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Biology subjects

de Araujo, E. P.

Publications and source records attributed to de Araujo, E. P..

2 recordsLinked to original sources

A Diabetic Mice Model For Studying Skin Wound Healing

Advances in wound treatment depend on the availability of suitable animal models. All animal models try to reflect human wound healing problems. For acute wounds, it is easier to obtain adequate animal models, however, for chronic wounds such as those found in individuals with diabetic foot ulcer, approximations of the clinical picture become a challenge. Nowadays, the key points of wound healing processes are better understood, and therefore, therapeutic strategies can be developed to manipulate wound repair. Research efforts involves the development of therapies to aid in the treatment of impaired wound healing and, to improving normal wound healing to drive a process close to regenerative. To achieve a better animal model that is more appropriate for studying wound healing, six-week- old male C57BL/6 mice were separated into groups fed a Chow and High-Fat Diet for 0.5, 3, and 6 months, when part of the animals were induced to diabetes by streptozotocin. Then, mice were submitted to metabolic, molecular, and morphological analyses. We show that this model results in a severe metabolic phenotype with insulin resistance, reduced insulin expression, and glucose intolerance associated with obesity and, more importantly, skin changes. Furthermore, the skin phenotype, both structurally and transcriptionally, overlapped with conditions found in elderly patients with DM that reproduce the phenotype of most patients who develop diabetic foot ulcers.

physiology↗

Glutamic acid promotes hair growth in mice

Glutamic Acid is the main excitatory neurotransmitter in neurons. Abnormal distributions of the glutamic acid receptors have been shown in hyper proliferative models such as psoriasis and skin regeneration. However, the biological function of glutamic acid in the skin remains unclear. Using ex vivo, in vivo and in silico approaches, we showed for the first time that exogenous glutamic acid promotes hair growth and keratinocyte proliferation. Topical application of glutamic acid decreased expression of genes related to apoptosis signaling in the skin. Also, we showed Glutamic acid increased viability and proliferation in cultured human keratinocyte. For the first time, we identified the excitotoxic GA concentration and we provided evidence for the existence of a novel skin signaling pathway mediated by a neurotransmitter controlling keratinocyte and hair follicle proliferation. In perspective, we anticipate our results could be the starting point to elucidate how exogenous glutamic acid from food intake or even endogenous GA from neuropsychiatric disorders modulate skin diseases.

pharmacology and toxicology↗