Tumours acquire their vasculature by vessel incorporation, not vessel ingrowth
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Summary
The results imply, however, that tumours acquire their vasculature by infiltration into, and expansion between, a network of newly formed vessels in the surrounding connective tissue.
- Type
- article
- Published
- 1987-04-01
- Cited by
- 100
- References
- 21
- OpenAlex
- https://openalex.org/W1972676423
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:23133370
Keywords
Connective tissue, Pathology, Angiogenesis, Vascular tissue, Subcutaneous tissue
References
- Differences in growth and morphology between the spontaneous C3H mammary carcinoma in the mouse and its syngeneic transplants
- Relation of vascular proliferation to tumor growth.
- Quantitative techniques for study of the anatomy and function of small blood vessels in tumors.
- ISOLATION OF A TUMOR FACTOR RESPONSIBLE FOR ANGIOGENESIS
- The vascularisation of Brown-Pearce carcinoma implanted in rabbit liver.
- Angiogenesis factor from human myocardial infarcts.
- THROMBOPLASTIC AND FIBRINOLYTIC ACTIVITIES OF V2 AND V7 CARCINOMAS OF RABBIT, WITH SPECIAL REFERENCE TO FIBRIN DEPOSITION AND THROMBUS FORMATION IN THE TUMORS
- Activated macrophages induce vascular proliferation
- Endothelial-cell proliferation in experimental tumours.
- Fibrin degradation and angiogenesis: Quantitative analysis of the angiogenic response in the chick chorioallantoic membrane
- Tumor Behavior in Isolated Perfused Organs: In Vitro Growth and Metastases of Biopsy Material in Rabbit Thyroid and Canine Intestinal Segment
- Induction of neovascularization in vivo and endothelial proliferation in vitro by tumor-associated macrophages.
- Mast cell changes and tumour dissemination in human breast carcinoma.
- Corneal vascularization. Role of lactic acid.
- Ciba Foundation Symposium
- Vascularization of the Brown Pearce rabbit epithelioma transplant as seen in the transparent ear chamber
Cited by
- Pimonidazole binding in C6 rat brain glioma: relation with lipid droplet detection
- Proteolytic Activity During the Growth of C6 Astrocytoma in the Murine Spheroid Implantation Model
- Differential assessment of angiogenic activity and of vascular survival ability (VSA) in breast cancer
- Opportunities and challenges in tumor angiogenesis research: back and forth between bench and bed.
- Physiology of monoclonal antibody accretion by tumors.
- Angiogenesis in breast cancer.
- Capillary ultrastructure and microcirculatory function of malignant tumors.
- Morphological aspects of angiogenesis in experimental liver metastases.
- Alternative vascularization mechanisms in cancer: Pathology and therapeutic implications.
- Intratumor microvessel density as a prognostic factor in cancer.
- Invasion as limitation to anti-angiogenic glioma therapy.
- Correlation between intratumor microvessel density and Ki-67 malignancy marker in bitch mammary cancer.
- Angiogenesis in brain tumors; pathobiological and clinical aspects
- Angiogenesis determines blood flow, metabolism, growth rate, and ATPase kinetics of tumors growing in an irradiated bed: 31P and 2H nuclear magnetic resonance studies.
- ‘Invading edge vs. inner’ (edvin) patterns of vascularization: an interplay between angiogenic and vascular survival factors defines the clinical behaviour of non‐small cell lung cancer
- Angiogenesis in human liver tumors
- Action of Lovastatin (Mevinolin) on an in vitro model of angiogenesis and its co-culture with malignant melanoma cell lines
- How tumors become angiogenic.
- Tumour angiogenesis: vascular growth and survival
- Tumor Angiogenesis as a Target for Dietary Cancer Prevention
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