PubMed Health⌕ Search

PubMed · 1477447

Transdermal fentanyl.

Abstract

OBJECTIVE: To review the use of transdermal fentanyl for the treatment of moderate to severe chronic pain. The article provides background on the pharmacology and pharmacokinetics of the drug, as well as the properties of the transdermal system. In addition, clinical trials, adverse effects, and therapeutic considerations and recommendations are presented. DATA SOURCES: Clinical trials, review articles, and reference texts. STUDY SELECTION: Comparative clinical trials involving the use of transdermal fentanyl on postoperative and chronic pain patients. DATA EXTRACTION: Data from clinical human trials published in the English language were reviewed. Trials were assessed by sample size, opioid dosage regimen, and therapeutic outcome. DATA SYNTHESIS: Transdermal fentanyl was found to be effective in the control of chronic and postoperative pain. In one trial the overall patient satisfaction with pain control was 79 percent for the transdermal fentanyl group and 44 percent for the placebo group. In another trial, the amount of additional parenteral morphine was significantly lower for the group receiving transdermal fentanyl than for the placebo group (49.9 +/- 4.9 vs. 77.0 +/- 6.3 mg, respectively, p < 0.01). The most common adverse effects recorded were nausea (45-85 percent), pruritus (14-60 percent), and sedation (40-59 percent). The cost of analgesic therapy with this delivery system is higher than that of parenteral opioid analgesia, but less than patient-controlled analgesia. CONCLUSIONS: The transdermal fentanyl formulation offers some minor advantages over other forms of conventional pain management. Results of early clinical trials are promising, but more studies are needed to evaluate its long-term effectiveness and adverse effects. Specifically, comparisons with standard parenteral and patient-controlled opioid analgesia in chronic malignant and nonmalignant pain are necessary for adequate evaluation of transdermal fentanyl.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

L Y Yee, J R Lopez. 1992. Transdermal fentanyl.. https://doi.org/10.1177/106002809202601113

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Safety, acceptability, and tolerability of 3 topical microbicides among heterosexual Kenyan men.

OBJECTIVES: To compare the acceptability, tolerability, and safety of 3 topical microbicide formulations (62% ethyl alcohol in emollient gel and 0.1% and 0.4% benzalkonium chloride on a sanitary wipe) for use on male genitalia. DESIGN: This triple-randomized crossover study among men attending a sexually transmitted disease (STD) clinic in Nairobi, Kenya assigned individuals without clinical evidence of an STD to apply products to the penis in a predetermined random order, each for a 2-week period with a 1-week washout period between each product. Men recorded side effects and were examined for adverse events. RESULTS: Of 39 participants, 33 (84%) completed 6 clinic visits plus 3 home visits by community health workers. Participants reported use of 62% ethanol gel and 0.1% and 0.4% benzalkonium on 99%, 99%, and 96% of daily scheduled applications; 99%, 98%, and 97% of preintercourse applications, and 99%, 94%, and 98% of postintercourse applications. All participants said they would recommend all 3 products to a friend; 72% preferred the 62% ethanol gel, 17% the 0.1% benzalkonium, and 11% the 0.4% benzalkonium. One person developed objective signs of a genital ulcer after 14 days of 0.4% benzalkonium wipe use. CONCLUSIONS: Two of the 3 topical microbicides had minimal reported adverse effects, and no adverse effects were observed during use of the ethanol gel, which was preferred by most men.

Administration, Cutaneous↗

Human skin penetration of sunscreen nanoparticles: in-vitro assessment of a novel micronized zinc oxide formulation.

The extent to which topically applied solid nanoparticles can penetrate the stratum corneum and access the underlying viable epidermis and the rest of the body is a great potential safety concern. Therefore, human epidermal penetration of a novel, transparent, nanoparticulate zinc oxide sunscreen formulation was determined using Franz-type diffusion cells, 24-hour exposure and an electron microscopy to verify the location of nanoparticles in exposed membranes. Less than 0.03% of the applied zinc content penetrated the epidermis (not significantly more than the zinc detected in receptor phase following application of a placebo formulation). No particles could be detected in the lower stratum corneum or viable epidermis by electron microscopy, suggesting that minimal nanoparticle penetration occurs through the human epidermis.

Administration, Cutaneous↗

Endogenous phospholipid metabolite containing topical product inhibits ultraviolet light-induced inflammation and DNA damage in human skin.

BACKGROUND: N-palmitoylethanolamine (PEA) and organic osmolytes are endogenous components of the human epidermis and are generated from phospholipids in the stratum granulosum. PEA has been shown to exert potent antioxidant and anti-inflammatory activities. The endogenous organic osmolytes such as betaine and sarcosine control skin humidity, but have also been shown to inhibit ultraviolet (UV) light-induced oxidative stress in keratinocytes. OBJECTIVES: To investigate the effect of a PEA- and organic osmolyte-containing topical product (Physiogel AI) on the development of UV light-induced erythema, thymine dimer formation and p53 tumor suppressor gene activation, as well as intercellular adhesion molecule 1 (ICAM-1) and Ki67 expression in normal human skin. METHODS: The UV-induced erythema was measured by a spectrofluorometric method. Thymine dimers, p53, ICAM-1 and Ki67 were detected in skin biopsies using immunohistochemistry. RESULTS: Physiogel AI cream significantly inhibited the development of UV light-induced erythema and thymine dimer formation in normal human skin, but did not alter the number of Ki67+ proliferating keratinocytes and the expression of p53 and ICAM-1. CONCLUSIONS: Our results suggest that PEA and organic osmolytes might represent a new generation of compounds which suppress UV-induced photodamage.

Administration, Cutaneous↗