Search PubMed⌕ Search

Biomedical subjects

J-L Wémeau

Publications and source records attributed to J-L Wémeau.

5 recordsLinked to original sources

[Status of iodine nutrition in France: prevention of iodine deficiency in pregnant and lactating women].

Iodine intake varies with age and physiological status: in pregnant and lactating women, recommended iodine intake ranges from 200 to 250 mg/day. Recent epidemiological studies in France demonstrate the presence of moderate iodine deficiency in the majority of pregnant and lactating women. This iodine deficiency induces maternal thyroid hyperplasia and then development of goiter in women, as well as impaired thyroid parameters. Maternal hypothyroxinemia during the first trimester of pregnancy can be associated with abnormal cognitive development and intellectual outcomes in the newborn and the children. According to the recent World Health Organization recommendations for the prevention and control of iodine deficiency in pregnant and lactating women, systematic iodine supplementation is indicated in France: 100 microg/day for women of reproductive age and 200 microg/day in pregnant and lactating women in order to eradicate iodine deficiency during pregnancy and lactation, and prevent the maternal and fetal consequences.

Female↗

[Hereditary hypophosphatemia in adults].

Hereditary hypophosphatemic rickets groups together X-linked hypophosphatemic rickets (XLH), autosomal dominant hypophosphatemic rickets (ADHR) and hereditary hypophosphatemic rickets with hypercalciuria (HHRH, autosomal recessive). Clinical and biological characteristics and treatment depend on specific etiology. Mutations causing hereditary hypophosphatemic rickets involve PHEX located on Xp11.22 for XLH and FGF-23 located on 12p13 for ADHR. The gene involved in HHRH remains unknown: candidates may encode proteins that modulate phosphate transporter expression or activity. Others forms of rickets must be ruled out: acquired hypophosphatemia due to oncogenic osteomalacia, X-linked recessive hypophosphatemic rickets or Dent's disease, and hereditary 1, 25-dihydroxyvitamin D-resistant rickets with a defect either in the 1-alpha-hydroxylase gene (pseudo-vitamin D deficiency rickets, PDDR) or in the vitamin D receptor (hereditary vitamin D-resistant rickets, HVDRR).

Adult↗

Non Hodgkin's lymphoma involving the adrenal glands and the central nervous system (CNS): a particular evolution after chemotherapy.

Adrenal lymphoma is extremely rare. The prognostic depends on involvement of other organs (such as the central nervous system) responsible for lower median survival. We report the case of a 51-year-old man with non Hodgkin's Diffuse Large B Cell Lymphoma (DLBCL) involving the central nervous system (CNS) and the adrenal glands simultaneously. The endocrine exploration revealed a partial adrenal insufficiency and ruled out a pheochromocytoma. Computerized tomographic (CT) scan directed needle biopsy of the adrenal gland allowed the diagnostic of non-Hodgkin lymphoma (NHL). CNS biopsies showed similar histopathologic lesions. After aggressive polychemotherapy and methotrexate intrathecal injection, a dissociated therapeutic response was observed with a decrease of the cerebral lesion and an increase of the adrenal mass. This result may be explained by the efficacy of corticosteroid therapy on cerebral edema. The prognosis was poor with tumor infiltration of the leptomeninges and death 16 months after diagnosis.

Adrenal Gland Neoplasms↗

[Hypercalciuria].

The frequency of hypercalciuria is increasing in western countries with an incidence of nephrolithiasis which can reach 13%. Hypercalciuria appears as an alteration of the calcium transport system (kidney, bowel, bone) which is regulated by calcitriol and parathormone. The aim of this review was to screen etiologies of hypercalciuria taking into account recent genetic advances (calcium epithelial channel and calcium sensing receptor). Hypercalciuria may be favored by nutritional causes (diet rich in calcium, sodium, carbohydrates, proteins, poor in phosphates and potassium). It may also be related to an increase in calcium absorption (vitamin D excess, primary hyperparathyroidism, sarcoidosis, lymphoma, estrogens, and certain genetic causes), an increase in osteoresorption (bone metastasis, myeloma, Paget, hyperthyroidism, immobilization, hypercortisolism and corticosteroid therapy), or a decrease of kidney tubular resorption (diuretics, Cacci and Ricci, acromegally, Bartter, familial dominant hypocalcemia, Fanconi, Dent, familial hypomagnesemia-hypercalciuria syndrome, type 1 distal tubular acidosis, pseudohypoaldosteronism, diabetes). If no cause is identified, persistence of hypercalciuria after instituting a correct diet is defined as idiopathic hypercalciuria. Treatment of the cause is essential in secondary hypercalciuria, in addition to diet (low sodium intake, normocalcic diet, hydration), associated with thiazide diuretics and biphosphonates if necessary.

Biological Transport↗

[Multiple endocrine neoplasias. Recent advances in clinical and genetic diagnosis].

PURPOSE: Multiple endocrine neoplasias (MEN) are autosomal dominant inherited syndromes characterized by the association of different glandular lesions in several members of the same kindred. The main clinical features of MEN 1 include primary hyperparathyroidism, pancreatic islet cell tumors and pituitary adenomas; less common features are adrenal adenomas, thymic and bronchial carcinoid tumors, lipomas and various cutaneous lesions. The MEN 2 syndromes (MEN 2A, MEN 2B and familial medullary thyroid carcinomas) are characterized by high penetrance of medullary thyroid carcinoma and differ in their variable expression of pheochromocytoma, hyperparathyroidism and other clinical features. CURRENT KNOWLEDGE AND KEY POINTS: MEN 1 tumor suppressor gene encodes a nuclear protein, menin, which interacts with different regulation transcription factors. The MEN 2 syndromes are caused by germ-line mutations of the RET proto-oncogene, which encodes a transmembrane tyrosine kinase. Genetic testing for mutations in these 2 genes allows identification of individuals predisposed to the disease, early diagnosis, and clinical and therapeutic management. FUTURE PROSPECTS AND PROJECTS: Fundamental approach will allow a best comprehension of physiopathogenic mechanisms of these disorders and the improvement of therapeutic management.

Genetic Testing↗