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A review of the effect of occlusive dressings on lamellar bodies in the stratum corneum and relevance to transdermal absorption.

Transdermal drug delivery is becoming a widely used tool in the pharmaceutical industry. Many factors can influence the transdermal flux of medication from a transdermal drug delivery system. The recently described skin physiology of lamellar bodies and skin responses to occlusive dressings provide new insights into transdermal drug delivery. This paper reviews the literature on occlusive dressings and lamellar bodies as it relates to transdermal drug delivery. An understanding of the physiology of lamellar bodies is important to understand and improve transdermal drug delivery.

Absorption↗

Management of psoriasis vulgaris with a hydrocolloid occlusive dressing.

Because clinical improvement of psoriasis vulgaris was recently observed after the prolonged application of tape, 26 patients with symmetric plaque-type psoriasis were enrolled in a prospective bilateral comparison study evaluating the clinical efficacy of the adhesive hydrocolloid occlusive dressing (HCD). The majority of localized plaques of psoriasis achieved improvement (41%, 14/34) or resolution (47%, 16/34) with the prolonged application of HCD; also, HCD was therapeutically superior to twice-daily applications of fluocinolone acetonide cream, and was comparably effective as erythemogenic ultraviolet B treatment. Although the therapeutic mechanism is not completely understood, occlusive dressings have great potential in the management of limited psoriasis vulgaris.

Adhesives↗

A study of the concentration of orally administered sparfloxacin found in exudates from suture wounds beneath occlusive dressings.

The concentration of orally administered sparfloxacin (SPFX), an antimicrobial agent, in exudates from the suture wounds beneath occlusive dressings has been measured. Twenty-one patients who received oral therapy with 100 mg of SPFX prior to surgery and 200 mg/day of SPFX after surgery were studied. During the operations, the suture wounds were covered by occlusive film. 48h post-operation, wound exudates under the dressings were drawn and measured using high performance liquid chromatography. SPFX values were 0.801+/-0.340 microg/ml (mean+/-SD). The results suggest that wound exudates beneath the occlusive dressing have concentrations of SPFX high enough to prevent infection in most cases when administered orally.

Administration, Oral↗

[Topical treatment of onychomycosis by occlusive dressing using bifonazole cream containing 40% urea].

Topical treatment with an antifungal agent was performed in 70 cases of onychomycosis (69 cases of tinea unguium and 1 case of Candida onychomycosis). The patients were treated every night by occlusive dressing using bifonazole cream containing 40% urea, and then by simple application of 1% bifonazole solution in the morning. During the treatment period, the softened affected nails were removed as completely as possible with nail clippers and files. The nails were observed every two weeks, and the efficacy was evaluated after 12 weeks. Two cases were excluded and 28 cases dropped out leaving 40 cases for efficacy evaluation. Among the 40 patients, 20 appeared to be mycologically negative (mycological cure rate: 50.0%). Clinical response was judged by the changes in opacity and thickness of the nails. Nine patients were evaluated as showing "marked improvement" and 16 as showing "improvement" (improvement rate: 62.5%). Erosion was noted as an adverse reaction in 2 patients. In one patient, treatment was stopped and the lesion was improved by antibiotic ointment, and in another, treatment was resumed when erosion was cured by discontinuation of the treatment. These results suggest that the topical treatment of onychomycosis by occlusive dressing is a useful method for those patients who have difficulties in or do not wish to be treated with oral antifungal agents.

Administration, Topical↗

A novel occlusive dressing for skin resurfacing.

BACKGROUND: Over the last decade the benefits of occlusive dressings have been appreciated. These dressings allow the epithelium to resurface easier. The wound heals quicker. OBJECTIVE: To evaluate a new silicone sheeting for immediate post-op wound care. Our objective was to determine its benefit in the wound care management after laser skin resurfacing. METHOD: The silicone sheeting was applied immediately after laser resurfacing in 35 individuals. This temporary skin replacement was held in place with 4 x 4 gauzes and tube gauze netting. Although the tube netting and the 4 x 4 gauzes were changed daily the silicone sheeting remained in place for 4 or 5 days. Following this, applications of a petrolatum-based ointment were continued for another 5 days. At day 10 the skin care program was changed to a moisturizing sunscreen. Bleaching cream was added at day 15 in darker complexed individuals. RESULTS: The dressing accelerated wound healing. Pain and swelling were minimized under the sheeting. Histologic examinations demonstrated a more rapid reepithelialization at these treated sites. Other than technical problems, such as the riding up of the dressing over the jawline or retraction of the dressing off the lips or off the eyelids, there were no adverse sequelae. The wound healed rapidly and allowed the rapid progression to the application of a moisturizer-sunscreen or a skin-bleaching cream. Other than these technical problems there were no complications. No wound infections were noted. CONCLUSION: The use of silicone sheeting following skin resurfacing facilitated a rapid reepithelialization of treated areas. There was a remarkable reduction in erythema and edema accompanying the use of the dressing. The program made it possible for patients to return to work in 12-15 days.

Dermatologic Surgical Procedures↗

The immunohistochemical effect of a hydrocolloid occlusive dressing (DuoDERM E) in psoriasis vulgaris.

The topical application of a hydrocolloid occlusive dressing (HCD) has been shown in various studies to have an antipsoriatic effect as monotherapy but especially in combination with a topical corticosteroid. The aim of the present study was to assess the effect of 3 weeks of HCD monotherapy at the immunohistochemical level. Ten patients were treated. Before and after treatment, a biopsy was taken, and immunohistochemical stainings were carried out with markers for epidermal growth, keratinization, inflammation and endothelium. Suprabasal expression of keratin 16, the number of cycling epidermal cells and the number of polymorphonuclear leucocytes and T lymphocytes tended to decrease during treatment. The endothelial markers did not change during HCD treatment. This study confirms the antipsoriatic effect of HCD and demonstrates that its effect upon some markers of inflammation, epidermal proliferation and keratinization is modest.

Adult↗

Bifonazole (Mycospor cream) in the treatment of moccasin-type tinea pedis. Comparison between combination therapy of bifonazole cream + 10% urea ointment (Urepearl) and occlusive dressing therapy with the same agents.

Moccasin-type tinea pedis(MTTP) is a hardly curable superficial dermatomycosis primarily characterized by hyperkeratosis of the sole. In this study, we compared the usefulness of combination therapy of bifonazole (Mycospor cream) + 10% urea ointment (Urepearl) (overlapping application group = group I) with occlusive dressing therapy with the same agents (group II) in the treatment of MTTP, and obtained the following results. (1) The clinical improvement rate (percentage of "marked improvement" and "moderate improvement") was 60.4% in group I and 83.3% in group II. (2) The mycological eradication rate was 48.7% in group I and 82.1% in group II after 4 weeks of treatment and 90.9 and 96.9%, after 12 weeks of treatment, respectively. (3) The clinical utility rate (percentage of "very beneficial" and "beneficial") was 83.3% in group I and 93.8% in group II. These results indicate the superiority of both combination therapy of bifonazole + 10% urea ointment (overlapping application group) and occlusive dressing therapy with the same agents in terms of efficacy and safety for the treatment of MTTP, and suggest that they can be recommended for treatment of patients for whom it is difficult to use oral antimycotic agents or for patients who fail to respond to oral medications alone.

Administration, Topical↗

Evaluation of a silicone occlusive dressing after laser skin resurfacing.

BACKGROUND: Closed dressings are thought to promote postoperative wound healing after laser skin resurfacing; however, quantitative data are lacking. OBJECTIVE: To compare postoperative healing after combination carbon dioxide and erbium:YAG full-face laser skin resurfacing in patients who were treated with a silicone occlusive dressing (Silon-TSR; Bio Med Sciences, Inc, Bethlehem, Pa) vs open-wound care consisting of soaks and ointment application. DESIGN: Thirty-five patients with closed dressings compared retrospectively with 35 control subjects with open-wound care. In a prospective evaluation, 27 patients with closed dressings were then compared with 27 historical controls matched by age, sex, skin type, and treatment technique. Erythema, crusting, swelling, pain, pruritus, purpura, long-term complications, and dressing comfort were evaluated. SETTING: Referral-based academic practice. RESULTS: Prospectively, closed-dressing and open-wound care groups differed significantly in maximum erythema severity (1.8 vs 2.0 on a scale of 0-3; P =.03), noticeable erythema duration (15.4 vs 31.1 days; P =.04), and time until complete erythema resolution (41.8 vs 96.1 days; P =.02). Swelling resolution was more rapid in the dressing group (12.1 vs 29.5 days; P =.02). Crusting was limited to uncovered areas in the dressing group, and crusting duration was shorter (5.0 vs 9.1 days; P<.001). Pain was more likely to be reported prospectively, but severity was mild, in the closed-dressing group. Other short- and long-term complications did not differ significantly. Subjective patient attitudes toward the dressing were positive. CONCLUSIONS: Occlusive silicone dressing application decreases immediate postoperative morbidity with significantly reduced severity and duration of erythema and decreased duration of swelling and crusting. Long-term results and complication rates remain unchanged.

Erythema↗

Silicone cream occlusive dressing--a novel noninvasive regimen in the treatment of keloid.

BACKGROUND: The use of silicone oil in the treatment of hypertrophic scars has recently been much discussed. Silicone gel and silicone cream containing 20% silicone oil have been demonstrated to effectively treat hypertrophic scars. However, the results in treating keloid are variable. OBJECTIVE: The purpose of this study was to evaluate the clinical efficacy of silicone cream with occlusive dressing in the treatment of keloid. METHODS: An open study was performed in 15 Chinese patients with single or multiple keloids. Nineteen keloids were randomly selected and treated with silicone cream occlusive dressing (SCOD). The effectiveness was assessed using a scoring system involving elevation, redness, hardness, itching and tenderness or pain of the lesions. RESULTS: Fifteen out of 19 keloids (79%) showed significant improvement after using SCOD for 6 months. None of the keloids progressed. CONCLUSIONS: We conclude that SCOD is easy to apply, noninvasive, painless, almost free of side effects. It is especially useful in children and those who cannot tolerate the pain or inconvenience of other treatment procedures. The action mechanism of SCOD is still unclear, though hydration and occlusion rather than silicone itself may play an important role.

Adult↗

Occlusivity and effects of two occlusive dressings on normal human skin.

Two occlusive, adhesive dressings--one hydrocolloid (absorptive) and one zinc-medicated (non-absorptive)--were studied regarding their occlusivity and effects when applied to normal human skin for 48 h. Both dressings reduced normal transepidermal water loss by about 70%. As documented by a 7-fold increase in the water loss beneath the dressings compared to untreated skin, water was retained in the stratum corneum by both dressings. No appreciable influence of either dressing on skin temperature was found. The skin surface pH decreased beneath the hydrocolloid while it increased beneath the zinc dressing.

Adult↗

A comparative study of three occlusive dressings in the treatment of full-thickness wounds in pigs.

BACKGROUND: Little objective information is available on the influence of occlusive dressings on the healing of cutaneous full-thickness wounds. OBJECTIVE: Our purpose was to examine the effects of three occlusive dressings-two hydrocolloid dressings (Comfeel Ulcer Dressing, Coloplast A/S, Espergaerder, Denmark [hydrocolloid dressing A] and DuoDERM; ConvaTec, Princeton, N.J. [hydrocolloid dressing B]) and one polyurethane film dressing (OpSite, Smith & Nephew, Hull, U.K. [film dressing])-on tissue reactions, degree of inflammation, wound contraction, and epithelialization in full-thickness wounds in domestic pigs. METHODS: Standardized 20 mm full-thickness punch biopsy wounds were treated for 10 days. Healing was assessed by light microscopy and by planimetry. RESULTS: Material from both hydrocolloid dressings was phagocytosed as indicated by the presence of foam cells in the granulation tissue. Granulomatous tissue reactions around extracellular vacuoles were found in 10 of 12 hydrocolloid dressing B-treated wounds compared with one in hydrocolloid dressing A-treated wounds and in none of the 10 film dressing-treated wounds (p < 0.0001). Inflammation was significantly (p < 0.002) more pronounced in hydrocolloid dressing B-treated wounds. The extracellular vacuoles in the hydrocolloid dressing B group contained dressing material as demonstrated by Fourier transform infrared microscopy. There was a tendency (p < 0.07) towards a delayed entry into the contraction phase with hydrocolloid dressing B, but there was no significant difference in epithelialization between the three dressings. CONCLUSION: Wound tissue reactions to different hydrocolloid dressings vary depending on composition. The tissue reactions had no significant effect on wound contraction or epithelialization.

Animals↗

Treatment of finger-tip injuries with silver sulphadiazine occlusion dressing.

From 1982, patients with finger-tip injuries were treated with sulphadiazine occlusion dressings. The average time taken for the wound to heal, incidence of infection and absence from work were studied. The results of this method gave consistently good results when compared with other techniques which are summarized.

Aging↗

The effect of occlusive dressings on the energy metabolism of severely burned children.

Metabolic studies were performed on 23 burned children. They were studied sequentially until their burn wounds were healed. A metabolic study lasted 20 minutes, during which continuous measurements were made of O2 consumption and CO2 production rates, rectal temperature, average surface temperatures (dressings, skin and wound), body heat content, and rate of body weight loss using a bed scale. These measurements allowed solution of the heat balance equation for each study period. After 24 hours in a constant temperature room kept at 28 C and 40% relative humidity, metabolic studies were initiated when blood was drawn for catecholamine assay, followed by a metabolic analysis, after which dressings were removed and fresh silvadene applied to the wounds. No dressings were applied. Metabolic analyses were repeated after two and four hours of exposure, after which blood for catecholamine analysis was drawn and the study terminated. Without dressings in a thermally neutral environment, burn patients demonstrated an increased rate of heat loss of 27 watts/square meter body surface area (W/M2), compared with the predicted normal. The major portion of this increment is by evaporation, which increased 300%. The rate of heat production equals heat loss, and is increased 50% above the predicted normal. Occlusive dressings result in a 15 W/M2 decrease in the rate of heat loss, about evenly divided between evaporative and dry routes, with a corresponding 15 W/M2 decrease in the rate of heat production. Plasma catecholamine levels of bandaged burn patients are not significantly different from values for healed burn patients, and do not correlate with the rate of heat production. The increased heat production of burn patients is a response to an increased rate of heat loss, not vice versa. The use of occlusive dressings substantially reduces the energy requirements to manageable levels, even in patients with very large burns.

Adolescent↗

[Localized amyloidosis of the ureter and bladder treated effectively by occlusive dressing technique therapy using dimethyl sulfoxide: a case report].

We report here the first case of localized amyloidosis of the ureter and bladder to be treated effectively by occlusive dressing technique therapy using dimethyl sulfoxide. The patient was a 48-year-old woman whose chief complaint was macrohematuria and right back pain. Ultrasound sonography demonstrated right hydronephrosis and an intravesical mass in the region of the right ureteral orifice. Retrograde pyelography revealed severe stricture of the right lower ureter. Cystoscopy demonstrated a yellow submucosal tumor around the right ureteral orifice. We suspected urinary tract amyloidosis, and transurethral biopsy and resection of the intravesical mass were performed under right ureteral stenting. Histopathological diagnosis was amyloidosis. There was no evidence of systemic amyloidosis. To treat residual amyloidosis of the ureter and bladder, we performed occlusive dressing technique therapy using dimethyl sulfoxide every day. After 6 months of therapy, the right hydronephrosis disappeared, and there was no evidence of a recurrence of amyloidosis. We concluded that this therapy was very effective and safe for urinary tract amyloidosis.

Administration, Cutaneous↗

The effects of occlusive dressings on the recruitment of mononuclear cells by endothelial binding into acute wounds.

Mononuclear cell infiltration is a characteristic feature of wounds and may play an important role in the healing process. We have previously shown that the recruitment of peripheral blood mononuclear cells into wounded skin is an active, dynamic, and regulated process mediated at least in part by specific interactions between mononuclear leukocytes and specialized dermal microvascular endothelial cells in the wounded skin. The purpose of this study was to investigate the capacity of dermal microvascular endothelial cells in wounds exposed to air or covered with occlusive dressings to promote the adhesion of monocytes and lymphocytes. The results showed that dermal microvascular endothelial cells in both air-exposed and occluded wounds were capable of supporting peripheral blood mononuclear cell and monocyte adherence. However, in comparison with air exposed wounds, the level of peripheral blood mononuclear cell binding was significantly higher in occluded biopsies obtained at 0 to 9, 12, 15, and 21 days after wounding. In addition, monocyte and peripheral blood mononuclear cells binding to occluded wounds peaked earlier than peripheral blood mononuclear cell binding to air exposed wounds. These studies provide evidence that differences in the kinetics and magnitude of mononuclear cell adherence may account at least in part for the beneficial effects of occlusive dressing on wound healing.

Animals↗

Fingertip injuries management with semi-occlusive dressing.

We have developed a simple, cheap and efficient method of management of fingertip injury using a semi-occlusive dressing ("Opsite"--Smith and Nephew). The fingertip is covered with the "Opsite" once a week only. The dressing provides a temporary "skin", making the finger painless. This semi-occlusive "skin" allows the healing environment to reach an optimal milieu (e.g. pH, oxygen, tension, immunoagents) actively promoting granulation tissue formation and epithelialization. The result of 200 fingertip injuries treated with this method proves the development of a near normal pulp shape and useful epithelium within an average of 20 days.

Amputation, Traumatic↗

Evaluation of occlusive dressings for management of full-thickness excisional wounds on the distal portion of the limbs of horses.

Two 2.5-cm2 full-thickness skin wounds were created surgically over the lateral aspect of the cannon bone of each limb of 6 horses (n = 48 wounds). Dressings evaluated were a nonadherent gauze pad (group 1); a synthetic semiocclusive dressing, (group 2); equine amnion (group 3); and a synthetic fully occlusive dressing (group 4). Wounds were assessed subjectively at each dressing change, and total wound area, area of granulation tissue, and area of epithelium in each wound were determined by computerized digital analysis of photographs of the wounds. Complete healing time (wound covered by epithelium) also was determined for each wound. Statistical comparisons were made, using Kruskal-Wallis analysis and a Mann-Whitney U test. Median time to complete healing was: group 1, 53 days; group 2, 71 days; group 3, 63 days; and group 4, 113 days. Time to complete healing was significantly longer for wounds of group-4 horses than all other groups, and wounds of group-1 horses healed faster than did those of group-2 horses (P < 0.05). Wounds in group-4 horses required significantly (P < or = 0.05) more excisions of granulation tissue (median, 11.5 times) than did those in group-1 (median, 3.5), group-2 (median, 5.5) or group-3 (median, 2.5) horses. Epithelial tissue was detected later in wounds of group-4 horses (median, 27 days) than in wounds of horses in groups 1, 2 or 3 (median, 17 days); however, this difference was not statistically significant.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Wound management: the occlusive dressing.

Superficial wounds resulting from athletic injury are common in sports medicine. Although such wounds can be quite painful, they are usually merely inconvenient to the athlete. If improperly managed, however, superficial wounds may heal slowly and cause unnecessary scar tissue proliferation at the wound site. Scar formation causes the wound to break open frequently and puts the athlete at risk of cross-contamination by pathogenic organisms. New advances in the science of wound management strongly favor the use of occlusive dressings to increase patient comfort, increase patient compliance, decrease the risk of infection, and decrease overall healing time. Occlusion has clearly been proven to aid in the healing of superficial wounds and should be considered as a treatment alternative for wounds in the sports medicine setting. In this paper, I discuss three of the most widely used types of occlusive dressings: 1) films, 2) hydrogels, and 3) hydrocolloids.

Journal Article↗