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Biomedical subjects

A Flyvbjerg

Publications and source records attributed to A Flyvbjerg.

218 records · Page 13Linked to original sources

Growth hormone receptor antagonist administration inhibits growth of human colorectal carcinoma in nude mice.

Increasing evidence has accumulated in support of the hypothesis that growth hormone (GH) and insulin-like growth factors (IGFs) play a role in carcinogenesis. In order to test this hypothesis, female nude mice were xenografted with two different human colorectal cancer cell lines (COLO 205 and HT-29) and randomized to receive placebo or a GH receptor antagonist (GHRA) (B2036-PEG) every second day for 16 days. The tumour volume was measured in each animal throughout the study and by the end of the experiment the tumour weights were recorded. After 16 days of therapy in nude mice with the COLO 205 colorectal cancer, GHRA treatment caused a 39% reduction in tumour volume (p < 0.02) and a 44% reduction in tumour weight (p < 0.01). GHRA treatment equally reduced circulating IGF-I and IGFBP-3 levels, while apoptosis was increased in the treatment group. Expression of IGF-I, IGF-II and the corresponding receptors in COLO 205 tumours was also decreased by the treatment. GHRA had no effect on the growth of the HT-29 colorectal cancer despite pronounced reduction in serum IGF-I. The present study thereby demonstrates a central role for the GH/IGF system in the pathogenesis of some colorectal cancers and suggests that specific GHR blockade may present a new concept in the treatment of colorectal cancer.

Adenocarcinoma↗

Effect of lanreotide on local kidney IGF-I and renal growth in experimental diabetes in the rat.

Initial diabetic renal hypertrophy is preceded by a transient increase in kidney insulin-like growth factor I(IGF-I). In the present study streptozotocin-diabetic rats were treated with a new somatostatin analogue (lanreotide), insulin or placebo for 7 days and compared to non-diabetic control rats. Kidney IGF-I changes were examined in the renal cortex, medulla, and whole kidney homogenates. The renal cortex contained approximately 5.5 times more IGF-I than the renal medulla (p < 0.01); further, IGF-I increased transiently and more pronouncedly in the renal cortex compared to the medulla. Lanreotide treatment significantly inhibited diabetic renal and glomerular growth compared to placebo-treated diabetic rats. Further, lanreotide treatment was followed by a significantly lower medulla IGF-I by day 2, while lanreotide had no effect on cortex IGF-I accumulation. In conclusion, IGF-I accumulated transiently and was more pronounced in the real cortex compared to the renal medulla and, further, lanreotide prevented diabetic renal and glomerular growth bringing new evidence that intervention with somatostatin analogues may have a role in the prevention of experimental diabetic kidney disease.

Animals↗