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Biomedical subjects

A Guiotto

Publications and source records attributed to A Guiotto.

At least 37 records · Page 2Linked to original sources

Angular furoquinolinones, psoralen analogs: novel antiproliferative agents for skin diseases. Synthesis, biological activity, mechanism of action, and computer-aided studies.

With the aim of obtaining new potential photochemotherapeutic agents, having increased antiproliferative activity and decreased undesired effects, we have prepared some new furoquinolinones. Two of them have been studied in detail: 1,4,6,8-tetramethyl-2H-furo[2,3-h]-quinolin-2-one (8), and 4,6,8,9-tetramethyl-2H-furo[2,3-h]quinolin-2-one (10). These compounds form a molecular complex with DNA, undergoing intercalation inside the duplex macromolecule, as shown by linear flow dichroism. The complexed ligands, by subsequent irradiation with UV-A light, photobind with the macromolecule forming only monocycloadducts with thymine with cis-syn configuration. In order to evaluate the electronic effects induced by the nitrogen atom in position 1 of 8, semiempirical calculations have been performed on both 4,6,4'-trimethylangelicin (TMA) and 8. The results obtained do not clearly differentiate between the two molecules which, at this level of approximation, show the possibility of photoreaction with both the 3,4- and 8,9-olefinic bonds for 8 and the 3,4- and 4',5'-bonds for TMA. In the lower energy conformation of intercalated 8, the furan ring is turned toward the minor groove of the polynucleotide, in such a way that photoreaction of this ring with thymine is favored. These compounds unexpectedly inhibit DNA and RNA synthesis in Ehrlich cells, in the dark. They also show a strong photoantiproliferative activity, 2 orders of magnitude higher than 8-methoxypsoralen (8-MOP), the most used drug for photochemotherapy. Their mutagenic activity on Escherichia coli is similar to that of TMA and 8-MOP. On the basis of these results, the compounds should deserve evaluation of their activity in the treatment of hyperproliferative skin diseases.

DNA↗

Photobiological properties of a new tetramethylfuroquinolinone.

1,4,6,8-tetramethyl-2H-furo[2,3-h]quinolin-2-one (FQ) is a new isoster of angelicin characterised by an extremely strong photosensitizing activity, which is several times higher than that of 8-MOP and 4,6,4'-trimethylangelicin (TMA). Following treatment with 1.2 microM FQ and a dose as low as 0.05 kJ m(-2) of UVA irradiation, survival (colony forming ability) of HeLa cells was abolished, while TMA and 8-MOP (even at five times the concentration for the latter) were practically ineffective. Upon UVA irradiation FQ induces various types of lesions in mammalian cells in DNA: single-strand breaks (SSBs), many monoadducts and covalent DNA-protein cross-links (DPC), but not interstrand cross-links (ISC). Using the two step irradiation procedure, DPC induced by FQ appeared to be severe lesions, having a high antiproliferative activity; their formation requires the successive absorption of two photons, thus, in this respect, resembling ISC formation. In spite of its higher capacity for damaging DNA, FQ showed a skin-phototoxicity potency very similar to 8-MOP. As some benzopsoralens, FQ induced a certain antiproliferative activity also in the dark, which was accompanied by the formation of double-strand breaks into DNA associated with DPC. This lesion is generally induced by topoisomerase inhibitors. On the basis of these features, FQ can be expected to show useful activities in photochemotherapy and photopheresis. However, before medical use careful studies on its genotoxicity are required.

Animals↗

Synthesis and antiproliferative activity of furocoumarin isosters.

Furocoumarins are a group of natural and synthetic compounds, some of which are used for the photochemotherapeutic treatment of certain skin diseases. With the aim of decreasing the side-effects of furocoumarin photochemotherapy and possibly increasing the therapeutic effects of these drugs, some new furocoumarin isosters were synthesized. The chemical synthesis of furocoumarin isosters at the furan ring, such as pyrrolo-, thieno-, oxazolo- and triazolocoumarins are reported. For all these compounds the key intermediate is a properly functionalized coumarin, to which the third heterocyclic ring is condensed by successive steps. Linear and angular pyrrolo-, tetrahydrobenzo- and benzopyrrolocoumarins show reduced photobiological activity, but have a strong antiproliferative effect in the dark, probably through an interaction with topoisomerases. Oxazolocoumarins are too unstable to be studied; triazolocoumarins show very poor activity. Tienocoumarins have not yet been studied. Furocoumarin isosters at the benzene ring are represented by 8-azapsoralens. Chemical synthesis involves the key 8-azacoumarin in the place of coumarin. These compounds have photochemical and photobiological properties which are very similar to those of psoralens. In particular, 4,4',5'- is effective in the photochemotherapeutic treatment of psoriasis. Furoquinolinones and 4-azapsoralens are reported among the isosters at the pyrone ring. While the synthesis of pyrroloquinolinones involves properly functionalized 7-aminoquinolinones as key intermediate, that of 4-azapsoralen requires a quite different synthetic pathway, involving a properly functionalized benzofuran derivative as key intermediate. Furoquinolinones have dramatically high activity both in the dark and under light activation; 4-azapsoralens have not yet been investigated.

Animals↗

4-Hydroxymethyltetrahydro- and 4-hydroxymethyl-benzopsoralen: synthesis and biological activity.

The synthesis and some biological properties of 4-hydroxymethyltetrahydro- and 4-hydroxymethylbenzopsoralen are reported. The two compounds exhibited activity in the dark and by UVA irradiation. The tetrahydrobenzo derivative was more effective than the corresponding aromatic compound. Benzopsoralens were more cytotoxic in malignant (HL60 and HeLa) cell lines than in normal ones (NCTC 2544). Their toxicity decreased in confluent cultures of NCTC 2544 cells.

Furocoumarins↗

2,6-Dimethyl-9-methoxy-4H-pyrrolo[3,2,1-ij]quinolin-4-one, a new compound with unusual photosensitizing properties.

Some photobiological properties of 2,6-dimethyl-9-methoxy-4H-pyrrolo[3,2,1-ij]quinolin-4-one (PQ) have been studied in comparison with 8-methoxypsoralen (8-MOP). In Ehrlich cells, PQ induced a moderate inhibition in DNA and RNA syntheses in the dark, which appeared to be more pronounced upon UVA irradiation. In contrast to 8-MOP, in the presence of UVA, PQ also affected protein synthesis. Likewise marked antiproliferative effects were also observed in the study of the clonal growth of CHO cells cultivated in vitro. Using alkaline elution and CHO cells, a moderate formation of single-strand breaks (SSBs) and of DNA-protein cross-links (DPCs) was observed by incubation in the dark; upon UVA irradiation the amount of both lesions increased greatly, whereas no inter-strand cross-links (ISCs) were formed. As expected, 8-MOP did not damage DNA in the dark, but induced SSBs, ISCs and DPCs in the presence of UVA. The induction of SSBs by both compounds seems to be directly related to a photochemical event rather than to incisions during DNA repair. As the induction of ISCs, and also the formation of DPCs by 8-MOP and UVA, appears to be based on a two-step reaction involving photo-bound 8-MOP-DNA moieties. In contrast, the formation of DPCs by PQ and UVA seems to involve photosensitization by free PQ molecules connected with SSB and DPC formation rather than with a DNA photo-binding activity. The PQ activity observed in the dark could probably be ascribed to a moderate inhibition of topoisomerases.

Animals↗

Pyrroloquinolinone methylderivatives, furocoumarin analogues: synthesis and biological activity.

Searching new photochemotherapeutic agents, a series of methylpirroloquinolinones were prepared by a new synthetic pathway, thus univocally obtaining the title compounds. The photobiological activity of some of these compounds was assayed; upon UVA activation, a marked capacity of inhibiting macromolecular synthesis in Ehrlich cells was observed, which appeared to be markedly high testing protein synthesis. Pyrroloquinolinones induced a strong inhibition of the clonal growing capacity of HeLa cells cultivated in vitro. Studying DNA photodamage in HL60 cells high amounts of single strand breaks and DNA-protein cross-links were detected. Pyrroloquinolines inhibited T2 bacteriophage infectivity, but induced no significant amounts of revertants in E. coli WP2 TM9, a strain very sensitive to DNA damage. On the contrary, 8-MOP, tested in the same experimental conditions exhibited an evident photomutagenecity. These data suggest that pyrroloquinolines induced antiproliferative effects by a mechanism in which DNA-photobinding practically does not takes place, and therefore different from that shown by known furocoumarins. Pyrroloquinolinones showed also a moderate antiproliferative activity in the dark.

Cell Division↗

Pyrroloquinolinone methylderivatives, furocoumarin analogues: interaction with biomolecules and computer-aided studies.

Pyrroloquinolinones, furocoumarin analogues, contain a divinilbenzene moiety, suggesting possible photoreactivity. Quantum mechanics calculations indicate that the pyrrole-side double bond exhibits strong photoreactivity, while the pyridone-side double bond is only poorly photoreactive. Intercalation models obtained by molecular mechanics calculations suggest that, in the cis-syn intercalation arrangement, the pyridone-side double bond is well aligned with the nearby thymine, supporting possible C4-cycloaddition with the 5,6 double bond of thymine, while the pyrrole-side double bond assumes an unfavourable position for photobinding. These data suggest that photoreaction between the pyridone-side and thymine double bonds may takes place, although with very low yield. Experimental evidence concerning DNA-photobinding exhibited by 2,6-dimethyl-9-methoxy-4H-pyrroloquinolinone (Compound I) confirms theoretical predictions. The formation of C4-cycloadducts between the pyridone side double bond and thymine also takes place with very low yield. Compound I shows marked BSA photobinding, suggesting that pyrroloquinolinones may photoreact with proteins. The three pyrroloquinolinones examined show high yields of singlet oxygen generation, suggesting that photobiological effects may be obtained through this photodynamic pathway, rather than through DNA photobinding.

Base Sequence↗

Benzoangelicins: new monofunctional DNA photobinding agents.

4,6-Dimethylbenzoangelicin, obtained by fusing a benzene ring at the furan side of 4,6-dimethylangelicin, was studied in terms of crystal structure and interactions with DNA in both ground and excited states. 4,6-Dimethylbenzoangelicin has a planar structure and forms a molecular complex with DNA, undergoing intercalation inside the double helix. Under UVA irradiation, it photoconjugates covalently with the macromolecule, showing a DNA photobinding rate slightly lower than that of 8-methoxypsoralen, involving however only its 3,4 double bond, i.e. behaving as a pure monofunctional agent. The parameters of dark binding and photobinding were determined, and two C4 cycloadducts with thymine were isolated and characterized.

Animals↗

Biological properties of some benzopsoralen derivatives.

The biological activity of some benzopsoralen derivatives, prepared with the aim of obtaining new drugs for photochemotherapy, has been studied. The more interesting compounds are 4-hydroxymethyl-4',5'-benzopsoralen and 4-hydroxymethyl-4',5'-tetrahydro-benzopsoralen, which were found to be active in the dark also: DNA and RNA synthesis were both inhibited in Ehrlich cells, even if in a partially reversible fashion, while protein synthesis remained unaffected. In Chinese hamster ovary cells cultured in vitro, the clonal growth was strongly inhibited by incubation in the dark with both drugs, while a number of chromosomal aberrations was observed in the fraction of growing cells. Using alkaline elution, DNA strand breaks were detected. In addition, in the presence of aphidicolin, a specific inhibitor of DNA polymerase, the clonal growing capacity was completely restored; in contrast, the number of DNA strand breaks remained unchanged. All these results suggest that DNA topoisomerases are probably the target of these two benzopsoralens. These compounds are also good sensitizers; by UV-A irradiation they have a good capacity to produce singlet oxygen, but they appeared to be unable to induce erythemas on guinea-pig skin. Under UV-A light, they induced a strong inhibition of DNA synthesis in Ehrlich cells. Thus, benzopsoralens appear to be capable of inducing strong antiproliferative effects by two different mechanisms, by UV-A irradiation and in the dark.

Animals↗

Angelicins, angular analogs of psoralens: chemistry, photochemical, photobiological and phototherapeutic properties.

Angelicin and some of its derivatives are naturally occuring compounds which show interesting photobiological properties. In this review various aspects of angelicin and its derivatives have been reported. The natural occurrence and the chemical synthesis both of naturally occurring and synthetic angelicins have been reviewed. Photochemical and photophysical properties of angelicins have been considered with particular reference to the capacity to generate active forms of oxygen, photoreactions with nucleic acids, proteins and unsaturated fatty acids. Photobiological effects have been considered: skin phototoxicity, antiproliferative effects, genotoxicity, ability to induce hemolysis in erythrocytes, inactivation of prokaryotic and eukaryotic microorganism and of viruses. The ability of some angelicins to induce photocarcinogenesis has been reviewed as well as in the activity as photochemotherapeutic agents.

Animals↗

4,4',5'-trimethyl-8-azapsoralen, a new-photoreactive and non-skin-phototoxic bifunctional bioisoster of psoralen.

Photochemical and photobiological properties of a new isoster of psoralen, 4,4',5'-trimethyl-8-azapsoralen (4,4',5'-TMAP), have been studied. This compound shows a high DNA-photobinding rate, higher than that of 8-methoxypsoralen (8-MOP), forming both monoadducts and inter-strand cross-links. The yield of cross-links, however, is markedly lower than that of 8-MOP. Antiproliferative activity of 4,4',5'-TMAP, in terms of DNA synthesis inhibition in Ehrlich ascites tumor cells, is higher than that of 8-MOP. Mutagenic activity on E. coli WP2 R46+ cells appeared similar to or even lower than that of 8-MOP. This new compound applied on depilated guinea pig skin and irradiated with UVA did not show any skin-phototoxicity. On the basis of these properties 4,4',5'-TMAP appears to be a potential photochemotherapeutic agent.

Animals↗

Methylangelicins: structure activity studies on the role of methyl groups present in 3,4 and 4',5' photoreactive sites.

The effect of the introduction of one, two or three methyl groups at the level of 3,4 or 4',5' photoreactive site of angelicin, in terms of extent of intercalation and DNA-photobinding, was studied. The introduction of one methyl group both in the 3 or 4 and in 4' or 5' position increases the affinity of angelicin toward DNA for the molecular complex formation and enhances the DNA-photobinding, even if to a different extent. The increase is more pronounced for occupancy of 5' or 4' position; much less pronounced is the enhancement in the case of 3 or 4 positions. The introduction of two methyl groups in 3,4 or in 4',5' positions leads to an increased capacity to form the intercalated complex with DNA; the photoreactivity is also enhanced, but to a larger extent for 4',5'-dimethylangelicin. No steric hindrance, therefore, seems to be exerted by the introduction of one or two methyl groups at the level of the photoreactive sites of angelicin. The introduction of a third methyl group in 4',5'-dimethyl or in 3,4-dimethylangelicin exhibits a strong enhancement of the DNA photobinding; in particular 4,4',5'-trimethylangelicin appears the most photoreactive towards DNA. Angelicins carrying methyl groups in 3,4 positions exhibit lower antiproliferative activity than derivatives carrying methyl groups in 4',5' positions. No correlation was observed between antiproliferative activity and DNA-photobinding; may be that the presence of methyl groups in 3,4 or in 4',5' positions affects the type of cycloadducts formed. The different ratio of adducts may affect the antiproliferative effect.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Azapsoralens: new potential photochemotherapeutic agents for psoriasis.

New bioisoters of psoralen, obtained by replacing carbon 8 of the central benzene ring with a nitrogen, were studied from the photochemical, photobiological and phototherapeutic points of view. In particular, 4,4'-, 4',5'-dimetyl, 4,4',5'-trimethyl and 3,4,4',5'-tetramethylazapsoralen were studied. The crystal and molecular structure of 4,4',5'-trimethylazapsoralen, obtained by X ray diffraction, was also reported. Like psoralen, these compounds form a molecular complex with DNA, undergoing intercalation inside the double helix of the macromolecule. When irridiated with long ultraviolet light (365 nm), the intercalated drug photoconjugates covalently to the macromolecule, forming mono- and diadducts. The photobinding rate show the following order of magnitude: 4,4',5'-trimetylazapsoralen (4,4',5'-TMAP) = 3,4,4',5'-tetramethylazapsoralen (3,4,4',5'-TMAP) greater than 4',5'-dimethylazapsoralen (4',5'-DMAP) = 4,4'-dimethylazapsoralen (4,4'-DMAP). The DNA photobinding rate of 8-methoxypsoralen (8-MOP), taken as reference compound, is similar to that of the two dimetylazapsoralens but lower than tri- and tetramethyl derivatives. The ability of azapsoralens to form cross-links in DNA is lower than that of 8-MOP. However, capacity to induce cross-links does not parallel the DNA photobinding rate; it is higher for trimethyl derivate and lower for tetramethylazapsoralen. Azapsoralens show evident antiproliferative activity. The trimethyl derivative is the most active, followed by tetrametyl, both these compounds showing activity slightly higher than that of 8-MOP. The two dimethylderivatives are less active. The mautagenic activity of azapsoralens on E. coli WP2 TM6 is lower than that of 8-MOP in the same conditions. The new compounds do not show any skin phototoxicity on guinea pig skin. On the basis of its DNA photobinding, antiproliferative activity, mutagenicity and lack of skin phototoxicity, 4,4',5'-TMAP was chosen for clinical evaluation. Clinical results obtained by topical treatment of psoriatic plaques reveal evident therapeutic effectiveness and clearing is between good and moderate, although 8-MOP, used as reference compound, is more effective.

Animals↗

Synthesis and photobiological properties of acetylpsoralen derivatives.

In an investigation to find monofunctional reactants for DNA which can act as new agents in the photochemotherapy of psoriasis, we have synthesized and studied some methylpsoralen derivatives which contain an acetyl group at one of the two reactive sites of the furocoumarin skeleton (at the 3 or 5' positions). The compounds do not react easily with DNA; their photobiological properties (e.g. the lack of an ability to inhibit DNA synthesis in Ehrlich ascites tumour cells, to induce T2 phage sensitization and to induce erythema in guinea-pig skin) are exactly in line with this behaviour. Some interesting features are shown by 4,8-dimethyl-5'-acetylpsoralen: it is capable of producing a very large amount of singlet oxygen--an order of magnitude higher than the other compounds and 8-methoxypsoralen (used as reference). In spite of this property, 4,8-dimethyl-5'-acetylpsoralen is non-phototoxic to the skin, and its other photobiological properties appear to be in line with its lack of interaction with DNA rather than its enhanced singlet oxygen production.

Acetylation↗

Photochemical, photophysical and photobiological properties of some methylallopsoralens which are potential agents for photochemotherapy.

Two new trimethylallopsoralens, 4,7,4'- and 4,7,5'-trimethylallopsoralen, form molecular complexes with DNA and by successive UVA (320-400 nm) irradiation photobind monofunctionally to the macromolecule. The DNA photobinding rates at 365 nm and photobinding quantum yields at 330 nm are markedly higher for 4,7,4'-trimethylallopsoralen than for 4,7,5'-trimethylallopsoralen. Their capacities to generate singlet oxygen in water and benzene are low, particularly for 4,7,4'-trimethylallopsoralen, and the two trimethylallopsoralens completely lack skin phototoxicity on guinea-pig skin. Both compounds show antiproliferative activity in terms of DNA synthesis inhibition in Ehrlich cells and T2 phage infectivity higher than that displayed by angelicin. In view of its monofunctional character, lack of skin phototoxicity, low singlet oxygen yield and antiproliferative activity, 4,7,4'-trimethylallopsoralen deserves further clinical studies as a potential photochemotherapeutic agent.

Benzene↗

Photobiological activity of certain pyranocoumarin derivatives: potential agents for the photochemotherapy of psoriasis.

The photobiological properties of a series of pyranocoumarin derivatives having linear (xanthyletines) and angular structure (seselins) have been studied; while the linear derivative carrying the methyl geminal group, typical of the parent natural compound, appeared to be entirely inactive in all tests performed, very probably because of the steric hindrance in the dark interaction with DNA, 4 substances lacking in this group showed a marked capacity for inhibiting DNA synthesis in Ehrlich cells. In particular, 4,6-dimethyl-8-desmethylseselin proved to be about 7 times more active than 8-MOP. Practically all compounds were capable of inducing cross-links in DNA, but this feature, marked in the linear compounds, is very much reduced in the angular ones; this property appears to be clearly related to the mutagenicity in the light and with the skin phototoxicity, which are both marked in the former and low or absent in the latter. In the dark, while all compounds are non-mutagenic in the absence of metabolic activation, in the presence of microsomial enzymes pyranocoumarins become mutagens; only the xanthyletine derivative carrying a geminal methyl group at the 8 position was not activated, suggesting that the enzymes metabolize the pyranic ring.

Animals↗