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Biomedical subjects

A Oikarinen

Publications and source records attributed to A Oikarinen.

At least 19 recordsLinked to original sources

Expression of the tissue metalloproteinase inhibitors TIMP-1 and TIMP-2 in malignant fibrous histiocytomas and dermatofibromas as studied by in situ hybridization and immunohistochemistry.

The expression of tissue inhibitors of metalloproteinases (TIMP-1 and TIMP-2) was studied in eight malignant fibrous histiocytomas (MFH) and in eight dermatofibromas (DF) using in situ hybridization methods (ISH). Immunohistochemical stainings were also performed using corresponding antibodies to TIMP-1 and TIMP-2. In ISH the neoplastic cells of MFHs showed a high level of expression for both TIMP-1 and TIMP-2 mRNAs. The cells usually expressed similarly both TIMPs, except for osteoclast-like giant cells, which showed a distinct signal for TIMP-2 but not for TIMP-1. A distinctly lower level of both TIMP-1 and TIMP-2 mRNAs was seen in DFs. Immunohistochemical stainings were concordant with the results obtained by ISH. The findings suggest that the behavior of MFHs and DFs is not directly or solely dependent on the quantity of type IV collagenase inhibitors. The increased TIMP synthesis in MFHs might represent a chaotic response of malignant cells to increased matrix degradation. Alternatively, it may reflect a deranged communication between type IV collagenases and TIMPs in malignant tissues.

Adult

Quantification of Pro alpha 1(I) collagen mRNA in skin biopsy specimens: levels of transcription in normal skin and in granuloma annulare.

The synthesis of type I collagen, the major component of the skin, is known to be modulated in aging and in various skin diseases and treatments. In vivo analysis of type I collagen expression, however, is difficult because of the low cell density of the dermis and the small amount of RNA obtainable from skin biopsy specimens. We present here a quantitative polymerase chain reaction method for the quantification of pro alpha 1(I) collagen mRNA in skin punch biopsy specimens. The targeted mRNA and a synthetic RNA as an internal standard were co-amplified together with the same primers. Collagen synthesis was found to decline after birth, so that the amount of pro alpha 1(I) collagen mRNA in the skin of 5- to 58-y-old donors was 17-37% of that in fetal skin. Slot-blot hybridization also indicated that the amount of pro alpha 1(I) collagen mRNA was much lower in adult skin than in fetal skin. In samples from lesional skin of two granuloma annulare patients, the number of pro alpha 1(I) mRNA molecules was increased 4- or 5-fold compared with values from nonlesional skin of the same patients. The method presented is a highly sensitive polymerase chain reaction application, requiring only very small amounts of total RNA.

Adult

Effects of an inhaled steroid (budesonide) on skin collagen synthesis of asthma patients in vivo.

Skin atrophy has been observed after prolonged use of inhaled corticosteroids. We therefore studied the effect of inhaled budesonide and nedocromil in patients with asthma on concentrations of procollagen propeptides in suction blister fluid reflecting skin collagen synthesis in vivo. Both types I and III procollagen propeptide concentrations decreased significantly after 6 wk of either 1,600 micro g/day (n=10) or 400 micro g/day (n=9) of inhaled budesonide but not in control subjects using inhaled nedocromil 16 mg/day (n=9). The reduction in mean propeptide concentrations ranged from 39 to 63%; the effects of the two budesonide doses did not differ significantly. Thus, even a low dose of inhaled corticosteroid represses skin collagen synthesis within a relatively short period.

Administration, Inhalation

Effects of dexamethasone and cell proliferation on the expression of matrix metalloproteinases in human mucosal normal and malignant cells.

Matrix metalloproteinases (MMPs) have an important role in many biological processes, such as tumor metastasis, wound healing, and inflammation. The regulation of MMPs and their inhibitors is still not known in detail, and the aim of this study was to investigate the effects of dexamethasone on cultured oral benign and malignant cell lines. The expression of MMPs in culture was studied: in four gingival (GF) and one periodontal ligament (PLF) fibroblast cell lines; in six gingival keratinocyte (GK) cell lines; and in UNR (UNR-108, rat osteogenic sarcoma) and SCC (SCC-25, human tongue squamous cell carcinoma) cell lines. In the GFs, PLFs, and UNR cells, only MMP-2 (72 kDa gelatinase) was detected by gelatin zymography, while in most of the GK cell lines only MMP-9 (92 kDa gelatinase) was observed. In confluent SCC cultures, both MMP-2 and MMP-9 were found, while only MMP-2 was seen in rapidly growing SCC cells, demonstrating that cell proliferation influenced gelatinase expression in these cells, but not in the other cell lines studied. Dexamethasone at concentrations of 10(-5) mol/L and 10(-7) mol/L decreased the production of gelatinases in the GFs and PLFs, but not in the GKs, SCC, or UNR cells. The expression of mRNAs for matrix metalloproteinases (MMP-1 [interstitial collagenase] and MMP-2) and their inhibitors (TIMP-1 and TIMP-2) was also studied in the GFs by Northern hybridization. Dexamethasone markedly decreased the amount of MMP-2 mRNA in the GFs. The mRNA level of MMP-1 decreased even more in the same GFs. The mRNA levels for TIMP-1 and TIMP-2 were also decreased by dexamethasone in the GFs. Cell proliferation influenced the degree to which dexamethasone decreased these mRNA levels. The results indicate that glucocorticoids decrease the levels of MMPs and TIMPs in oral fibroblastic cells, whereas they do not appear to affect the production of gelatinases in either normal or malignant oral epithelial cell lines.

Cell Division

Role of adhesion molecules in the development of pustular lesions in patients with pustulosis palmaris et plantaris.

The expression of adhesion molecules and the ligands on endothelial cells and infiltrating inflammatory cells in lesional skin specimens from patients with pustulosis palmaris et plantaris was studied. Intercellular adhesion molecule-1 and E-selectin were expressed on endothelial cells of microvessels in the papillary dermis. Intercellular adhesion molecule-1 was also expressed focally on keratinocytes in the epidermis of the lesional skin. On the other hand, lymphocyte function-associated antigen-1, Mac-1 and sialyl Lewis(x) were expressed on infiltrating inflammatory cells. Further, flow cytometric analysis demonstrated that circulating leukocytes in peripheral blood from patients with pustulosis palmaris et plantaris expressed the ligands of adhesion molecules. It is therefore suggested that the expression of adhesion molecules and the ligands on circulating leukocytes, endothelial cells, infiltrating inflammatory cells and keratinocytes might be closely related to the formation of pustular lesions in patients with pustulosis palmaris et plantaris.

Adult

Recovery of human skin collagen synthesis after short-term topical corticosteroid treatment and comparison between young and old subjects.

In the present study, the recovery of the collagen synthesis rate after topical potent glucocorticoid treatment in the human skin in vivo was investigated. In the first experiment, two age groups were compared: young subjects with an age range of 21-26 years (mean 23), and old subjects, aged 55-70 years (mean 64). Twenty healthy male volunteers applied betamethasone-17-valerate to their abdominal skin for 3 days twice a day. Suction blisters were induced on the treated areas, and on the opposite side (healthy non-treated skin), of the abdominal skin on the day following the discontinuation of the treatment, and on the second and seventh day. In another experiment, suction blisters were induced after the treatment and 2 weeks later on the treated area and on healthy skin, in eight male volunteers. In both experiments, the aminoterminal propeptides of type I and III collagens (PINP and PIIINP, respectively) were measured radioimmunologically from the suction blister fluid. Corticosteroid treatment decreased the collagen synthesis in both age groups after a 3-day treatment period, and essentially no recovery in the collagen synthesis could be seen during a 1-week corticoid-free period. The inhibition and downregulation of collagen synthesis in the corticoid-treated skin was similar in both young and old subjects, up to 7 days after the treatment. During the 2-week corticoid-free period, collagen synthesis was recovered to about 50% of the level seen in the non-treated skin, indicating that collagen synthesis is not completely normalized in the human skin even during a 2-week corticoid-free period.

Administration, Topical

Influence of aging, localization, glucocorticoids and isotretinoin on matrix metalloproteases 2 (MMP-2) and 9 (MMP-9) in suction blister fluids.

The expression of two matrix metalloproteases (MMPs), 72 kDa gelatinase (MMP-2) and 92 kDa gelatinase (MMP-9), was studied in suction blister fluids and serum using a zymographic method. Both of the enzymes were detectable in blister fluid and serum, but their expression varied. The MMP-2 levels in serum were only about half of the levels in blister fluid, while the level of MMP-9 was about the same in both serum and blister fluid. The overall level of MMP-2 in serum was much lower than the level of MMP-9 which was possibly derived from inflammatory cells. In subjects aged from 20 to 86 years, no marked changes were seen in the serum or blister fluid gelatinases. Interestingly, body site affected the level of MMP-9. The lowest level was recorded in fluid from blisters on the lower leg, in which the level was only about 19% of the level in fluid from blisters on the abdomen. The levels of MMP-2 and MMP-9 were not decreased by pharmacological doses of systemic prednisone or isotretinoin, which indicates that systemic glucocorticoid or retinoid treatment does not affect the basal levels of MMP-2 and MMP-9.

Adult

A fibroblast cell line cultured from a hypertrophic scar displays selective downregulation of collagen gene expression: barely detectable messenger RNA levels of the pro alpha 1(III) chain of type III collagen.

The present study was designed to investigate the expression of type I, III and VI collagens by a fibroblast cell line initiated from a hypertrophic scar. The same tissue has previously been demonstrated to display markedly elevated expression of type I and III collagen mRNAs in vivo. Unexpectedly, slot-blot and Northern hybridizations revealed a barely detectable steady-state level of pro alpha 1(III) collagen chain mRNA in cultured hypertrophic scar fibroblasts. The levels of pro alpha 1(I) and alpha 2(VI) collagen chain mRNAs were essentially the same in fibroblasts cultured from hypertrophic scar and in fibroblasts cultured from normal skin. However, Northern blot analyses indicated that the ratio of 5.8 kb to 4.8 kb species of pro alpha 1(I) collagen mRNA was slightly reduced in fibroblasts originating from the hypertrophic scar compared to that in normal fibroblasts. When normal fibroblasts were incubated in conditioned medium from hypertrophic scar cultures, the expression of pro alpha 1(III) collagen chain mRNA decreased to a markedly lower level. Our studies suggest that collagen synthesis by fibroblasts in hypertrophic scars is stimulated by humoral factors which are active only in vivo. Furthermore, the results suggest that fibroblasts cultured from hypertrophic scar display a selective downregulation of different collagen genes and that this downregulation is exerted through an autocrine mechanism.

Adult

Increased collagen synthesis in psoriasis in vivo.

Psoriasis is an inflammatory skin disease of unknown a etiology which also involves changes in dermal elements. Previous in vitro studies have shown an increased collagen synthesis rate in cultured fibroblasts. In this study collagen synthesis was studied in vivo in the uninvolved skin of psoriatic patients using a newly developed method in which collagen propeptides were measured in suction blister fluid. Both type I and type III collagen synthesis rates, as measured in terms of the carboxyterminal propeptide of type I procollagen (PICP) and the aminoterminal propeptide of type III procollagen (PIIINP), were increased about two-fold in uninvolved psoriatic skin as compared with controls, the mean level of PICP being 870 and 457 micrograms, respectively (P < 0.001), and of PIIINP being 294 and 124 micrograms, respectively (P < 0.01). The increased collagen synthesis rate was also confirmed by in situ hybridization using specific probes. Collagen mRNAs were found to be particularly abundant in psoriatic patients, who also demonstrated a high collagen synthesis rate when assayed by measuring collagen propeptides. The increased rate of collagen synthesis in the uninvolved psoriatic skin seemed not to be related to the severity of the disease or to various treatments such as UVB, PUVA, retinoids or cytostatic drugs, but seemed more likely to be due to the psoriasis itself. Interestingly, skin thickness was not increased in the patients with psoriasis, even though collagen synthesis was markedly elevated, perhaps suggesting that in psoriasis the turnover rate of collagen is enhanced.

Adult

Destruction of the epithelial anchoring system in lichen planus.

To find out whether the epithelial anchoring system shows any alterations in lichen planus, we examined the distribution of type VII collagen, alpha 6 beta 4 integrin, and kalinin in lesions of lichen planus. These molecules were chosen because they are structural components of anchoring fibrils, hemidesmosome-associated complexes, and anchoring filaments. The localization of type VII collagen in lichen planus was strikingly different from that in nonaffected mucosa or dermis or in other mucocutaneous lesions. In the normal mucosa, type VII collagen was localized only at the basement membrane zone. In lichen planus, type VII collagen was present not only in the basement membrane area but also in streaked patterns deep in the connective tissue. The hemidesmosome-associated complex, alpha 6 beta 4 integrin, was localized at the basal aspect of basal epithelial cells of nonaffected sites, but was diffuse and discontinuous in lichen planus lesions. Most of the basal keratinocytes, however, stained for this integrin. Kalinin staining was discontinuous in lichen planus lesions. Often, finger-like projections of kalinin staining were found protruding into the connective tissue stroma. Kalinin was localized at the basement membrane zone of the nonaffected tissue and other mucocutaneous lesions. These results indicate that in cutaneous and mucosal lichen planus, the epithelial anchoring system is disturbed.

Antigens, Surface

Expression of cytokeratins in regenerating human epidermis.

The expression of cytokeratin polypeptides in regenerating human epidermis was immunohistochemically examined during re-epithelization of suction blisters. The regenerating basal and suprabasal epidermis expressed keratin polypeptides K13, K14, K16 and K18, which are not present in normal suprabasal epidermis. On the contrary, K10, a normal constituent of terminally differentiated keratinocytes, was lacking from the epidermis until the ninth day of re-epithelization. The findings indicate changes similar to other hyperproliferative states (expression of K16), basal-like features (expression of K14), or properties reminiscent of fetal skin (K13 and K18) in the newly formed epidermis. Monoclonal antibodies for cytokeratins and a technique using suction blisters seemed to be a suitable methodology for the study of epidermal regeneration in normal skin. The technique may also have advantages in the investigation of keratin expression in diseased skin.

Adult

Topical mometasone furoate and betamethasone-17-valerate decrease collagen synthesis to a similar extent in human skin in vivo.

Topical corticosteroids are used extensively to treat inflammatory skin diseases. Long-term use, however, may be associated with adverse effects such as skin atrophy. New steroids have been developed with the objective of increasing efficacy and reducing the incidence of adverse effects. Mometasone furoate (MMF) is one of these new derivatives. The aim of our study was to compare the effects of MMF and betamethasone-17-valerate (BM-17-valerate) on collagen synthesis in human skin in vivo. Fifteen healthy male volunteers applied MMF, BM-17-valerate and vehicle for 1 week to different areas of abdominal skin. Suction blisters were raised on these areas, and a control site, and procollagen propeptide (PICP, PINP, PIIINP) levels in the suction blister fluid were measured by radioimmunoassay. Skin thickness was measured ultrasonically by Dermascan A at the end of the treatment period. The levels of the three propeptides in suction blister fluid were reduced to similar extent by MMF and BM-17-valerate. The 1-week treatment period had no detectable influence on skin thickness. We conclude that MMF and BM-17-valerate decrease collagen synthesis to the same extent in human skin in vivo.

Administration, Topical

The effect of topical oestradiol on skin collagen of postmenopausal women.

OBJECTIVE: To examine the effect of topical oestradiol on skin collagen and elastin. SUBJECTS: Twelve postmenopausal women, aged 52 to 76 years. INTERVENTIONS: Topical oestradiol treatment on the skin of lower abdomen and the vehicle only on the contralateral site; once a day for three months. MAIN OUTCOME MEASURES: The content of skin hydroxyproline; the levels of the carboxyterminal propeptide of human type I procollagen (PICP) and of the aminoterminal propeptide of human type III procollagen (PIIINP). The number and the quality of collagen and elastic microfibrils. RESULTS: The amount of hydroxyproline in the skin significantly (P = 0.012) increased from 11.8 to 16.3 micrograms (38%) during oestradiol treatment. After treatment, the PICP level in the blister fluid was significantly (P = 0.024) higher on the treated site than on the control site. Also the level of PIIINP increased, but the change was not statistically significant. Electron microscopy showed morphologic improvement of elastic and collagen fibres, while the number of oxytalan and elaunin fibres was unchanged in light microscopy. CONCLUSIONS: Topical oestradiol treatment increases the amount of skin collagen. The increase in the level of PICP and PIIINP in skin blister fluid indicates that oestradiol treatment stimulates collagen synthesis. Furthermore, our results show that topical ostradiol treatment has a greater influence on the amount than on the quality of skin collagen. On the contrary, in elastic tissue the oestradiol treatment will only result in morphologic improvement.

Administration, Topical

Synthesis and degradation of connective tissue macromolecules in pachydermoperiostosis (PDP): evidence for altered processing of plasminogen activator inhibitor-1 (PAI-1).

Pachydermoperiostosis (PDP) is a hereditary disease with hyperostosis, clubbing of fingers, coarse skin and thickening of bones. Previous studies have disclosed some abnormality in the connective tissue in these patients. The purpose of the present study was to investigate connective tissue pathology in one family with PDP using fibroblast cultures. Fibroblastic cells were established from both the affected and healthy looking skin of 2 patients with PDP, and the expression of types I and III collagen, 92 kDa and 72 kDa gelatinases, metalloproteinase inhibitor (TIMP-1), human retinoic acid receptor and transforming growth factor beta (TGF beta) was analyzed. The modulation of glycoprotein synthesis, and of plasminogen activators and their inhibitors by TGF beta in vitro were also studied. The results indicated that collagen genes and gelatinases were similarly expressed in PDP and control cells, as well as the human retinoic acid receptor. TGF beta stimulated, both in PDP cells and normal cells, the synthesis of fibronectin, procollagen and plasminogen activator inhibitor-l (PAI-1), but qualitative differences could not be found. Proteolytically processed forms of PAI-1 were detected in PDP cell lines.

Adult

Comparison of the effect of hydrocortisone, hydrocortisone-17-butyrate and betamethasone on collagen synthesis in human skin in vivo.

It has been shown previously that topical corticosteroid treatment decreases collagen synthesis in human skin in vivo and that the adverse effects are due to reduced collagen synthesis. The aim of the present study was to evaluate the effect of hydrocortisone, hydrocortisone-17-butyrate and betamethasone on collagen synthesis in human skin in vivo. Fourteen healthy male volunteers applied hydrocortisone, hydrocortisone-17-butyrate, betamethasone and vehicle twice a day for one week to four separate areas marked on their abdominal skin. The collagen synthesis rate in the skin was measured by assaying collagen propeptides from the suction blisters induced on the treated areas. Aminoterminal propeptide of type I procollagen (PINP) and aminoterminal propeptide of type III procollagen (PIIINP) were measured from skin blister fluid using radioimmunoassays. Skin thickness was measured with ultrasound. Hydrocortisone decreased the two propeptides studied in the suction blister fluids less than did hydrocortisone-17-butyrate and betamethasone, but the interindividual variation was great. Hydrocortisone-17-butyrate and betamethasone had almost similar decreasing effects on the propeptides in the suction blister fluid. Hydrocortisone decreased the concentrations of PINP and PIIINP by about 35%. In some subjects (4/14) the decline of the collagen propeptide levels was over 50%. The decline in the concentration of PINP was 63% by hydrocortisone-17-butyrate and 69% by betamethasone, while the decrease in PIIINP was 55% by hydrocortisone-17-butyrate and 62% by betamethasone. None of the treatments had any effect on skin thickness within one week. In conclusion, it seems that hydrocortisone is less atrophogenic than hydrocortisone-17-butyrate and betamethasone, as shown by radioimmunoassays for collagen propeptides. The order of inhibitory potency of the three glucocorticoids on collagen synthesis was hydrocortisone < hydrocortisone-17-butyrate < betamethasone. Thus, assay of collagen propeptides from suction blisters can be used to screen various steroids with respect to their action on collagen synthesis.

Administration, Topical

Methotrexate-linked ventricular arrhythmias.

A 36-year-old male, who 1 year previously had survived a large anterior myocardial infarction, followed by cardiac arrest, was treated a few months for psoriasis with oral methotrexate, at single weekly oral doses of up to 10 mg, when he had to be hospitalized due to anginal pain and palpitation. Repeated 24-hour electrocardiogram recordings revealed ventricular ectopy up to 580 premature beats per hour. The ventricular premature beats were almost completely abolished after a few days' discontinuation of methotrexate therapy but recurred a few hours after an attempt to restart it had been made. A coronary angiogram showed only minimal wall abnormalities. Electrophysiological testing and endomyocardial biopsy were normal.

Administration, Oral

Neurofibromin: expression by normal human keratinocytes in vivo and in vitro and in epidermal malignancies.

BACKGROUND: Neurofibromin is the product of the NF1 gene, the mutations of which have been linked with type 1 neurofibromatosis. The expression of neurofibromin in human skin has not been analyzed in detail. EXPERIMENTAL DESIGN: Polyclonal Ab were raised against synthetic peptides corresponding to three different sites of neurofibromin. One of the Ab selectively recognized type II neurofibromin. The localization of neurofibromin was first studied in normal human skin. Further studies concentrated on neurofibromin expression in basal cell and squamous cell carcinomas. Reverse transcription-PCR (RT-PCR) and molecular hybridizations and immunocytochemistry were used to characterize the expression of neurofibromin in cultured keratinocytes. RESULTS: All neurofibromin-specific Ab immunolabeled the epidermis. The basal keratinocytes displayed the most prominent immunosignal for type II neurofibromin. RT-PCR demonstrated the presence of both type I and II neurofibromin mRNA transcripts in cultured keratinocytes. Keratinocytes induced to differentiate and to arrest division by a high (1.4 mM) Ca2+ concentration of the culture medium displayed a down-regulation of neurofibromin expression at the mRNA and protein levels. This was most strikingly demonstrated by a reduction of immunoreactivity for type II neurofibromin. Basal cell carcinomas displayed a weak immunosignal for type II neurofibromin. In contrast, particularly the central areas of squamous cell carcinoma, islands were intensely immunolabeled. CONCLUSIONS: The results suggest that neurofibromin acts as a regulator of the basal keratinocytes in normal skin and that cultured keratinocytes offer a human model for studies aimed to elucidate the regulation of neurofibromin gene expression. Furthermore, aberrations in neurofibromin expression may play a role in the pathogenesis of epidermal cancers.

Amino Acid Sequence

Pachydermoperiostosis: analysis of the connective tissue abnormality in one family.

BACKGROUND: Pachydermoperiostosis (PDP) is a rare hereditary disease characterized by hyperostosis, clubbing of fingers, coarse skin, and abnormalities in other organs, such as the gastrointestinal tract. Previous studies have disclosed several abnormalities in the connective tissue in these patients. OBJECTIVE: The purpose of the study was to investigate connective tissue abnormalities in one family with PDP. METHODS: Clinical features were evaluated; x-ray, immunohistochemical, and electronmicroscopic studies were performed; and markers of collagen metabolism and lysosomal enzymes were determined. RESULTS: Immunohistochemical and ultrastructural studies revealed accumulation of tenascin, glycosaminoglycans, and fibrillar material in apparently disorganized microfibrils of elastic fibers. Osteocalcin levels in the serum were increased, but synthesis and degradation markers of collagen in the serum were not altered. No evidence of a lysosomal enzyme deficiency was found. CONCLUSION: Acidic mucopolysaccharides and some fibrillar material accumulate in the dermis of patients with PDP. Increased levels of osteocalcin in serum indicate higher osteoblastic activity. Markers of synthesis and degradation of collagen were not altered.

Acid Phosphatase