PubMed HealthSearch

Biomedical subjects

O Rollman

Publications and source records attributed to O Rollman.

At least 19 recordsLinked to original sources

The vitamin A metabolism and expression of retinoid-binding proteins differ in HaCaT cells and normal human keratinocytes.

HaCaT keratinocytes differ from normal human epidermal keratinocytes (HEK) by constitutive expression of differentiation markers which are normally suppressed by vitamin A. In search of an explanation for this discrepancy we compared the vitamin A content, the expression of retinoid-binding proteins, and the vitamin A metabolism in the two cell types. The concentrations of retinol and 3,4-didehydroretinol in cultured HaCaT cells were less than one-fifth those in HEK, and the content of fatty acyl esters was even lower. Similarly, the concentrations of cellular retinol-binding protein and cellular retinoic acid-binding protein (CRBPI and CRABPII, respectively) were 10-30 times lower in HaCaT cells than in HEK corresponding to a reduced mRNA expression of these proteins. Unexpectedly, HaCaT cells expressed RARbeta in addition to RARalpha, RARgamma and RXRalpha, which are nuclear receptors normally found in HEK. Radioactive retinol added to the culture medium appeared only transiently in HaCaT cells, and pulse labeling confirmed a defective cellular retention of retinyl esters. After 24 h of incubation with [3H]retinol, cell-associated radioactivity corresponding to retinol, 3,4-didehydroretinol, all-trans-retinoic acid and 3,4-didehydroretinoic acid was found in both HaCaT cells and HEK. [3H]Retinoic acid showed a more rapid metabolism to 4-hydroxy/4-keto-retinoic acid in HaCaT cells than in HEK, which could be explained by a higher expression of cytochrome p450RAI in the former cells. In conclusion, the abnormal uptake of vitamin A and low levels of retinoid binding proteins in HaCaT cells, linked with an aberrant metabolism of retinol, may help to explain why these cells differentiate also in the presence of retinoids.

Biomarkers

Clones of normal keratinocytes and a variety of simultaneously present epidermal neoplastic lesions contain a multitude of p53 gene mutations in a xeroderma pigmentosum patient.

A patient with xeroderma pigmentosum group C was extensively examined for mutations in the p53 gene in normal skin exposed to varying degrees of sunlight and in excisional biopsies of basal cell cancer, squamous cell cancer, and squamous cell dysplasia. Seventy-three samples were analyzed by microdissection of small cell clusters, followed by PCR and direct DNA sequencing. In skin taken from areas that most likely had never been exposed to the sun, no mutations were found. However, in skin exposed to the sun, we observed a multitude of mutations in the p53 gene. UV light-induced mutations were found in all types of lesions, as well as in clusters of morphologically normal epidermal cells. Twenty-nine distinct mutations were found in exons 5-8, all missense or nonsense, of which 27 (93%) were UV-specific C --> T or CC --> TT transitions at dipyrimidine sites of the nontranscribed strand. Two types of normal skin areas containing p53 mutations were observed: areas that stain strongly with p53 antibody (p53 patches) and those that do not stain. Because no silent or intron mutations were found in these cell clusters, the alterations in the p53 gene of morphologically normal cells are likely to have resulted in a selective growth advantage. The poor correlation between mutations and morphological phenotypes demonstrates that p53 mutations alone do not determine the phenotypes observed.

Adolescent

Oral isotretinoin therapy in severe acne induces transient suppression of biochemical markers of bone turnover and calcium homeostasis.

Although dietary vitamin A is required for normal growth and development, long-term or high-dose administration of vitamin A derivatives (retinoids) may produce a variety of skeletal side-effects in man. In this study we investigated the early effects of oral isotretinoin therapy on bone turnover and calcium homeostasis in eleven consecutive patients with nodulocystic acne. The effects on bone metabolism were correlated to radiological and bone mineral density measurements following drug therapy for six months. Markers of bone turnover, i.e. serum osteocalcin, the carboxyterminal propeptide of type I collagen, bone specific alkaline phosphatase, the carboxyterminal telopeptide of type I collagen, and urine levels of calcium and hydroxyproline decreased significantly within five days of treatment (p < 0.05). There was also a statistically significant decrease in serum calcium, with a minimum on day five, and a marked increase in serum parathyroid hormone (p < 0.05). With continued treatment, however, the abnormal levels of these markers returned to baseline values within 14 days. No significant roentgenological changes or effects on bone mineral density were found in response to the drug. The observed inhibitory effects of isotretinoin on bone turnover, despite elevated parathyroid hormone levels, indicates that the drug exerts a direct effect on bone tissue.

Acne Vulgaris

Retinyl palmitate injections reduce serum levels and effects of endotoxin on systemic haemodynamics and oxygen transport in the pig.

BACKGROUND: Retinyl palmitate [(RP) 230 IU.kg(-1)] modulates the circulatory and respiratory responses of a subsequent infusion of endotoxin in the pig. The aims of this study were: I. To determine if RP (2300 IU.kg(-1)) affects the serum endotoxin levels in this model. II. To evaluate the effect of this dose of RP on circulatory and respiratory variables in our porcine model. III. To investigate the levels of RP and neutrophil count in porcine endotoxaemia. METHODS: Ten anaesthetized pigs were randomly given 2300 IU.kg(-1) of RP or the solvent i.m. prior to the continuous i.v. infusion of E. coli endotoxin (10 microg.kg(-1).h(-1)). Another 4 sham animals were given either i.m. RP (n=2) or i.m. solvent (n=2) followed by an infusion of saline. Haemodynamics and oxygen extraction were monitored and samples taken for analysis of endotoxin, RP and blood cells. RESULTS: I. Endotoxin levels in serum were lower (P<0.001) in the RP-pretreated pigs. II. These animals had higher cardiac index (P<0.05), mean arterial pressure and left ventricular stroke work index (both P<0.001), and lower oxygen extraction (P<0.01). III. RP-Pre=pretreatment caused a paradoxical decrease in serum retinyl (P<0.001) and a more rapid restitution of neutrophil count (P<0.05). CONCLUSION: Pretreatment with RP (2300 IU.kg(-1)) counteracts the progressive increase in serum endotoxin levels in porcine endotoxaemia.

Animals

Cadexomer iodine in ulcers colonised by Pseudomonas aeruginosa.

The clinical and bacteriological efficacy of topical cadexomer iodine on venous leg ulcers colonised with Pseudomonas aeruginosa was evaluated in an open, uncontrolled, multicentre pilot study. Nineteen patients with venous leg ulcers (median ulcer area 15.5 cm2) were treated with cadexomer iodine paste and short-stretch bandaging for 12 weeks or until the ulcer was healed within that period. Bacteriological cultures for growth of Pseudomonas aeruginosa and ulcer area measurements were regularly performed during the study period. Seven patients were withdrawn during the study period for the following reasons: pain in the ulcer (n = 2), ulcer enlargement (n = 2), treatment of cellulitis in non-study ulcer with a systemic antibiotic that is effective against Pseudomonas aeruginosa (n = 1), increased thyroid-stimulating hormone level (n = 1) and poor compliance (n = 1). In addition, one patient was erroneously withdrawn. After one week's treatment, 11 out of 17 patients (65%) had a negative culture of Pseudomonas aeruginosa. At 12 weeks, six out of eight patients (75%) had a negative culture and complete healing was achieved in three patients (16%). The median ulcer area reduction obtained at 12 weeks was 32.9%. The results indicate that cadexomer iodine paste might be the treatment of choice for venous leg ulcers colonised with Pseudomonas aeruginosa. However, a larger controlled clinical study is needed for final evaluation.

Adult

Biosynthesis and function of all-trans- and 9-cis-retinoic acid in parathyroid cells.

We demonstrate that cultured human and bovine parathyroid cells incubated with all-trans-[11,12-3H]-retinol convert this tracer into all-trans- and 9-cis-retinoic acid. By using RT-PCR, cellular retinol-binding protein type I (CRBP I), cellular retinoic acid binding protein I and II (CRABP I and II), retinoic acid receptors (RARs) alpha, beta and gamma, and 9-cis-retinoic acid receptor (RXR) alpha transcripts were detected in human parathyroid cDNA. CRBP I and CRABP I expression was confirmed by immunohistochemistry. Both 9-cis- and all-trans-RA were found to suppress parathyroid hormone (PTH) secretion from dispersed human adenomatous parathyroid cells, which was augmented by combined treatment with 1mM RA and 100 nM 1,25 (OH)2D3. The present data establish parathyroid gland as a target for retinoids and as a site of synthesis of the hormonal forms of vitamin A (retinol), all-trans- and 9-cis-retinoic acid.

Alitretinoin

Differential uptake of chloroquine by human keratinocytes and melanocytes in culture.

The antimalarial drug chloroquine has a high affinity for melanin and accumulates in melanin-rich compartments such as those of the eye. Chloroquine is also deposited in cutaneous tissue, but whether the drug distribution is restricted to melanin-producing cells of the skin is not known. In the present study, the uptake of chloroquine by normal human epidermal keratinocytes was compared with that by melanocytes. Selectively cultivated cells were incubated at drug concentrations ranging between 0 and 10000 ng/ml for periods of up to 48 h. Chloroquine was quantified in cells and medium using high performance liquid chromatography and fluorometric detection. In both types of cells there was a rapid uptake of chloroquine within the first 2 h, followed by a slower uptake for 2-6 h until a steady-state condition was reached. Dose dependency was linear, with no sign of saturation, and approximately ten times higher drug concentrations were attained in melanocytes as compared with keratinocytes. No formation of desethylchloroquine, the major systemic metabolite, was detected in either cell type. The observed affinity of chloroquine for normal epidermal melanocytes in vitro suggests that the density and melanogenic activity of skin pigment cells may influence the cutaneous drug disposition of chloroquine.

Adult

Increased concentrations of 3,4-didehydroretinol and retinoic acid-binding protein (CRABPII) in human squamous cell carcinoma and keratoacanthoma but not in basal cell carcinoma of the skin.

Retinoids are biologic response modifiers that are present in normal skin and may possibly be perturbed in carcinogenesis. To examine this possibility in human skin, we analyzed vitamin A and cytosolic retinoid binding proteins (cellular retinol binding protein and cellular retinoic acid binding protein [CRABP]) in a total of 38 non-melanoma skin tumors and 25 healthy skin samples using high performance liquid chromatography, radioligand electrophoresis, and reverse transcriptase-polymerase chain reaction. The mean +/- SEM retinol concentration was normal in basal cell carcinoma (0.60 +/- 0.10 microM) and seborrheic keratosis (0.47 +/- 0.07 microM), but increased in keratoacanthoma (1.60 +/- 0.41 microM) and squamous cell carcinoma (1.17 +/- 0.28 microM) (p < 0.05 for both). Also, the concentrations of 3,4-didehydroretinol, a major vitamin A metabolite produced in human skin, were markedly elevated (6-7 times normal) in keratoacanthoma and squamous cell cancer. All types of tumors showed moderately increased levels of cellular retinol binding protein. In addition, keratoacanthoma and squamous cell cancer showed markedly increased levels (6-7 times normal) of CRABPII protein. Transcriptional activity of the CRABPII gene was demonstrated in both normal and neoplastic epidermis, but clear CRABPI mRNA expression was found only in basal cell carcinoma. The data indicate that characteristic perturbations of the vitamin A and retinoid binding protein levels occur in squamous cell-derived skin tumors, but whether these reflect intrinsic errors in retinoid metabolism or are secondary to abnormal cellular differentiation is unknown.

Aged

Increased expression of inducible nitric oxide synthase in psoriatic skin and cytokine-stimulated cultured keratinocytes.

Since nitric oxide (NO) has been implicated in the pathogenesis of various hyperproliferative and inflammatory diseases, the mRNA expression of constitutive nitric oxide synthase (cNOS) and inducible nitric oxide synthase (iNOS) were investigated in psoriatic skin by reverse transcriptase coupled to the polymerase chain reaction (PCR). The study showed that the mRNA expression of brain nitric oxide synthase (bNOS), one of two isoforms of cNOS, was weak in both psoriatic plaques lesions and uninvolved skin, while mRNA transcripts for the second isoform, endothelial nitric oxide synthase (eNOS), were not detectable using the present method. In contrast, the mRNA expression of iNOS was markedly increased in lesional skin as compared to uninvolved skin. Cultured human keratinocytes exposed to a combination of interleukin-1 beta (IL-1 beta) and tumour necrosis factor-alpha (TNF-alpha) for 4 h, showed strong gene expression of iNOS, while in 24 h, the expression had returned to baseline expression. In summary, the study demonstrates that mRNA for the inducible form of NOS is over-expressed in psoriatic lesions. The cause of this may be the local presence of inflammatory cytokines. These findings imply that iNOS may play an important part in local regulation of NO synthesis in psoriasis and other inflammatory dermatoses.

Adult

Vitamin D analogs affect the uptake and metabolism of retinol by human epidermal keratinocytes in culture.

Human epidermis utilizes retinol as precursor for local production of a range of bioactive vitamin A metabolites including 3,4-didehydroretinol, retinoic acid, and 3,4-didehydroretinoic acid. These endogenously formed retinoids bind to nuclear retinoic acid receptors (RARs), thereby altering gene transcription. Because 9-cis-retinoic acid receptors (RXRs) form heterodimers both with RARs and the vitamin D3 receptor (VDR), it is plausible that vitamin D3 may affect retinol metabolism if altered transcription is involved in the regulation of vitamin A-metabolizing enzymes. To investigate the potential effect of vitamin D on retinol metabolism in human skin keratinocytes, HaCaT cells were preincubated with various vitamin D3-analogs at 10(-7)M for 24 h followed by the addition of [3H]retinol for another 24 h period. The uptake and metabolism of the radioactive tracer was monitored by HPLC-radiochromatography. It was found that all synthetic vitamin D-analogs tested (MC903, KH1060, EB1089, and EB1213) reduced the amount of cell-associated [3H]retinoid activity by 35-50% as compared to the vehicle. More specifically, the appearance of the parent substrate and two of its main metabolites, e.g., 3,4-didehydroretinol (ddROH) and 3,4-didehydroretinoic acid (ddRA), was inhibited by the synthetic vitamin D-analogs. The effects on retinol metabolism were not potentiated by coincubation of cells with vitamin D-analogs plus retinoic acid (RA) or 9-cis-RA. This study demonstrates that synthetic vitamin D3 interferes with both the uptake and the metabolism of retinol by human epidermal keratinocytes. Whether the effects are due to direct inhibition of cellular retinol uptake and metabolism or involve VDR-mediated transcriptional alteration of vitamin A metabolizing enzymes remains to be clarified.

Cells, Cultured

Increased mRNA expression of manganese superoxide dismutase in psoriasis skin lesions and in cultured human keratinocytes exposed to IL-1 beta and TNF-alpha.

Because reactive oxygen species have been implicated in the pathogenesis of various hyperproliferative and inflammatory diseases, the mRNA expression of the antioxidant enzyme superoxide dismutase was studied in psoriatic skin tissue. By using reverse transcription-PCR we found similar expression of copper, zinc superoxide dismutase (CuZnSOD) in the involved vs. uninvolved psoriatic skin. In contrast, the level of the manganese superoxide dismutase (MnSOD) mRNA message was consistently higher in lesional psoriatic skin as compared to adjacent uninvolved skin and healthy control skin. Parallel investigation of those cytokines that are thought to be direct or indirect inducers of the MnSOD activity revealed an increased mRNA expression of IL-1 beta, TNF-alpha, and GM-CSF in lesional psoriatic skin. To study if these cytokines exert a direct effect on dismutase expression in epidermal cells, human keratinocytes in culture were challenged with IL-1 beta, TNF-alpha, and GM-CSF. It was found that IL-1 beta and TNF-alpha, but not GM-CSF, induced the mRNA expression of MnSOD, and an additive effect was demonstrated for the two former cytokines. Further, the expression of both CuZnSOD and MnSOD transcripts was similar in cultured keratinocytes maintained at low differentiation (low Ca2+ medium) and cells forced to terminal differentiation (by high Ca2+ medium). Our results indicate that the abnormal expression of MnSOD mRNA in lesional psoriatic skin is not directly linked to the pathologic state of keratinocyte differentiation in the skin. It seems more likely that the cutaneous overexpression of MnSOD in psoriatic epidermis represents a protective cellular response evoked by cytokines released from inflammatory cells invading the diseased skin.

Adult

Expression of cytosolic retinoid-binding protein genes in human skin biopsies and cultured keratinocytes and fibroblasts.

Using reverse transcription coupled to polymerase chain reaction we have studied the mRNA expression of serum retinol-binding protein and cytosolic receptors for retinol and retinoic acid in skin biopsies, and in cultured epidermal keratinocytes and dermal fibroblasts. Transcripts for cellular retinol-binding protein (CRBP) I and cellular retinoic-acid-binding protein (CRABP) I were found in normal skin, keratinocytes, and fibroblasts. CRABP II transcripts were detected in skin and keratinocytes. A decreased mRNA expression of CRABP I and an increased mRNA expression of CRABP II were found in lesional psoriatic skin compared with uninvolved skin. mRNA transcripts for serum retinol-binding protein (s-RBP) were detected in all tissues and cells. The biological importance of s-RBP expression in keratinocytes and fibroblasts is not known, but hypothetically this protein may be involved in the intracellular shuttling of retinol and retinoic acid, or in the retransportation of cellular retinoids into the extracellular space.

Base Sequence

Biosynthesis of 3,4-didehydroretinol from retinol by human skin keratinocytes in culture.

The uptake and metabolism of radiolabelled retinol was studied in cultivated human skin cells. Normal epidermal keratinocytes in primary culture were able to incorporate unbound [11,12-3H]all-trans-retinol from the growth medium and transform it into 3,4-didehydroretinol (dehydroretinol) in a dose- and time-dependent manner. A total of 23% of the radioactive label became cell-associated during a 48-h incubation period when added at 7 nM to differentiated keratinocytes submerged in serum-containing, high-calcium (1.56 mM) culture medium. At that time point, 25-30% of cell-bound radioactive retinol had been converted into dehydroretinol, with no labelled retinal, dehydroretinal, retinoic acid or dehydroretinoic acid being detected in cells or medium. Thus dehydroretinol, which occurs physiologically in mammalian skin tissue in vivo, was identified as the predominant neutral retinol metabolite in cultured keratinocytes using h.p.l.c. and anhydro-derivatization procedures. At least 94% of the product, along with its precursor, was present in the cells in esterified form, with no traces of the compound being secreted into the cell environment. The rate of formation of dehydroretinol from its precursor was significantly lower in keratinocytes grown in serum-free, low-calcium (0.09 mM) culture medium, and in medium pre-incubated with excess unlabelled substrate. Furthermore, the application of 13-cis-retinoic acid (isotretinoin), a therapeutic retinoid drug known to markedly reduce dehydroretinol levels in human skin, blocked the biosynthesis of this metabolite in cultured keratinocytes. The 3,4-dehydrogenation pathway observed in this study could not be shown to operate to any significant extent in cultures of human epidermal melanocytes or dermal fibroblasts, supporting the hypothesis that keratinocytes represent the principal cell type involved in dehydroretinol formation from retinol in human skin.

Cells, Cultured

Detection of mRNA transcripts for retinoic acid, vitamin D3, and thyroid hormone (c-erb-A) nuclear receptors in human skin using reverse transcription and polymerase chain reaction.

Differentiation of keratinocytes involves both non-genomic and genomic events. The genomic effects are regulated by ligand-dependent transcription factors, e.g. the steroid/thyroid super-family of nuclear receptors. In the present study we examined mRNA expression of receptors for retinoic acid, thyroid hormone, and vitamin D3 in normal human skin and cultured keratinocytes using reverse transcription coupled to the polymerase chain reaction. The vitamin D3 receptor and the retinoic acid receptor (RAR) gamma together with the more distantly related RXR alpha were amplified extensively in skin and cultured keratinocytes. RAR alpha was amplified at a lower level, and RAR beta was almost undetectable. The thyroid hormone receptors alpha 1 and beta 1 were weakly amplified, but to comparable levels. Because receptors for retinoic acid, thyroid hormones, and vitamin D3 are all expressed in human epidermis differentiation of keratinocytes is probably regulated at transcriptional level by these molecules. It remains to be seen whether alterations in the expression of the nuclear receptors occur in certain skin disorders.

Base Sequence

Isotretinoin treatment of severe acne affects the endogenous concentration of vitamin A in sebaceous glands.

An investigation of pooled skin samples from 22 acne patients has shown that isotretinoin and its major metabolite, 4-oxo-isotretinoin, can be detected in sebaceous glands during treatment with isotretinoin (1 mg/kg/d for 4 months). The levels are less than those in the epidermis, thus excluding selective drug distribution as a prime explanation for drug function. Oral isotretinoin markedly increases retinol levels and decreases dehydroretinol levels in the skin while on therapy. The effect is more pronounced in sebaceous glands than in epidermis and dermis. The increased retinol levels probably reflect a metabolic interference with endogenous vitamin A, since isotretinoin cannot be converted into retinol in vivo. Previous studies have shown that dehydroretinol accumulates in hyperproliferative, keratinizing skin lesions and so its reduction with isotretinoin therapy may relate to a reduction in cell proliferation or to dedifferentiation. However, the precise interrelationships of these observations need further elucidation.

Acne Vulgaris

Acitretin excretion into human breast milk.

Retinoid transfer into breast milk was studied in a psoriatric woman receiving oral acitretin at a dosage of 40 mg once daily. Concentrations of the parent compound and its main metabolite, 13-cis acitretin, were measured in serum and mature milk during the initial nine days of therapy, using reverse-phase high performance liquid chromatography. At steady-state, trace amounts of the drug and metabolite (30-40 ng/ml) appeared in breast milk corresponding to a milk/serum concentration ratio of about 0.18. Acitretin was almost exclusively distributed in the fatty layers of the milk. Although the estimated amount of the drug consumed by a suckling infant would correspond to only 1.5% of the maternal dose, the toxic potential of acitretin justifies its avoidance in breast-feeding women.

Acitretin