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Biomedical subjects

G Valentini

Publications and source records attributed to G Valentini.

At least 19 recordsLinked to original sources

An essential lysine in the substrate-binding site of ornithine carbamoyltransferase.

Treatment of ornithine carbamoyltransferase from dolphin Stenella with pyridoxal phosphate, followed by reduction with NaBH4 resulted in complete loss of enzyme activity. The phosphate alone or the substrate analogue 2-aminovaleric acid moderately decreased the extent of inactivation, while carbamoyl phosphate plus 2-aminovaleric acid provided complete protection from inactivation. The partially inactivated enzyme showed K(m) values for substrates equivalent to those of native enzyme and lowered Kcat values. Two lysyl residues were substantially modified in the absence of ligands but only one of them was responsible for the inactivation of catalytic activity. Modification of a single subunit was sufficient to completely abolish the catalytic activity of the trimeric enzyme. The lysine involved has been identified as lysine 56 on the known primary structure of homologous human liver enzyme.

Amino Acid Sequence

The allosteric regulation of pyruvate kinase.

Crystallographic and mutagenesis studies have unravelled the general features of the allosteric transition mechanism in pyruvate kinase. The enzyme displays a dramatic conformational change in going from the T- to the R-state. All three domains forming each subunit of the tetrameric enzyme undergo simultaneous and concerted rotations, in such a way that all subunit and domain interfaces are modified. This mechanism is unprecedented since in all tetrameric allosteric enzymes, characterised at atomic resolution, at least one of the domain or subunit interfaces remains unchanged on the T- to R-state transition. The molecular mechanism of allosteric regulation here proposed provides a rationale for the effect of single site mutations observed in the human erythrocyte pyruvate kinase associated with a congenital anaemia.

Allosteric Regulation

Study of photoablation of rabbit corneas by Er:YAG laser.

BACKGROUND AND OBJECTIVE: This work studied the ablation mechanisms of rabbit corneas by the Erbium:YAG laser. The occurrence of thermal and mechanical damages in the tissue as a function of the laser fluence was also investigated. STUDY DESIGN/MATERIALS AND METHODS: The experiments were performed both on enucleated eyes and in vivo. An ultrafast imaging technique was used to investigate the dynamic evolution of the ablation. The treated samples underwent histological and ultrastructural study. RESULTS: A single high fluence laser shot led to the complete removal of the epithelium by a photomechanical effect. In eyes whose epithelium was manually removed, high fluence pulses resulted in evident tears in the stroma, whereas low fluence pulses led to few microns deep incisions, characterized by limited mechanical and thermal damages. CONCLUSION: The photomechanical action plays a significant role in the ablation of the cornea by Erbium laser. Precise control of the fluence is required to avoid cracking phenomena in the stroma.

Aluminum Silicates

In vivo absorption spectrum of disulphonated aluminium phthalocyanine in a murine tumour model.

The absorption spectrum of aluminum phthalocyanine with an average disulphonation of 2.1 (hereafter called disulphonated aluminum phthalocyanine, A1S2Pc) was measured in vivo in a murine tumour model by means of time-resolved reflectance. Mice bearing the L1210 leukaemia were administered 2.5 or 5 mg/kg body weight (b.w.) of A1S2Pc intraperitoneally. Reflectance measurements were performed in the 650-695 nm range before and 1, 4 and 7 h after the drug administration. Fitting of the data with the diffusion theory allowed us to assess the absorption coefficient in both conditions (i.e. before and after). As a difference between the latter and the former data, the in vivo absorption spectrum of A1S2Pc was evaluated. 1 h after the administration of 2.5 mg/kg b.w. A1S2Pc, the absorption peak was centred at 685 nm, red-shifted about 15 nm with respect to the spectrum in aqueous solution. For the lower dose, the absorption line shapes 4 and 7 h after the administration remained very similar. The red shift of the absorption spectrum is consistent with the therapeutic efficacy of the photodynamic therapy which was measured at 672, 685 and 695 nm, and proved to be maximum at 685 nm for both the L1210 leukaemia and the MS-2 fibrosarcoma. With the higher drug dose, the absorption spectra taken from different animals showed significant differences. In particular, in some mice the line shape was similar to that measured with 2.5 mg/kg b.w., while in other subjects it showed a broadening or a second peak at shorter wavelengths. Measurements on some animals were performed also 18 and 24 h after the injection of 5 mg/kg b.w., leading to no time evolution or to a progressive line shape narrowing.

Animals

Experimental test of theoretical models for time-resolved reflectance.

Four different expressions, derived from the diffusion theory or the random walk model, were used to fit time-resolved reflectance data for the evaluation of tissue optical properties. The experimental reflectance curves were obtained from phantoms of known optical parameters (absorption and transport scattering coefficients) covering the range of typical values for biological tissues between 600 and 900 nm. The measurements were performed using an instrumentation for time-correlated single-photon counting. The potential of the four methods in the assessment of the absorption and transport scattering coefficients was evaluated in terms of absolute error, linearity error, and dispersion of data. Each method showed different performances depending on the optical properties of the sample and the experimental conditions. We propose some criteria for the optimal choice of the fitting method to be used in different applications.

Biophysical Phenomena

Diastolic abnormalities in systemic sclerosis: evidence for associated defective cardiac functional reserve.

OBJECTIVE: To investigate the pattern of diastolic abnormalities in patients with systemic sclerosis (SSc) and the relationship between impaired ventricular filling and systolic function. METHODS: Twenty four patients with SSc underwent M-mode and two dimensional echocardiography using echo-Doppler and gated blood pool cardiac angiography, both at rest and after exercise. RESULTS: An impaired diastolic relaxation of the left ventricle was detected in 10 of the 24 patients with SSc. Left ventricular ejection fraction at rest in these 10 patients with impaired ventricular filling did not differ from that in the remaining 14 patients, but eight of the 10 failed to increase their ejection fraction during exercise, compared with two of the 14 with normal ventricular filling (p = 0.003). CONCLUSION: Impaired relaxation of the left ventricle is a recently described feature of scleroderma heart disease. Diastolic dysfunction in SSc could depend on myocardial fibrosis or myocardial ischaemia, or both. It was found to be associated with a defective cardiac functional reserve. However, its prognostic significance remains to be clarified.

Adult

Anti-topoisomerase-I and clinical findings in systemic sclerosis (scleroderma).

The relationship between anti-topoisomerase-I antibodies and clinical findings was studied in 191 patients with definite systemic sclerosis. This was done by performing ELISA to detect antibodies to recombinant topoisomerase-I. Antibodies to topoisomerase-I were found in 72 patients (37%) with systemic sclerosis, which is a higher percentage than reported in most previous reports on a large unselected population. In 43 patients the presence of antibodies to recombinant topoisomerase-I was confirmed using both the immunodiffusion method and ELISA, with similar results. When classified into diffuse versus limited disease, a significant difference in antibody prevalence was demonstrated (P < 0.005), thus indicating that anti-topoisomerase-I antibody detection with ELISA may assist in early identification of systemic sclerosis subtypes.

Autoantibodies

Non-dominant dorsal-prefrontal activation during chess problem solution evidenced by single photon emission computerized tomography (SPECT).

Expert chess players can recall meaningful chess positions with extraordinary precision in comparison with inexperienced players. We hypothesized, therefore, that their mental performance during chess deliberation could be an appropriate target for single photon emission computerized tomography (SPECT) studies. We studied cerebral activation with 1110 MBq 99mTc-Bicisate SPECT in five expert male chess players during mental solution of a complex chess problem. Region of interest (ROI) analysis, in comparison with average weighted cerebellar counts, showed activation by 10% or more, of the non dominant prefrontal area (right in four dominant right handed players, left in one dominant left handed player) and by 2-6% in the non-dominant middle temporal areas. Maximum variability of ROI analysis versus cerebellar counts in test/retest evaluation is in our laboratory, as in others, 1.5%. Our results are in agreement with neuropsychological studies suggesting that the non-dominant hemisphere is specialized for chess skill, and show that non-dominant prefrontal and temporal lobe activation during chess deliberation can be detected by SPECT.

Adult

Crystal structure of Escherichia coli pyruvate kinase type I: molecular basis of the allosteric transition.

BACKGROUND: Pyruvate kinase (PK) plays a major role in the regulation of glycolysis. Its catalytic activity is controlled by the substrate phosphoenolpyruvate and by one or more allosteric effectors. The crystal structures of the non-allosteric PKs from cat and rabbit muscle are known. We have determined the three-dimensional structure of the allosteric type I PK from Escherichia coli, in order to study the mechanism of allosteric regulation. RESULTS: The 2.5 A resolution crystal structure of the unligated type I PK in the inactive T-state shows that each subunit of the homotetrameric enzyme comprises a (beta/alpha)8-barrel domain, a flexible beta-barrel domain and a C-terminal domain. The allosteric and active sites are located at the domain interfaces. Comparison of the T-state E. coli PK with the non-allosteric muscle enzyme, which is thought to adopt a conformation similar to the active R-state, reveals differences in the orientations of the beta-barrel and C-terminal domains of each subunit, which are rotated by 17 degrees and 15 degrees, respectively. Moreover, the relative orientation of the four subunits differs by about 16 degrees in the two enzymes. Highly conserved residues at the subunit interfaces couple these movements to conformational changes in the substrate and allosteric effector binding sites. The subunit rotations observed in the T-state PK induce a shift in loop 6 of the (beta/alpha)8-barrel domain, leading to a distortion of the phosphoenolpyruvate-binding site accounting for the low substrate affinity of the T-state enzyme. CONCLUSIONS: Our results suggest that allosteric control of PK is accomplished through remarkable domain and subunit rotations. On transition from the T- to the R-state all 12 domains of the functional tetramer modify their relative orientations. These concerted motions are the molecular basis of the coupling between the active centre and the allosteric site.

Allosteric Regulation

Efficacy of photodynamic therapy against doxorubicin-resistant murine tumors.

Photodynamic therapy (PDT) is a relatively new cancer treatment modality that employs light excitation of a photosensitizer to yield cytotoxic oxygen-related species. In the present study we explored whether PDT would have therapeutic effect against doxorubicin-resistant murine tumors. We compared the efficacy of PDT with aluminium disulphonated phthalocyanine (A1S2Pc) and laser light on the doxorubicin-sensitive murine tumors, B16 melanoma (B16), L1210 leukemia (L1210), P388 lymphoma (P388) and the corresponding doxorubicin-resistant lines (B16/Dx, L1210/Dx and P388/Dx). Mice bearing L1210-L1210/Dx, P388-P388/Dx and B16-B16/Dx, were treated with 5 mg/kg of A1S2Pc and laser light (100 mW/cm2 x 10 min of exposure) or with doxorubicin (10 or 12 mg/kg i.v.). The results show that PDT is active versus all tumors while doxorubicin is effective only against the three sensitive tumor lines (L1210, P388 and B16). These observations suggest that PDT might be a beneficial alternative treatment for drug-resistant tumors.

Animals

Study of porphyrin fluorescence in tissue samples of tumour-bearing mice.

A time-gated fluorescence-imaging technique was applied to study the distribution of sensitizer in porphyrin-treated tumour-bearing mice. The animals were administered with either haematoporphyrin derivative (HpD) or Photofrin and sacrificed 4 or 12 h later. Fluorescence images were acquired from tumour, skin, muscle, fat, brain, lymph node, bowel and bone of both treated and untreated mice. The results obtained with HpD and Photofrin are similar. In images acquired 30 ns after excitation a bright exogenous fluorescence allows clear detection of the tumour. Nevertheless, the images show that porphyrins localize with different concentrations in all the examined tissues except the brain. Moreover, an appreciable long-living endogenous emission was observed in the bone.

Animals

delta-Aminolevulinic acid induced fluorescence in tumour-bearing mice.

The potential of protoporphyrin IX fluorescence induced by the systemic administration of delta-aminolevulinic acid (ALA) for the detection of tumours was tested in three different murine models (MS-2 fibrosarcoma, L1210 leukaemia, and Lewis lung carcinoma). Time-gated fluorescence images were acquired up to 4 h after the intraperitoneal injection of ALA (200 mg (kg body mass (BM))-1). For comparison images were acquired also after the administration of 25 mg (kg BM)-1 of haematoporphyrin derivative. The latter drug was characterized by better localization in the tumour area, leading to higher fluorescence contrast between neoplastic mass and surrounding healthy tissue, and consequently was preferable for tumour diagnosis in all the models under study.

Aminolevulinic Acid

Affinity labelling of the catalytic and allosteric ATP binding sites on pyruvate kinase type I from Escherichia coli.

The allosterically regulated pyruvate kinase type I (PKI) from E. coli was inactivated by the ATP analog 2',3'-dialdehyde ATP (o-ATP) with a Ki of 3.6 mM. ATP and phosphoenolpyruvate protected the enzyme activity while the allosteric activator fructose 1,6-bisphosphate enhanced the rate of inactivation. Incubation with o-ATP, followed by reduction of the formed Schiff bases with radioactive sodium borohydride, was employed to determine the ATP binding sites of PKI. After tryptic digestion, the purification of the labelled peptides and the sequence analysis allowed to identify four modified lysyl residues, namely Lys173, Lys175, Lys272, and Lys317 of the known DNA-deduced sequence of PKI. The close lysines 173 and 175 reacted with o-ATP in a mutually exclusive way and accounted together for 53% of the recovered radioactivity, the rest being distributed on Lys272 (31%) and Lys317 (16%). When fitted on the available three-dimensional structure of muscle pyruvate kinase, the position of the modified lysines defines both the catalytic and the allosteric ATP binding sites on PKI.

Adenosine Triphosphate

Efficacy of L-propionylcarnitine treatment in patients with left ventricular dysfunction.

The effect of L-propionylcarnitine on patients with left ventricular dysfunction (EF < 45%) NYHA class II, symptomatic despite therapy with digitalis and diuretics was evaluated in a phase II parallel, double-blind, randomized, placebo-controlled study. Fifty patients (28 men and 22 women) aged 37-70 years received 1.5 g of L-propionylcarnitine or placebo on a random basis as oral treatment for 6 months. At baseline, during a 7 day placebo run-in period, and during the 6-month treatment bicycle exercise test, M-B mode and Doppler echocardiography, and clinical evaluation (clinical score) were repeatedly performed. The analysis of variance for repeated measurements showed a statistically significant difference (P < 0.01) in the mean value of exercise time between the treatments over the period of the study. There was a final increase of 0.36 min in the placebo group, 1.4 min in the treated group and a minor production of lactate during exercise in the treated group. Left ventricular shortening fraction and left ventricular ejection fraction showed a significant increase in the L-propionylcarnitine group (respectively P < 0.01 and P < 0.0001) whereas no difference was apparent in the placebo group. Stroke volume index and cardiac index showed significant increments in the treated group (P < 0.05) and systemic vascular resistance was lowered (P < 0.05). No haemodynamic variations were observed in the placebo group, and the clinical score showed a significant improvement in the L-propionylcarnitine treated group. In conclusion, L-propionylcarnitine treatment was shown to improve patient symptomatology and effort tolerance.

Adult

Antitumor immunity induced by photodynamic therapy with aluminum disulfonated phthalocyanines and laser light.

Photodynamic therapy (PDT) is systemic administration of tumor localizing photosensitizers and subsequent irradiation with light of the appropriate wavelength. The combination of drug uptake in malignant tissues and selective delivery of laser-generated light provides effective therapy, with efficient tumor cytotoxicity and minimal normal tissue damage. There have been few studies of the effects of photoactivated photosensitizers on the host immune response. Since immunity is important in the control of tumor growth and spread, we have examined, in our laboratory, the effects of photoactivated phthalocyanines on the antitumor immune response. Immunosuppressed and normal mice bearing the MS-2 fibrosarcoma treated with 5 mg/kg of aluminum disulfonated phthalocyanine (AIS2Pc) and then the tumor mass exposed to laser light (100 mW/cm2 x 10 min) or treated with surgical excision of the tumor survived indefinitely, with no difference between the different groups. The survivors, tumor-free 100 days after the treatment modalities described above, were rechallenged with the parental MS-2. Some groups of surviving animals were immunosuppressed with cyclophosphamide before the injection of the tumor. Resistance to rechallenge was evidenced only in normal surviving animals cured by PDT, while the immunodepressed surviving animals and animals cured by surgery died of tumor. Finally, mice, cured by PDT and tumor-free, rechallenged with L1210 and P388 murine leukemias did not survive. These results suggest that a potential and specific 'antitumor immunity' is induced by PDT with photoactivated AIS2Pc.

Animals

Absorption spectrum of hematoporphyrin derivative in vivo in a murine tumor model.

Time-resolved reflectance was used to measure the absorption spectrum of hematoporphyrin derivative (HpD) in vivo in a murine tumor model. Reflectance measurements were performed in the 600-640 nm range on mice bearing the L1210 leukemia. Then the animals were administered 25 mg/kg body weight of HpD intraperitoneally. One hour later the reflectance measurements were repeated. Fitting of the data using the diffusion theory allowed assessment of the absorption coefficient before and after the administration. As a difference between the latter and the former data, the in vivo absorption spectrum of HpD was evaluated. Maximum absorption was measured at 620-625 nm. Similar spectral behavior was obtained for HpD in solution in the presence of low-density lipoproteins.

Animals

[Respiratory exchange during laparoscopic and laparotomic cholecystectomy].

The utility of laparoscopic cholecystectomy in reducing postoperative pain and patient's hospital discharge is already known. Nevertheless peritoneal gas insufflation required by surgical procedure can modify respiratory homeostasis during general anesthesia. The aim of this study was to evaluate the effect of laparoscopic cholecystectomy on pulmonary dead spaces and alveolar gas exchange during inhalation anesthesia compared with traditional laparotomic cholecystectomy. With the approval of Hospital Ethical Committee, thirty-one patients undergoing isoflurane general anesthesia for laparoscopic (CL-S, n = 16) and open (CL-T, n = 15) cholecystectomy were prospectively evaluated in order to asses modifications in physiological (VDphy/VT), anatomical (VDan/VT) and alveolar (VDalv/VT) dead space to tidal volume ratio, arterial to end-tidal carbon dioxide partial pressure difference [P(a-Et)CO2] and alveolar to arterial oxygen partial pressure difference (A-aDO2). Patients, 21-64 years-old, ASA I-II, had no cardiopulmonary diseases. The CL-S group required peritoneal insufflation of carbon dioxide with an intraabdominal pressure (IAP) of about 10-14 mmHg and antitrendelenburg positioning (15-20 degree). Expired gas measurements and arterial blood gas sample for pulmonary dead spaces and arterial to alveolar CO2 and O2 gradient calculation were performed 20 min after a steady state condition. VDphy/VT, VDalv/VT, P(a-Et)CO2 and A-aDO2 increased significantly in the CL-S compared to the CL-T group (p < 0.05). No differences were found in the VDan/VT. These results can be explained by analteration of the ventilation to perfusion ratio (VA/Q) with an increase of high VA/Q regions due to the antitrendelenburg positioning with a redistribution of blood flow towards basal zones.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult