Tilton RG, van Veldhuisen DJ, Schoemaker RG, van Gilst WH, de Boer RA. (2010) "Vascular endothelial growth factor is crucial for erythropoietin-induced improvement of cardiac function in heart failure." Cardiovasc Res. 87: 30-9.

    5. Huntley BK, Ichiki T, Sangaralingham SJ, Chen HH, Burnett JC. (2010) "B?type natriuretic peptide and extracellular matrix protein interactions in human cardiac fibroblasts." J of cell physiol. 225: 251-55.

    6. McKie PM, Cataliotti A, Huntley BK, Martin FL, Olson TM, Burnett JC Jr. (2009) "A human atrial natriuretic peptide gene mutation reveals a novel peptide with enhanced blood pressure-lowering, renal-enhancing, and aldosterone-suppressing actions." J Am Coll Cardiol. 54: 1024-32.

    7. Lisy O, Huntley BK, McCormick DJ, Kurlansky PA, Burnett JC Jr. (2008) "Design, synthesis, and actions of a novel chimeric natriuretic peptide: CD-NP." J Am Coll Cardiol. 52: 60-8.

    8. Pan CH, Wen CH, Lin CS. (2008) "Interplay of angiotensin II and angiotensin(1-7) in the regulation of matrix metalloproteinases of human cardiocytes." Exp Physiol. 93: 599-612.

    9. Reddy VS, Harskamp RE, van Ginkel MW, Calhoon J, Baisden CE, Kim IS, Valente AJ, Chandrasekar B. (2008) "Interleukin-18 stimulates fibronectin expression in primary human cardiac fibroblasts via PI3K-Akt-dependent NF-kappaB activation." J Cell Physiol. 215: 697-707.

    10. Saxena A, Fish JE, White MD, Yu S, Smyth JW, Shaw RM, DiMaio JM, Srivastava D. (2008) "Stromal cell-derived factor-1alpha is cardioprotective after myocardial infarction." Circulation. 117: 2224-31.

    11. Bunda S, Liu P, Wang Y, Liu K, Hinek A. (2007) "Aldosterone induces elastin production in cardiac fibroblasts through activation of insulin-like growth factor-I receptors in a mineralocorticoid receptor-independent manner." Am J Pathol. 171: 809-19.

    12. Cortez DM, Feldman MD, Mummidi S, Valente AJ, Steffensen B, Vincenti M, Barnes JL, Chandrasekar B. (2007) "IL-17 stimulates MMP-1 expression in primary human cardiac fibroblasts via p38 MAPK- and ERK1/2-dependent C/EBP-beta , NF-kappaB, and AP-1 activation." Am J Physiol Heart Circ Physiol. 293: H3356-65.

    13. Noser JA, Mael AA, Sakuma R, Ohmine S, Marcato P, Lee PW, Ikeda Y. (2007) "The RAS/Raf1/MEK/ERK Signaling Pathway Facilitates VSV-mediated Oncolysis: Impli cation for the Defective Interferon Response in Cancer Cells." Mol Ther. 15: 1531-6.

    14. Huntley BK, Sandberg SM, Noser JA, Cataliotti A, Redfield MM, Matsuda Y, Burnett JC Jr. (2006) "BNP-induced activation of cGMP in human cardiac fibroblasts: Interactions with fibronectin and natriuretic peptide receptors." J Cell Physiol. 209: 943-9.

    15. Doxorubicin induces trans-differentiation and MMP1 expression in cardiac fibroblasts via cell death-independent pathways,PLoS One. 2019; 14(9): e0221940.Published online 2019 Sep 12. doi: 10.1371/journal.pone.0221940

    16. Tumor‐stroma interactions differentially alter drug sensitivity based on the origin of stromal cells,Mol Syst Biol. 2018 Aug; 14(8): e8322.Published online 2018 Aug 6. doi: 10.15252/msb.20188322

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