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S Spisani

Publications and source records attributed to S Spisani.

At least 37 records · Page 2Linked to original sources

A CD(4)/T(4) receptor peptide ligand labeled with technetium-99m: synthesis and biological activity.

The octapeptide D-Ala-Ser-Thr-Thr-Thr-Asn-Tyr-Thr-NH(2) ([D-Ala(1)]TNH(2)), an analog of peptide T (H-Ala-Ser-Thr-Thr-Thr-Asn-Tyr-Thr-OH) associated with CD(4)/T(4) receptors involved in human immunodeficiency virus infection, was combined with the chelating polyazamacrocycle 1,4,8,11-tetraazacyclotetradecane (cyclam) to afford the bifunctional ligand cyc-[D-Ala(1)]TNH(2). This was then reacted with [(99m)TcO(4)](-) and Sn(2+) to yield the monocationic complex [(99m)Tc(O)(2)(cyc-[D-Ala(1)]TNH(2))](+). Biological activity of both the cyclam-peptide conjugate and the resulting Tc-99m complex were evaluated by measuring their chemotactic indexes. Results showed that N-cyclam acylation and subsequent labeling with Tc-99m of [D-Ala(1)]TNH(2) were tolerated, and both cyc-[D-Ala(1)]TNH(2) and [(99m)Tc(O)(2)(cyc-[D-Ala(1)]TNH(2))](+) retained the high chemotactic capacity of the original octapeptide. Biodistribution of the Tc-99m complex was carried out in rats. Fast blood clearance and no accumulation in organs of interest were observed.

Animals↗

Bioactive fMLF-OMe analogs containing a N-terminal oximic or formylhydrazonic moiety.

In order to obtain chemotactic peptides with selective bioactivity, a new type of structural modification was introduced at the N-terminal position of HCO-Nle-Leu-Phe-OMe. Two groups of analogs have been synthesized both containing a N-terminal residue of the X=C(R)-CO-type replacing the native HCO-NH-CH(R)-CO-. In particular, the A group of pseudopeptides (2a-d) possesses a N-terminal oximic fragment (X=HO-N) and the B group (3a-d) a formylhydrazone fragment (X=HCO-NH-N). These new ligands have been examined for their capacity to induce chemotaxis and other cellular responses such as superoxide anion production and lysozyme release; although significantly active as chemoattractants they have been found to be practically devoid of secretagog activity, thus exhibiting selective behavior. The adopted chemical modification seems extensible in designing a new class of pseudopeptides (hydrazonopeptides) structurally related to both hydrazinopeptides and peptides containing alpha,beta-unsaturated residues.

Chemotactic Factors↗

Solution structure of the amino acid sequence coded by the rarely expressed exon 26A of human elastin: the N-terminal region.

We previously reported the structural and biological properties of the C-terminal sequence (REGDPSSSQHLPSTPSSPRV) coded by the rarely expressed exon 26A of human elastin. It assumes a stable type II beta-turn structure spanning the REGD sequence and possesses chemotactic and immunological properties. Here the structural characterization of the sequence coded by this exon was completed. Nuclear magnetic resonance and circular dichroism studies on the N-terminal amino acid sequence (GADEGVRRSLSPELREGD) showed the presence of an alpha-helix within VRRSL and a type II beta-turn within SPEL. The smaller peptides GADEGVRRSLSP and LSPELREGD revealed structural features similar to those identified in the parent peptide. No beta-turn was found in the REGD sequence of these peptides and no chemotactic activity was detected, thereby demonstrating that this biological activity is conformation dependent. Structural studies on additional peptides such as LREGD, ELREGD and LSPELREGDPSS showed that the presence of a Glu residue two positions before the Arg residue inhibits the beta-turn formation in the REGD sequence.

Amino Acid Sequence↗

Phe-D-Leu-Phe-D-Leu-Phe derivatives as formylpeptide receptor antagonists in human neutrophils: cellular and conformational aspects.

We synthesized several Phe-d-Leu-Phe-d-Leu-Phe analogues in which tert-butyloxycarbonyl and four different ureido substituents were included at the N-terminal of the peptides, obtained as free acid and methyl-ester derivatives. Their biological action was analysed on human neutrophil responses induced by N-formyl-Met-Leu-Phe (fMLF). Several in vitro assays were carried out: receptor binding, measurement of Ca2+ intracellular concentration, chemotaxis, superoxide anion production and enzyme release. A conformational investigation, using infrared absorption and circular dichroism, was also performed. Our results demonstrate that the compounds examined prefer an ordered conformation (beta-turn) in amphipathic environment, and are able to antagonize the neutrophil functions evoked by fMLF. Moreover, the extent of inhibition of Ca2+ intracellular enhancement, as well as of superoxide anion production and granule enzyme release, appears related to their affinity toward the formylpeptide receptor. The free acid peptide derivatives appear to be more active antagonists than the methyl-ester ones.

Binding, Competitive↗

An evaluation of fMLP pocket dimensions and features using formyltetrapeptides.

The formyltetrapeptides for-Met-Leu-Leu-Phe-OMe 1, for-Met-Leu-Aib-Phe-OMe 2, for-Met-Leu-Ac6c-Phe-OMe 3, for-Met-Leu-Pro-Phe-OMe 4, for-Met-Pro-Pro-Phe-OMe 5, for-Met-Aib-Aib-Phe-OMe 6, for-Met-Pro-Aib-Phe-OMe 7 and for-Met-Aib-Pro-Phe-OMe 8 were synthesized and biologically tested on human neutrophils in an attempt to evaluate the specific receptor pocket dimensions and features. Our results indicate that the shift in the Phe residue to the fourth position in these compounds strongly reduces chemotactic response, but is efficacious in triggering superoxide anion production and lysozyme release (order of potency 3 > 2 > 1 > 4 > 6 > 8 > 5 > 7). The potency of the two latter responses correlates well with the affinity data obtained in binding experiments.

Amino Acid Sequence↗

Conformational aspects of human formylpeptide receptor antagonists.

The conformation of several Phe-D-Leu-Phe-D-Leu-Phe analogues was analyzed using infrared absorption and circular dichroism. Their effect on human neutrophils was verified by receptor binding and chemotaxis assays. The results demonstrate that the compounds examined prefer an ordered conformation (beta-turn) in amphipatic environment, and that they are able to antagonize the neutrophil functions evoked by CHO-Met-Leu-Phe.

Cell Movement↗

The amino acid sequence coded by the rarely expressed exon 26A of human elastin contains a stable beta-turn with chemotactic activity for monocytes.

The structural and biological properties of the amino acid sequence coded by the rarely expressed exon 26A of human elastin were investigated. The C-terminal portion of this sequence, corresponding to residues 600-619 of human tropoelastin, REGDPSSSQHLPSTPSSPRV and three shorter derived peptides, LREGDPSS, SSSQHLPS, and LPSTPSSP, were synthesized and studied. Spectroscopic analyses by CD and NMR have identified a type II beta-turn within the sequence REGD of the octapeptide LREGDPSS. This structural motif was found also in the tetrapeptide REGD in both trifluoroethanol and water. The CD spectrum of the tetrapeptide REGD in trifluoroethanol was consistent with a pure type II beta-turn. A high chemotactic activity for monocytes was exhibited by the structured peptides REGD (CI 0.90 at 10(-)7 M) and LREGDPSS (CI 0.80 at 10(-)11 M), at variance with the unfolded peptides LPSTPSSP and SSSQHLPS, suggesting that this activity is strictly correlated with folded structures. Because the exon 26A of human elastin is expressed in the neointima of hypertensive pulmonary arteries, and macrophages are present in this pathologic tissue [Liptay et al. (1993) J. Clin. Invest. 91, 588-594], the chemotactic activity for human monocytes reported in this paper is consistent with an active role played by the exon 26A in inducing the migration of the monocyte/macrophage cells to the neointima.

Amino Acid Sequence↗

Amygdalin binds to the CD4 receptor as suggested from molecular modeling studies.

The geometrical features of the proposed bioactive conformation of peptide T assessed by computational methods in a previous study, together with available structure-activity studies on peptide T, led us to propose a pharmacophore for the CD4-peptide T interaction. Subsequent, data base searching permitted us to identify amygdalin as a peptide T peptidomimetic.

Amygdalin↗

New fMLF-OMe analogues containing constrained mimics of phenylalanine residue.

In the context of a research program aimed at elucidating the HCO-Met-Leu-Phe-OMe (fMLF-OMe) structural features which control interactions with the receptor in correspondence with the C-terminal residue, four different analogues of the native ligand have been synthesized and evaluated. Compounds 1-3 possess the general formula HCO-Met-Leu-Xaa-OMe with Xaa = N-benzylglycine, N-benzylphenylalanine, and alpha,alpha-dibenzylglycine, respectively. In the analogue 4 the constraint at the C-terminus has been obtained by incorporating a 2-oxopiperazine ring, made up of two phenylalanine residues, to replace the native C-terminal Phe residue. The consequences of the chemical modifications on the activity of the new analogues are discussed.

Chemotaxis, Leukocyte↗

Modified chemotactic peptides: synthesis and activity of an azaTic-containing fMLP-OMe analogue.

The synthesis and the biological activity of a pseudopeptide analogue of the chemotactic N-formyltripeptide fMLP-OMe, containing the azaTic (3,4-dihydro-2(1H)-phthalazinecarboxylic acid) residue replacing the native phenylalanine, is described. Whereas pseudopeptides containing linear alpha-azaamino acids are currently studied, data on the new group of analogues containing cyclic alpha-aza residues capable of limiting the rotameric distribution of the side chains (topological control) are just emerging in the literature. At our best knowledge, the here described [azaTic3]fMLP-OMe represents the first example of the introduction of this new type of alpha-aza residue into a natural bioactive peptide.

Carboxylic Acids↗

3-(Carboxyalkylthio) rifamycin S and SV derivatives inhibit human neutrophil functions.

In order to further investigate the potential of rifamycins as antiinflammatory drugs, twenty-five semisynthetic rifamycins were tested at concentrations ranging from 10(-9) to 10(-5) M on in vitro human neutrophil functions such as locomotion, superoxide anion production, and degranulation, under different stimulatory conditions. They were also tested as antiproliferative agents on peripheral blood lymphocytes. The present semisynthetic derivatives are in general characterized by their carrying a hydrophilic substituent; they are rifamycin S or rifamycin SV derivatives carrying at C(3) either a carboxyalkyl side-chain or a glycosyl side-chain. Derivatives of the former group displayed inhibitory activities covering the whole range of activities tested, suggesting that the sum of these different effects could support their antiinflammatory activity in vivo. These derivatives, carrying a free carboxyl, are more water soluble than rifamycin SV at physiological pH, and may serve as antiinflammatory drugs for local administration, alternative to rifamycin SV, possibly giving higher efficacy and reduced side effects of pain and tissue swelling.

Anti-Bacterial Agents↗

Expression and functional role of urokinase-type plasminogen activator receptor in normal and acute leukaemic cells.

Urokinase-type plasminogen activator receptor (UPA-R-CD87) is a GPI-anchored membrane protein which promotes the generation of plasmin on the surface of many cell types, probably facilitating cellular extravasation and tissue invasion. A flow cytometric quantitative analysis of expression levels for UPA-R was performed on fresh blast cells from patients with acute myeloid leukaemia (AML, n = 74), acute lymphoblastic leukaemia (ALL, n = 24), and biphenotypic leukaemia (BAL, n = 3) using two CD87 monoclonal antibodies (McAbs) (3B10 and VIM5). Peripheral blood and bone marrow (BM) cells from 15 healthy adults served as controls. Using 3B10 McAb, UPA-R was expressed (>99%) by blood monocytes, neutrophils, and BM myelomonocytic precursors in controls, whereas resting T and B lymphocytes, and CD34+ cells were UPA-R negative. We also attempted to clarify whether UPA-R has a role in mediating neutrophil functions. Oriented locomotion induced by different chemotaxins and lysozyme release by granules stimulated with fMLP or PMA were significantly decreased when UPA-R was neutralized by CD87 McAb. In contrast, the anti-UPA-R McAb had no effect on superoxide anion generation of normal neutrophils. Blasts from AML showed a heterogenous pattern of expression for the UPA-R McAbs, with reactivity strictly dependent on FAB subtype. The highest UPA-R expression was seen in the M5 group: all patients tested (n = 20) showed strong positivity for the UPA-R McAb whereas only 12% (3/24) of ALL patients were CD87 positive, and 2/3 of BAL patients showed a dim expression for CD87. The number of receptors expressed by blast cells in 6/74 (8.1%) AML patients was higher than those of normal samples: in addition, since co-expression of UPA-R and CD34 was not found in normal haemopoietic cells, it may be postulated that CD87 can be used alone (when overexpressed) or in combination with CD34 for the detection of minimal residual disease. Results also indicated that patients with UPA-receptors >12 x 10(3) ABC/cell, irrespective of FAB subtype, had a greater tendency for cutaneous and tissue infiltration and a higher frequency of chromosome abnormalities, thus suggesting the concept that cellular UPA-R content positively correlates with the invasive potential of AML cells. The combination of higher UPA-R positivity, abnormalities of chromosome 11, and M5 FAB morphology may identify a peculiar subset of AML, characterized by a more aggressive clinical course.

Acute Disease↗

Synthesis and biological activity of chelator-peptide T conjugates.

The solid phase procedure was used to prepare two peptide T derivatives in which the 4-[(1,4,8,11-tetraazacyclotetradec-1-yl)methyl]benzoyl unit is linked to their N-terminus. In a human monocyte chemotaxis assay, both chelator-peptide conjugates showed a high binding property to the CD4 receptor, comparable to the parent H-D-Ala-Ser-Thr-Thr-Thr-Asn-Tyr-Thr-NH2 and its pentapeptide fragment T(4-8)-NH2. These encouraging results make the above cyclam-oligopeptides candidates for the development of the CD4 receptor imaging agents.

Amino Acid Sequence↗

Two for-Met-Leu-Phe-OMe analogues trigger selective neutrophil responses. A differential effect on cytosolic free Ca2+.

For-Thp-Leu-Ain-OMe and for-Met-delta(z)Leu-Phe-OMe are two conformationally restricted fMLP-OMe analogues able to discriminate between different biological responses of human neutrophils. In this paper, we demonstrate that the former peptide, which evokes only chemotaxis, does not alter human neutrophil Ca2+ levels. In contrast, for-Met-delta(z)Leu-Phe-OMe, which induces superoxide anion release and degranulation but not chemotaxis, significantly increases the cation concentration. The chelation of Ca2+ in both extracellular and intracellular media abolishes O2- production triggered by for-Met-delta(z)Leu-Phe-OMe, while the same procedure does not affect neutrophil chemotaxis towards for-Thp-Leu-Ain-OMe. We therefore suggest that chemotaxis, unlike superoxide anion release, is independent of Ca2+ enhancement in human neutrophils.

Calcium↗

Synthesis, conformation, and biological activity of two fMLP-OMe analogues containing the new 2-[2'-(methylthio)ethyl]methionine residue.

The new C alpha-tetrasubstituted alpha-amino acid residue 2-[2'-(methylthio)ethyl]methionine (Dmt) has been introduced into the reference chemotactic tripeptide HCO-Met-Leu-Phe-OMe (fMLP-OMe) in place of the leucine or methionine, respectively. The biological activity of the new analogues [Dmt2]fMLP-OMe (2) and [Dmt1]fMLP-OMe (3) has been determined; whereas 2 is active toward human neutrophils, stimulating directed migration, superoxide anion generation, and lysozyme release, 3 results practically inactive in all tested assays. A conformational analysis on 2 and 3 has been performed in solution by using ir absorption and 1H-nmr. The conformation of 2 was also examined in the crystal by x-ray diffraction methods. Both 2 and 3 adopt fully extended conformation in correspondence with the Dmt residue. Biological and conformational results are discussed and compared with related previously studied models.

Chemotaxis, Leukocyte↗

Rifamycins inhibit human neutrophil functions: new derivatives with potential antiinflammatory activity.

In our study we investigated the effect of rifamycin SV, rifamycin B, rifampicin and five semisynthetic derivatives on human neutrophil functions such as locomotion, superoxide production and degranulation stimulated by specific agonists. All compounds were tested at concentrations ranging from 10(-9) to 10(-5) M. Among the newly synthesized compounds the most active we found to be the derivatives carrying an acidic substituent at C3: these significantly lowered the superoxide generation induced by PMA throughout the entire concentration range, whereas rifamycin SV, rifamycin B and rifampicin were effective only at the highest concentrations. Moreover, chemotactic movement was significantly attenuated by derivative R4, rifamycin B and rifamycin SV at high doses; granule enzyme release was unaffected by all compounds.

Anti-Inflammatory Agents↗