PubMed Health⌕ Search

Biomedical subjects

L M Moreno

Publications and source records attributed to L M Moreno.

3 recordsLinked to original sources

MSX1 and orofacial clefting with and without tooth agenesis.

MSX1 has been considered a strong candidate for orofacial clefting, based on mouse expression studies and knockout models, as well as association and linkage studies in humans. MSX1 mutations are also causal for hereditary tooth agenesis. We tested the hypothesis that individuals with orofacial clefting with or without tooth agenesis have MSX1 coding mutations by screening 33 individuals with cleft lip with or without cleft palate (CL/P) and 19 individuals with both orofacial clefting and tooth agenesis. Although no MSX1 coding mutations were identified, the known 101C > G variant occurred more often in subjects with both CL/P and tooth agenesis (p = 0.0008), while the *6C-T variant was found more often in CL/P subjects (p = 0.001). Coding mutations in MSX1 are not the cause of orofacial clefting with or without tooth agenesis in this study population. However, the significant association of MSX1 with both phenotypes implies that MSX1 regulatory elements may be mutated.

Adolescent↗

Prurigo nodularis associated with malabsorption.

The case of a 72-year-old female with a syndrome of malabsorption associated with prurigo nodularis is reported. The patient had been suffering from these disorders for 16 years. The pathological alteration of her malabsorption syndrome was an idiopathic sprue. 5 months after treatment with gluten-free diet supplemented with vitamins and iron, the disappearance of the clinical and analytical alterations was complete.

Aged↗

[Oxygen uptake and active transport of glucose by small intestine of lizard Lacerta galloti (author's transl)].

The lizard intestine capability for active transport of D-glucose has been studied in vitro at 30 degrees C. A release of glucose and fructose from intestinal tissue to the medium took place throughout the incubation period. An active transport of glucose against a concentration gradient from the mucosal to the serosal compartment was found, but in a Na+--free medium (Tris as a substitute) this process was strongly inhibited--. The oxygen uptake was 50% higher in the presence of glucose than in its absence.

Animals↗