Midkine and pleiotrophin expression in normal and malignant breast tissue
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Summary
The angiogenic growth factor, pleiotrophin, was demonstrated previously in human breast carcinoma tissues; however, the pattern of pleiotrophic expression in normal breast tissues has not been established.
- Type
- article
- Published
- 1994-09-01
- Cited by
- 199
- References
- 34
- Access
- Open access
- OpenAlex
- https://openalex.org/W7520350
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:23520462
Keywords
Advisory committee, Political science, Public administration, Business
References
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- Molecular cloning of the 18-kDa growth-associated protein of developing brain.
- Pleiotrophin stimulates fibroblasts and endothelial and epithelial cells and is expressed in human cancer.
- Characterization of estrogen responsive transforming activity in human breast cancer cell lines.
- Genomic structure of human midkine (MK), a retinoic acid-responsive growth/differentiation factor.
- Reciprocal expression of pleiotrophin and midkine in normal versus malignant lung tissues.
- A novel 17 kD heparin-binding growth factor (HBGF-8) in bovine uterus: purification and N-terminal amino acid sequence.
- Expression of the transforming growth factor-alpha/epidermal growth factor receptor pathway in normal human breast epithelial cells.
- Cloning, nucleotide sequence, and chromosome localization of the human pleiotrophin gene.
- Growth factor expression in normal, benign, and malignant breast tissue
- Transforming growth factor-alpha messenger RNA localization in the developing adult rat and human mammary gland by in situ hybridization.
- Insulin‐like growth factor‐1 receptors and insulin‐like growth factor‐1‐like activity in human primary breast cancer
- Purification of recombinant midkine and examination of its biological activities: functional comparison of new heparin binding factors.
- Epidermal and transforming growth factor alpha in patients with breast tumours.
- A retinoic acid responsive gene MK found in the teratocarcinoma system is expressed in spatially and temporally controlled manner during mouse embryogenesis
- Expression of transforming growth factor alpha and its messenger ribonucleic acid in human breast cancer: its regulation by estrogen and its possible functional significance.
- Purification and characterization of a novel growth factor from human breast cancer cells.
Cited by
- Midkine as a prognostic biomarker in oral squamous cell carcinoma
- Therapeutic approaches targeting midkine suppress tumor growth and lung metastasis in osteosarcoma.
- Assessing tumor angiogenesis in histological samples.
- Markers of tumor angiogenesis: clinical applications in prognosis and anti-angiogenic therapy
- Angiogenesis as a biologic and prognostic indicator in human breast carcinoma.
- Midkine Inhibits Caspase‐Dependent Apoptosis via the Activation of Mitogen‐Activated Protein Kinase and Phosphatidylinositol 3‐Kinase in Cultured Neurons
- Research for Single Nucleotide Polymorphism of Midkine Gene in Korean Colorectal Cancer Patients
- The expression and location of midkine in gastric carcinomas of Chinese patients.
- The midkine family in cancer, inflammation and neural development.
- Investigating the function of Anaplastic Lymphoma Kinase
- ÉVALUATION DES PROTEINES MIDKINE ET SURVIVINE SUREXPRIMEES DANS LES CELLULES TUMORALES COMME CIBLES DE L'IMMUNITE CELLULAIRE ANTI-TUMORALE
- Midkine proteins in cardio-vascular disease. Where do we come from and where are we heading to?
- Differential expression of pleiotrophin and midkine in advanced neuroblastomas.
- Upregulation of Pleiotrophin Gene Expression in Developing Microvasculature, Macrophages, and Astrocytes after Acute Ischemic Brain Injury
- Pleiotrophin and its Role in Regulating Haemopoietic Stem Cell Regeneration
- A midkine promoter-based conditionally replicative adenovirus for treatment of pediatric solid tumors and bone marrow tumor purging.
- Midkine expression in oral squamous cell carcinoma and leukoplakia.
- The angiogenic factor midkine is expressed in bladder cancer, and overexpression correlates with a poor outcome in patients with invasive cancers.
- Construction of a fusion protein expression vector MK-EGFP and its subcellular localization in different carcinoma cell lines.
- Expression of midkine and endoglin in breast carcinomas with different immunohistochemical profiles
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