Searchable abstracts of presentations at key conferences in endocrinology

ea0015p389 | Thyroid | SFEBES2008

Regulation of VEGF and PlGF production by human thyroid follicular cells

Susarla Radhika , Watkinson John , Eggo Margaret

Vascular endothelial growth factors (VEGFs) support angiogenesis and thus tissue growth. They are synthesised and secreted by several cell types but their actions are normally limited to endothelial cells which express VEGF receptors (VEGFRs). Using qRT-PCR and Western blotting we found that normal human thyroid follicular cells also express VEGFRs (VEGFR1-3, neuropilin1 and 2). We have examined the regulation of the expression of VEGFs and PlGFs in the cells. Cells were fully...

ea0015p391 | Thyroid | SFEBES2008

Mechanisms regulating plasminogen activator production from human thyroid follicular cells

Susarla Radhika , Watkinson John , Eggo Margaret

We have recently shown that human thyroid follicular cells in culture secrete large amounts of active plasminogen activators (PAs). Thyroid cells also secrete large amounts of vascular endothelial growth factors (VEGFs) and express their receptors, the VEGFRs. PAs, as serine proteases, are known to process growth factors, particularly VEGFs into active forms. In endothelial cells, VEGFs stimulate PA production. We examined the effect of inhibiting VEGF signalling on thyroid fo...

ea0015p390 | Thyroid | SFEBES2008

Expression and subcellular localisation of VEGFRs in human thyroid follicular cells

Susarla Radhika , Gonzalez Ana-Maria , Watkinson John , Eggo Margaret

Using qRT-PCR, we found that normal human thyroid follicular cells in culture express the mRNAs for the receptors for vascular endothelial growth factors (VEGFRs). qRT-PCR revealed that the relative production of mRNAs for VEGFRs was neuropilin1=neuropilin2=VEGFR2>VEGFR1 >VEGFR3. Western blotting for phosphoVEGFR2 showed labelling of a 235 kDa protein with few degradation products. VEGFR2 is likely in its active, phosphorylated form, because thyroid cells secrete large...

ea0013p330 | Thyroid | SFEBES2007

Plasminogen activators in human thyroid follicular cells

Susarla Radhika , Watkinson John C , Eggo Margaret C

Human thyroid follicular cells in culture synthesise plasminogen activators, both urokinase (uPA) and tissue-type (tPA). The PAs secreted into the culture medium were active (2.5–50 U/ml) and able to mediate the conversion of plasminogen to plasmin. Secreted PA activity (PAA) was markedly increased by epidermal growth factor (EGF) and protein kinase C (PKC) activation with TPA. There was a corresponding increase in uPA and tPA mRNA levels and in uPA and tPA protein secret...

ea0025oc3.4 | Pituitary and thyroid | SFEBES2011

PTTG promotes mitogenic mechanisms in thyroid cells through autocrine pathways of interaction with growth factors

Lewy Gregory , Ryan Gavin , Stewart Sarah , Read Martin , Smith Vicki , Fong Jim , Warfield Adrian , Eggo Margaret , Seed Robert , Sharma Neil , Kwan Perkin , Franklyn Jayne , McCabe Christopher , Boelaert Kristien

The human pituitary tumor transforming gene (hPTTG) is overexpressed in thyroid cancers; it induces genetic instability and propagates growth through the induction of growth factors. We investigated the pathways of interaction between hPTTG and epidermal growth factor (EGF), transforming growth factor-α (TGF-α), insulin-like growth factor 1 (IGF1) and basic fibroblast growth factor (FGF2) in vitro and in vivo. Synchronised K1 and TPC-1 papillary thyroid...

ea0025p198 | Endocrine tumours and neoplasia | SFEBES2011

PTTG and PBF: targets for enhancement of radioiodine uptake in thyroid tumours

Lewy Gregory , Read Martin , Smith Vicki , Jim Fong , Ryan Gavin , Stewart Sarah , Seed Robert , Sharma Neil , Kwan Perkin , Eggo Margaret , Franklyn Jayne , McCabe Christopher , Boelaert Kristien

Iodide uptake via the sodium iodide symporter (NIS) is reduced in many thyroid cancers, resulting in poor prognosis following treatment with 131I. The pituitary tumor transforming gene (PTTG) and its binding factor (PBF) are proto-oncogenes implicated in thyroid tumourigenesis and we previously demonstrated PTTG and PBF-induced repression of NIS in vitro. We have recently generated murine transgenic models of targeted overexpression of PBF and PTTG in the thy...

ea0021p124 | Cytokines and growth factors | SFEBES2009

PTTG promotes mitogenic mechanisms in thyroid cells through autocrine pathways of interaction with TGF-α, EGF and IGF1

Lewy Greg , Ryan Gavin , Read Martin , Smith Vicki , Fong Jim , Warfield Adrian , Eggo Margaret , Seed Robert , Sharma Neil , Perkin Kwan , Franklyn Jayne , McCabe Christopher , Boelaert Kristien

The human pituitary tumor transforming gene (hPTTG) is overexpressed in thyroid cancers; it induces genetic instability and propagates growth through the induction of growth factors. We set out to investigate the autocrine and paracrine pathways of interaction between hPTTG and epidermal growth factor (EGF), transforming growth factor-α (TGF-α) and insulin-like growth factor 1 (IGF1) in vitro and in vivo. Synchronised K1 papillary thyroid carcinoma cell...

ea0025oc3.8 | Pituitary and thyroid | SFEBES2011

Assessment of the UK iodine status: a National Survey

Vanderpump Mark , Lazarus John , Smyth Peter , Burns Robert , Eggo Margaret , Han Thang , Williams Graham , Torlinska Barbara , Mullan Karen , Pearce Simon , Razvi Salman , Lean Mike , Aspray Emile Combet , Bannon Denise , Abraham Prakash , Vadia Bijay , Leese Graham , Laurberg Peter , Boelaert Kristien , Franklyn Jayne

Inadequate dietary iodine intake is the most common cause of preventable mental impairment worldwide and is defined by the WHO as a population median urinary iodine (UI) excretion <100 μg/l. No contemporary data are available for the UK according to the ICCIDD. The UK has no programme of food/salt iodination.We have performed a systematic assessment of the current UK iodine status in 14–15 years old schoolgirls. Seven hundred and eighty-fiv...