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1.
J Am Assoc Lab Anim Sci ; 54(5): 487-96, 2015 Sep.
Article in English | MEDLINE | ID: mdl-26424246

ABSTRACT

Ulcerative dermatitis (UD) is a spontaneous idiopathic disease that often affects C57BL/6 mice or mice on a C57BL/6 background. UD is characterized by intense pruritus and lesion formation, most commonly on the head or dorsal thorax. Self-trauma likely contributes to wound severity and delayed wound healing. Histologically, changes are nonspecific, consisting of ulceration with neutrophilic and mastocytic infiltration and epithelial hyperplasia and hyperkeratosis. Diet appears to have a profound effect on the development and progression of UD lesions. We investigated the incidence and severity of UD in C57BL/6NCrl mice on a high-fat western-style diet (HFWD) compared with a standard rodent chow. In addition, we examined the protective effects of dietary supplementation with a multimineral-rich product derived from marine red algae on UD in these 2 diet groups. HFWD-fed mice had an increased incidence of UD. In addition, mice on a HFWD had significantly more severe clinical and histologic lesions. Dietary mineral supplementation in mice on a HFWD decreased the histologic severity of lesions and reduced the incidence of UD in female mice in both diets. In conclusion, a high-fat western-style diet may potentiate UD in C57BL/6NCrl mice. Insufficient mineral supply and mineral imbalance may contribute to disease development. Mineral supplementation may be beneficial in the treatment of UD.


Subject(s)
Dermatitis/veterinary , Dietary Supplements , Mice, Inbred C57BL , Rodent Diseases/etiology , Trace Elements/deficiency , Animals , Dermatitis/etiology , Dermatitis/pathology , Diet, Fat-Restricted , Diet, High-Fat , Female , Male , Mice , Rhodophyta , Rodent Diseases/pathology , Species Specificity , Trace Elements/administration & dosage
2.
Wound Repair Regen ; 16(1): 117-24, 2008.
Article in English | MEDLINE | ID: mdl-18211583

ABSTRACT

MDI 301 is a picolinic acid-substituted ester of 9-cis retinoic acid. It has been shown in the past that MDI 301 increases epidermal thickness, decreases matrix metalloproteinase (MMP) activity, and increases procollagen synthesis in organ-cultured human skin. Unlike all-trans retinoic acid (RA), MDI 301 does not induce expression of proinflammatory cytokines or induce expression of leukocyte adhesion molecules in human skin. In the present study we examined topical MDI 301 treatment for ability to improve the structure and function of skin in three models of skin damage in rodents and for ability to improve abrasion wound healing in these models. MDI 301 was applied daily to the skin of rats treated with the potent corticosteroid, clobetasol propionate, to the skin of diabetic rats (8 weeks posttreatment with streptozotocin) and to the skin of aged (14-16-month-old) rats. In all three models, subsequently induced abrasion wounds healed more rapidly in the retinoid-treated animals than in vehicle-treated controls. Immediately after complete wound closure, tissue from the wound site (as well as from a control site) was put into organ culture and maintained for 3 days. At the end of the incubation period, culture fluids were assessed for soluble type I collagen and for MMPs-2 and -9. In all three models, the level of type I collagen was increased and MMP levels were decreased by MDI 301. In all three models, skin irritation during the retinoid-treatment phase was virtually nonexistent.


Subject(s)
Retinoids/pharmacology , Skin Diseases/physiopathology , Skin/drug effects , Wound Healing/drug effects , Animals , Atrophy , Collagen Type I/analysis , Dermatologic Agents/pharmacology , Disease Models, Animal , Male , Matrix Metalloproteinases/analysis , Mice , Mice, Hairless , Rats , Rats, Hairless , Skin/chemistry , Skin/pathology , Skin Aging , Skin Diseases/chemically induced , Skin Diseases/drug therapy , Skin Diseases/etiology
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