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C Fritsch

Publications and source records attributed to C Fritsch.

At least 55 records · Page 3Linked to original sources

Ex vivo application of delta-aminolevulinic acid induces high and specific porphyrin levels in human skin tumors: possible basis for selective photodynamic therapy.

In photodynamic therapy with topically applied delta-aminolevulinic acid porphyrins are acting as photosensitizers. The profile of porphyrin metabolites in normal or in neoplastic skin after administration of delta-aminolevulinic acid has not been determined in detail yet. Thus, to study porphyrin biosynthesis in human skin an organ culture model was developed. Explant pieces of normal skin, keratoacanthoma, and basal cell carcinoma were incubated with 1 mM delta-aminolevulinic acid for 36 h. Levels of delta-aminolevulinic acid, porphyrins and porphyrin metabolites were measured in tissues and supernatants. After incubation with delta-aminolevulinic acid, higher porphyrin levels were demonstrated in tumors as compared to normal skin. In supernatants, most of formed porphyrins, preferentially highly carboxylated porphyrin metabolites, were measured. The pattern of synthesized porphyrins differed between normal and neoplastic skin explants. In tissues of basal cell carcinomas protoporphyrin was preferentially shown and tissues of keratoacanthomas were characterized by a predominance of coproporphyrin as compared to normal skin. The results show that explant cultures offer an easy approach to examine the porphyrin biosynthesis of various tissues. The tumor-specific delta-aminolevulinic acid metabolism indicates additional porphyrin metabolites such as coproporphyrin apart from protoporphyrin as effective photosensitizers and may offer a novel approach to tumor-selective photodynamic damage.

Aminolevulinic Acid↗

Influence of indoles (melatonin, serotonin and tryptophan) on the porphyrin metabolism in vitro.

We examined the influence of melatonin, serotonin and tryptophan on the basal and delta-aminolevulinic acid (ALA)-induced porphyrin content in HaCaT, SKMel-23 and HepG2 cells. ALA-preincubated and ALA-free cells were fed with medium containing 1 mM melatonin, serotonin or tryptophan. After 24 h the porphyrin content in the cells and in the culture medium was measured. In the three cell lines the inbucation with 1 mM ALA over 24 h increased the porphyrin concentration in all cell lines in different degrees: HepG2 > SKMel-23 > HaCaT cells. In HepG2 cells, neither melatonin, serotonin nor tryptophan influenced ALA-induced porphyrin concentrations significantly, but all three indoles depressed the porphyrin levels in SKMel-23 and HaCaT cells. The indoles may decrease the ALA uptake in HaCat or SKMel-23 cells. Another mechanism could be the inhibition of enzymes converting ALA into porphyrins.

5-Aminolevulinate Synthetase↗

Changing intestinal connective tissue interactions alters homeobox gene expression in epithelial cells.

In segmented organs, homeobox genes are involved in axial patterning and cell identity. Much less is known about their role in non-segmented endoderm derivatives such as the digestive epithelium. Using a xenograft model of fetal intestinal anlagen implanted under the skin of nude mice, we have investigated whether the expression of five homeobox genes (HoxA-4, HoxA-9, HoxC-8, Cdx-1 and Cdx-2) is modified when intestinal epithelium undergoes normal development or displays heterodifferentiation in association with heterotopic mesenchyme. In homotypic associations of fetal endoderm and mesenchyme that recapitulate normal development, the overall pattern of homeobox gene expression was maintained: HoxA-9 and HoxC-8 were the highest in the colon and ileum, respectively, and HoxA-4 was expressed all along the intestine; Cdx-1 and Cdx-2 exhibited an increasing gradient of expression from small intestine to colon. Yet, grafting per se caused a faint upregulation of HoxA-9 and HoxC-8 in small intestinal regions in which these genes are not normally expressed, while the endoderm-mesenchyme dissociation-association step provoked a decay of Cdx-1 in the colon. In heterotopic associations of colonic endoderm with small intestinal mesenchyme, the colonic epithelium exhibited heterodifferentiation to a small intestinal-like phenotype. In this case, we observed a decay of HoxA-9 expression and an upregulation of HoxC-8. Additionally, heterodifferentiation of the colonic epithelium was accompanied by a downregulation of Cdx-1 and Cdx-2 to a level similar to that found in the normal small intestine. To demonstrate that mesenchyme-derived cells can influence Cdx-1 and Cdx-2 expression in the bowel epithelium, fetal jejunal endoderm was associated with intestinal fibroblastic cell lines that either support small intestinal-like or colonic-like morphogenesis. A lower expression of both homeobox genes was shown in grafts presenting the small intestinal phenotype than in those showing glandular colonic-like differentiation. Taken together, these results suggest that homeobox genes participate in the control of the positional information and/or cell differentiation in the intestinal epithelium. They also indicate that the level of Cdx-1 and Cdx-2 homeobox gene expression is influenced by epithelial-mesenchymal cell interactions in the intestinal mucosa.

Animals↗

Porphyrins preferentially accumulate in a melanoma following intravenous injection of 5-aminolevulinic acid.

Systemically, as opposed to topically, administered 5-aminolevulinic acid (ALA) is of increasing interest for photodynamic therapy (PDT) because of more selective and more homogeneous accumulation of porphyrins in neoplastic tissues. This study investigates the profile and the time course of porphyrin metabolites in various tissues following intravenous injection of ALA (0.5 g/kg body weight) into hamsters bearing an amelanotic melanoma (A-Mel-3). ALA injection led to maximum levels of ALA and porphyrins in erythrocytes after 45 min. In tissues, maximum porphyrin levels were detected after 45 min (tumor), 4 h (skin, kidney), and 24 h (liver). Sixfold higher porphyrin levels were observed in tumors as compared to surrounding normal skin at 45 min. Predominant porphyrin metabolites were protoporphyrin (tumor, skin, liver, kidney), coproporphyrin (tumor) and highly carboxylated porphyrins (tumor, skin, kidney). These data suggest optimum efficacy of light irradiation in systemic PDT with ALA within the first two hours after injection. Tumor-specific ALA metabolism yields protoporphyrin and coproporphyrin as the prevailing porphyrin metabolites.

Aminolevulinic Acid↗

Effects of clonidine in a primed rat model of acute hepatic porphyria.

Acute hepatic porphyrias can be induced by several drugs and acute attacks of porphyrias are often associated with severe hypertension. Therefore it is important to know if an antihypertensive drug used has porphyrogenic potency or not. As previously demonstrated in normal rats the alpha-receptor blocker clonidine (CAS 4205-90-7) has no significant influence on the porphyrin metabolism. Pretreatment of rats with 3,5-diethoxycarbonyl-1,4-dihydrocollidine (DDC) or allyl-isopropyl-acetamide (AIA) induces hepatic delta-aminolaevulinic acid synthase (ALA-S) and increases the urinary excretion of porphyrin precursors (ALA and PBG) comparable to the latent phase of acute hepatic porphyrias in humans. Clonidine did not induce hepatic ALA-S or urinary excretion of ALA or PBG in normal as well as in DDC or AIA pretreated rats. Moreover the induction of P4501A1 (7-ethoxyresorufin-O-deethylase) by DDC was abolished by simultaneous application of clonidine. From these findings one can probably conclude that clonidine is a safe drug in human acute hepatic porphyria.

5-Aminolevulinate Synthetase↗

Influence of topical photodynamic therapy with 5-aminolevulinic acid on porphyrin metabolism.

Photodynamic therapy (PDT) with topically applied 5-aminolaevulinic acid (5-ALA) is increasingly used for treating tumours. The efficacy of topical PDT is limited to superficial and initial tumours. The topically applied doses of 5-ALA vary from 0.02 to 7.0 g per session according to the type of lesion. There are no studies on the influence of topically applied 5-ALA on the systemic accumulation of porphyrins or porphyrin precursors. A group of 20 patients with actinic keratoses (AK) and basal cell carcinomas (BCC) were treated by topical PDT with 5-ALA. Prior to and 6 and 24 h after PDT, 5-ALA and total porphyrin concentrations were determined in red blood cells and plasma, respectively. In addition, before and after 5-ALA treatment, 24-h urine samples were collected and porphyrins and porphyrin precursors were measured. There was no significant alteration in porphyrin metabolism. In some patients, a slight but insignificant increase in erythrocyte and plasma porphyrins was found 6 h after 5-ALA PDT. This investigation confirms clearly the safety of this treatment modality and demonstrates that 5-ALA application (up to 7 g) in the course of PDT has no influence on the concentrations of porphyrins and porphyrin precursors measured in various compartments.

Administration, Topical↗

[Photodynamic therapy and breast-plasty of a extensive superficial trunk skin basalioma of the breast. An effective combination therapy with photodynamic diagnosis].

We treated a large superficial basal cell carcinoma (ca. 10 x 6 cm) on the right breast in a 48-year old woman with photodynamic therapy (PDT). Fractionated PDT was performed by topical application of delta-aminolevulinic acid (delta-ALA, 20%) with subsequent red light (570-750 nm; 180 J/ cm2) in three sessions. Nearly total remission of the tumor resulted; however, a few residual neoplastic islands partly infiltrating the nipple-areola complex could be detected by photodynamic diagnosis (PDD). These fluorescent areas were marked, excised, and the defect was closed by a rotation advancement flap. Total excision of the tumor was verified histologically. By combining PDT and surgery, this large tumor was treated with excellent cosmetic results. This case demonstrates the efficiency of topical PDT with adjunctive plastic surgery controlled by PDD even in large tumors.

Administration, Topical↗

Influence of UVA and UVB irradiation on hepatic and cutaneous P450 isoenzymes.

The influence of UVA and UVB irradiation of the skin for 1, 2 and 4 weeks on the activities of the hepatic and cutaneous P450 isoenzymes was investigated in female Wistar rats before and after systemic administration of hexachlorobenzene (HCB), a well-known porphyrogenic agent, which additionally induces P450 1A1 and P450 1A2 isoenzymes. UVA and UVB irradiation of the skin of controls and HCB-treated animals did not influence porphyrin metabolism. In the nonporphyric rats hepatic EROD (P450 1A1) activity was induced by UVB, but the activity of ADM (P450 2B) and EMDM (P450 3A) was either minimally or not affected. In the HCB-treated (porphyric) rats UVA and UVB irradiation resulted in a significant depression of HCB-induced EROD in the liver and in the skin. In both the nonporphyric and the porphyric rats UVA and UVB irradiation had no effect on hepatic ADM activity. In the liver of the nonporphyric animals EMDM activity remained unchanged after UVA and UVB irradiation, whereas in the HCB-treated animals the activity of this enzyme was increased. Finally, after UVA and UVB irradiation cutaneous EMDM activity was increased in the controls, whereas the HCB-induced increase of this enzyme in porphyric animals was decreased. In addition long-term (28 days) UVB irradiation decreased hepatic GSH content significantly in normal and porphyric rats. These experimental findings cannot be directly extrapolated to humans; however, they suggest that exposure of human skin to UV radiation may result in alterations in the activity of cutaneous hepatic and other extracutaneous P450 isoenzymes.

Aminopyrine N-Demethylase↗

Formation of water-soluble porphyrins and protoporphyrin IX in 5-aminolevulinic-acid-incubated carcinoma cells.

The bioconversion of 5-aminolevulinic acid (ALA) into hydrophobic protoporphyrin IX and other water-soluble porphyrins was investigated in Ehrlich ascite carcinoma (EAC) cells and in a myeloma cell line. The effects of irradiation (514 nm), temperature, incubation time and added glucose on the relative porphyrin concentrations (protoporphyrin vs. water-soluble porphyrins) were examined. Variations in these parameters induced a change in the amount of water-soluble porphyrins relative to protoporphyrin IX. The main component of the hydrophilic porphyrins was found to be uroporphyrin (Up), with minor components of coproporphyrin (Cp) and other carboxyporphyrins. The enhanced production of water-soluble porphyrins appears to be associated with alterations in the activities of the various enzymes in the heme biosynthetic pathway, resulting, for example, in the reduction in the activity of mitochondrial enzymes.

Aminolevulinic Acid↗

c-myc amplification in hepatocellular carcinoma predicts unfavorable prognosis.

Structural alterations and amplifications of the c-myc oncogene have been implicated in the pathogenesis and progression of several human neoplastic diseases. To study the role of c-myc amplification in human hepatocellular carcinomas (HCC), we analyzed 20 HCC using differential polymerase chain reaction (PCR). DNA used for differential PCR was extracted from formalin-fixed, paraffin-embedded tissue obtained by radiographically directed needle aspiration biopsy. Differential PCR reactions included sets of primers for c-myc and a control gene, dopamine D2 receptor (D2R), which yielded products of 150 bp and 110 bp, respectively. Evaluation of amplification was based on the relative concentration of c-myc and D2R PCR products. The c-myc amplification was detected in 10 of 20 HCC. Cases with c-myc amplification tended to have higher histologic grade and were significantly (P = 0.05) associated with worse prognosis. Amplification was present in none of two Grade 1 tumors, seven of the fourteen Grade 2 tumors, and three of four Grade 3 tumors. The mean survival times (+/- SEM) for patients with and without c-myc amplification were 5.7 (+/- 1.8) and 13.8 (+/- 2.6) months, respectively. These results indicate that c-myc amplification in HCC can be evaluated by differential PCR of needle biopsy specimens, and is an unfavorable prognostic indicator.

Adult↗

Specificity in the association of tomato black ring virus satellite RNA with helper virus.

The satellite RNAs (sat-RNAs) associated with some isolates of tomato black ring virus (TBRV) consist of single-stranded molecules of about 1375 nucleotides, encoding a nonstructural protein of 48K which has been shown to be involved in the replication of the sat-RNA. The TBRV sat-RNAs are also dependent for their replication and for their encapsidation on the helper virus. To characterize the nature of the association between sat-RNA and helper virus, transcripts of sat-RNA from TBRV isolates C and L (respectively, of serotypes G and S) have been prepared and inoculated onto Chenopodium quinoa leaves or protoplasts. Transcript of the TBRV sat-RNA C is efficiently multiplied when coinoculated with the genomic RNAs of TBRV isolate G (used instead of TBRV isolate C, because isolate G was depleted of sat-RNA), but does not multiply with TBRV isolate L. On the other hand, transcript of the sat-RNA L is able to multiply with the cognate helper virus and, less efficiently, with grapevine chrome mosaic virus (another nepovirus, 80% similar to TBRV), but does not multiply with TBRV G. The specificity of the association resides at the level of sat-RNA replication. Analysis of the multiplication of chimeric sat-RNAs, obtained by exchanging different regions between the two sat-RNAs C and L, showed that the 5' and the 3' noncoding regions of the sat-RNA, although important for replication, are not implicated in specificity. The results suggest that the determinants of the specificity are contained in the 48K sat-RNA-encoded protein.

Base Sequence↗

Translation of the second gene of peanut clump virus RNA 2 occurs by leaky scanning in vitro.

The two 5'-proximal open reading frames of peanut clump virus RNA 2, which encode the coat protein of 23 kDa and a protein of 39 kDa (P39), are both translated in vitro from genomic RNA 2. We have studied the translational strategy involved in the initiation at the second AUG of RNA 2, which is the initiation codon of P39. Mutation experiments with synthetic transcripts corresponding to the 5'-half of RNA 2 ruled out mechanisms of P39 translation initiation involving termination-reinitiation and internal ribosomes entry. The results were consistent, however, with a leaky scanning mechanism for P39 initiation, in which about one-third of the ribosomes fail to initiate translation of coat protein and scan along the template to initiate translation at the AUG of the P39 gene, more than 1000 residues in from the 5'-terminus of the RNA 2.

Arachis↗

Functional characterization of the proteolytic activity of the tomato black ring nepovirus RNA-1-encoded polyprotein.

Translation of tomato black ring virus (TBRV) RNA-1 in a rabbit reticulocyte lysate leads to the synthesis of a 250K polyprotein which cleaves itself into smaller proteins of 50, 60, 120, and 190K. Polypeptides synthesized from synthetic transcripts corresponding to different regions of TBRV RNA-1 are processed only when they encode the 23K protein delimited earlier by sequence homology with the cowpea mosaic virus 24K protease. The proteolytic activity of this protein is completely lost by mutating residues C170 (to I) or L188 (to H), residues which align with conserved residues of the viral serine-like proteases. The 120K protein is generated by cleavage of the dipeptide K/A localized in front of the VPg but is not further cleaved in vitro at the K/S site (at the C terminus of the VPg) or between the protease and polymerase domains. However, both the protein VPgProPol (120K) and the protein ProPol (117K) produced in vitro from synthetic transcripts can cleave in trans the RNA-2-encoded 150K polyprotein, but they cannot cleave in trans polypeptides containing a cleavage site expressed from RNA-1 transcripts in which the protease cistron is absent or modified.

Amino Acid Sequence↗

Wavelength dependency of photodynamic effects after sensitization with 5-aminolevulinic acid in vitro and in vivo.

A promising new therapeutic modality for skin cancer, administration of the heme precursor 5-aminolevulinic acid followed by light irradiation, is known as photodynamic therapy. Photofrin, the only clinically approved sensitizer, has an absorption maximum at 630 nm, the wavelength used in most experimental and clinical trials with 5-aminolevulinic acid. We investigated photodynamic efficacy of irradiation with coherent light at wavelengths ranging from 622 to 649 nm in vitro and in vivo as well as the content and distribution of intracellular porphyrin after administration of 5-aminolevulinic acid. HaCaT immortalized human keratinocytes were sensitized with 30 micrograms/ml 5-aminolevulinic acid for 24 h in vitro. By cell viability determined with the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide assay, the best cell-killing effects were observed after irradiation at 635 nm. Using an amelanotic melanoma (A-Mel-3) grown subcutaneously in Syrian Golden hamsters, we confirmed these results in vivo: tumor growth was markedly delayed in animals treated with 100 mg/kg 5-aminolevulinic acid intravenously and irradiated with coherent light at 635 nm as compared to animals irradiated at 630 nm. This photodynamic effect is probably mediated by large amounts of the photosensitizing porphyrin, protoporphyrin IX, localized in cell membranes as visualized by confocal laser scan microscopy and as determined by high pressure liquid chromatography in vitro. The results suggest that irradiation at 635 nm with a coherent light source is more effective than irradiation at 630 nm for photodynamic therapy with 5-aminolevulinic acid.

Aminolevulinic Acid↗

Porphyrin concentrations in various human tissues.

We measured the concentrations of total porphyrins and their metabolites (uro-, hepta-, hexa-, penta-, copro- and protoporphyrin) in various human tissues: liver, erythrocytes, skin, adipose tissue, and mammary gland. The porphyrin concentrations varied within major limits, e.g., 3.1 +/- 2.3 nmol porphyrins/g liver and 0.50 +/- 0.10 nmol/g erythrocytes. No significant differences were detectable in other tissues in comparison with liver. In all tissues, the predominant metabolite was protoporphyrin, followed by coproporphyrin, whereas only low concentrations of higher carboxylated porphyrins such as uroporphyrin were detectable. It is concluded that porphyrin metabolism and its regulation is similar in all human tissues, perhaps with some small differences in the erythrocytes.

Adipose Tissue↗

Evaluation of c-erbB-2 amplification in breast carcinoma by differential polymerase chain reaction.

Previous studies have found that amplification and overexpression of the c-erbB-2 oncogene in mammary ductal adenocarcinomas predicts decreased disease-free or overall survival. Information regarding the prognostic and pathogenetic significance of oncogene amplification has been limited by difficulty obtaining sufficient quantities of high molecular weight DNA for Southern blot analysis. Differential polymerase chain reaction (PCR) has been suggested as an alternative method for evaluating gene amplification and can be performed using formalin-fixed paraffin-embedded specimens. The authors of this study used differential PCR to detect c-erbB-2 gene amplification and immunohistochemistry to evaluate c-erbB-2 expression. A highly significant degree of concordance (P < .002) between c-erbB-2 amplification and expression was observed. Abnormalities of c-erbB-2 copy number or expression were more common in tumors with higher histologic grade, and trends were noted toward association with other prognostically unfavorable biologic markers, such as reduced progesterone receptor content and DNA aneuploidy.

Base Sequence↗

Complete nucleotide sequence of peanut clump virus RNA 1 and relationships with other fungus-transmitted rod-shaped viruses.

The complete nucleotide sequence of RNA 1 of the tentative furovirus peanut clump virus (PCV) has been determined by characterization of cloned cDNA and by direct RNA sequencing. The sequence is 5897 nucleotides in length and contains three long open reading frames (ORFs). The 5'-terminal proximal ORF has the potential to encode a polypeptide of M(r) 130942 (P131) containing methyltransferase and RNA helicase homologous domains and displaying homology with large nonstructural proteins of alpha-like viruses, which are known or thought to be involved in virus replication. The P131 ORF is followed in-frame by a second ORF which is probably expressed by partial readthrough of the UGA termination codon of the P131 ORF to produce a polypeptide of M(r) 191044 (P191). The readthrough region of P191 contains the characteristic 'core' RNA polymerase motif, indicating that the PCV replicase proteins are expressed as a pair of overlapping proteins as in the tobamoviruses, tobraviruses and the furovirus soil-borne wheat mosaic virus (SBWMV). Sequence comparisons indicate that P131 and P191 are most closely related to the replicase proteins of SBWMV and the hordeivirus barley stripe mosaic virus (BSMV) but are only distantly related to the replicase of the furovirus beet necrotic yellow vein virus (BNYVV). The 3'-terminal proximal ORF can encode a putative polypeptide of M(r) 14556 (P15) which displays homology to small cysteine-rich proteins of hordeiviruses and SBWMV. We have corrected four errors in the sequence of PCV RNA 2 published previously by Manohar et al. (Virology 195, 33-41, 1993). One of these changes causes two small ORFs near the 3' terminus of RNA 2 to be fused together to create an ORF for a putative polypeptide of M(r) 16833 (P17) which displays extensive homology with the third protein of the triple gene block of BSMV RNA beta.

Amino Acid Sequence↗