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Biomedical subjects

P Noris

Publications and source records attributed to P Noris.

At least 19 recordsLinked to original sources

Altered cytoskeleton organization in platelets from patients with MYH9-related disease.

MYH9-related disease (MYH9-RD) is an autosomal dominant disorder deriving from mutations in the MYH9 gene encoding for the heavy chain of non-muscle myosin IIA, and characterized by thrombocytopenia and giant platelets. Isoform IIA of myosin is the only one expressed in platelets, but the possibility that MYH9 mutations affect the organization of contractile structures in these blood elements has never been investigated. In this work we have analyzed the composition and the agonist-induced reorganization of the platelet cytoskeleton from seven MYH9-RD patients belonging to four different families. We found that an increased amount of myosin was constitutively associated with actin in the cytoskeleton of resting MYH9-RD platelets. Upon platelet stimulation, an impaired increase in the total cytoskeletal proteins was observed. Moreover, selected membrane glycoproteins, tyrosine kinases, and small GTPases failed to interact with the cytoskeleton in agonist-stimulated MYH9-RD platelets. These results demonstrate for the first time that mutations of MYH9 result in an alteration of the composition and agonist-induced reorganization of the platelet cytoskeleton. We suggest that these abnormalities may represent the biochemical basis for the previously reported functional alterations of MYH9-RD platelets, and for the abnormal platelet formation from megakaryocytes, resulting in thrombocytopenia and giant platelets.

Adolescent↗

Platelet-Independent defect in hemostasis associated with sirolimus use.

Sirolimus is currently used to prevent rejection of solid organ transplant, and sirolimus-eluting stents have shown promise for the prevention of coronary artery restenosis. Thrombocytopenia is a well-known adverse effect of sirolimus limiting its use. Herein we report on a patient in whom sirolimus caused a platelet-independent hemostasis defect. The patient was a 52-year-old woman who underwent renal transplant with consequent normal kidney function. The immunosuppressive regimen included basiliximab, steroids, and cyclosporine induction later shifted to sirolimus and mycophenolate due to biopsy findings of tubular necrosis on day 6 posttransplantation. At discharge the serum creatinine was 0.7 mg/dL. Four months after transplantation the patient was admitted to our hospital because of fever (37.5 degrees C to 38 degrees C), anorexia, and asthenia. Blood analysis showed: creatinine 1.7 mg/dL, Hb 9.6 g/dL, WBC 6 x 10(3)/microL, PLT 123 x 10(3)/microL, liver function tests normal, LDH 720 mU/mL, fibrinogen 628 mg/dL, d-dimer 0.42 ng/mL, FDP > 40 ng/mL, INR 1.10, PT 87%, aPTT 40 seconds. Cultures and tests for infection were negative. Serum sirolimus level was 25.9 ng/mL. The following day the serum creatinine rose to 2.3 mg/dL and diuresis fell to 20 mL/h. Multiple bleeding times (Ivy test) performed before the renal biopsy were repeatedly over 30 minutes (normal 3 to 5 minutes), despite normal platelet count and platelet function studies. There was no spontaneous aggregation and in vitro aggregation was normal (collagen, ADP, adrenalin, and ristocetin induced). Coagulation studies showed a defect in fibrin formation and a reduction of fibrinolysis. Suspension of sirolimus treatment was followed by remission of fever, improvement of renal function (serum creatinine 1.2 mg/dL), and normalization of bleeding time.

Blood Platelets↗

Autosomal dominant macrothrombocytopenia in Italy is most frequently a type of heterozygous Bernard-Soulier syndrome.

A form of autosomal dominant macrothrombocytopenia is characterized by mild or no clinical symptoms, normal platelet function, and normal megakaryocyte count. Because this condition has so far received little attention, patients are subject to misdiagnosis and inappropriate therapy. To identify the molecular basis of this disease, 12 Italian families were studied by linkage analysis and mutation screening. Flow cytometry evaluations of platelet membrane glycoproteins (GPs) were also performed. Linkage analysis in 2 large families localized the gene to chromosome 17p, in an interval containing an excellent candidate, the GPIbalpha gene. GPIbalpha, together with other proteins, constitutes the plasma von Willebrand factor (vWF) receptor, which is altered in Bernard-Soulier syndrome (BSS). In 6 of 12 families, a heterozygous Ala156Val missense substitution was identified. Platelet membrane GP studies were performed in 10 patients. Eight were distinguished by a reduction of GPs comparable to that found in a BSS heterozygous condition, whereas the other 2, without the Ala156Val mutation, had a normal content of platelet GPs. In conclusion, the current study provides evidence that most (10 of 12) patients with an original diagnosis of autosomal dominant macrothrombocytopenia shared clinical and molecular features with the heterozygous BSS phenotype. The remaining 2 affected subjects represented patients with "true" autosomal dominant macrothrombocytopenia; the GPIb/IX/V complex was normally distributed on the surface of their platelets. Thus, the diagnosis of heterozygous BSS must always be suspected in patients with inherited thrombocytopenia and platelet macrocytosis.

Adolescent↗

Factors influencing post-transfusional platelet increment in pediatric patients given hematopoietic stem cell transplantation.

Patients undergoing allogeneic hematopoietic stem cell transplantation (HSCT) always require platelet transfusions, but the increase in platelet count is often less than expected. Since factors responsible for poor response to platelet transfusions in this clinical setting are largely unknown, we performed a prospective study in 87 consecutive children transplanted in a single institution. The mean 16-h corrected count increment (CCI) of 598 platelet transfusions was 5.76 +/- 8.32 x 10(9)/l. Both before and after HSCT, 13.8% of patients had antibodies against HLA and/or platelet-specific antigens. Univariate analysis identified 12 factors significantly associated with a lower post-transfusion CCI, but only four reached statistical significance in the multivariate analysis. These four factors were concomitant therapy with vancomycin, alloimmunization, use of an Autopheresis cell separator for preparation of platelet concentrates and cytomegalovirus infection. We, therefore, suggest that a better response to platelet transfusions could be obtained by choosing a suitable cell separator, by avoiding the use of vancomycin and by adopting measures that reduce alloimmunization and CMV infection. Moreover, screening patients for HLA and platelet-specific antibodies before HSCT would identify the majority of subjects who will develop alloimmune refractoriness after transplantation and would allow the search for a compatible donor in advance.

Analysis of Variance↗

Donor-recipient incompatibility at CD31-codon 563 is a major risk factor for acute graft-versus-host disease after allogeneic bone marrow transplantation from a human leucocyte antigen-matched donor.

Disparities at minor histocompatibility antigens (mHA) are thought to be responsible for acute graft-versus-host disease (aGVHD) in patients receiving bone marrow transplantation (BMT) from a human leucocyte antigen (HLA)-matched donor. Although some mHA have been identified in humans, their role in aGVHD has not. Patients (n = 150) receiving a BMT from an HLA-matched donor were investigated for a correlation between aGVHD and donor/recipient incompatibility for seven polymorphisms previously proposed for mHA (HA-1, H-Y, CD31-codon 125, CD31-codon 563, HPA-1, HPA-3 and HPA-5). Only mismatch at CD31-codon 563 predicted grade II-IV aGVHD. The risk derived from CD31-codon 563 mismatch was the same as that derived from the use of bone marrow from an unrelated donor. We suggest that donor/recipient compatibility at CD31-codon 563 should be added to HLA-typing for donor selection and/or adjustment of aGVHD prophylaxis.

Acute Disease↗

Mutations in MYH9 result in the May-Hegglin anomaly, and Fechtner and Sebastian syndromes. The May-Heggllin/Fechtner Syndrome Consortium.

The autosomal dominant, giant-platelet disorders, May-Hegglin anomaly (MHA; MIM 155100), Fechtner syndrome (FTNS; MIM 153640) and Sebastian syndrome (SBS), share the triad of thrombocytopenia, large platelets and characteristic leukocyte inclusions ('Döhle-like' bodies). MHA and SBS can be differentiated by subtle ultrastructural leukocyte inclusion features, whereas FTNS is distinguished by the additional Alport-like clinical features of sensorineural deafness, cataracts and nephritis. The similarities between these platelet disorders and our recent refinement of the MHA (ref. 6) and FTNS (ref. 7) disease loci to an overlapping region of 480 kb on chromosome 22 suggested that all three disorders are allelic. Among the identified candidate genes is the gene encoding nonmuscle myosin heavy chain 9 (MYH9; refs 8-10), which is expressed in platelets and upregulated during granulocyte differentiation. We identified six MYH9 mutations (one nonsense and five missense) in seven unrelated probands from MHA, SBS and FTNS families. On the basis of molecular modelling, the two mutations affecting the myosin head were predicted to impose electrostatic and conformational changes, whereas the truncating mutation deleted the unique carboxy-terminal tailpiece. The remaining missense mutations, all affecting highly conserved coiled-coil domain positions, imparted destabilizing electrostatic and polar changes. Thus, our results suggest that mutations in MYH9 result in three megakaryocyte/platelet/leukocyte syndromes and are important in the pathogenesis of sensorineural deafness, cataracts and nephritis.

Alleles↗

Transfusion of platelet concentrates cryopreserved with ThromboSol plus low-dose dimethylsulphoxide in patients with severe thrombocytopenia: a pilot study.

We have recently reported the possibility of supporting the phase of severe thrombocytopenia after high-dose chemotherapy (HDC) and stem cell transplantation using 5% dimethylsulphoxide (DMSO)-cryopreserved autologous platelet concentrates (PCs). The aim of the present study was to evaluate the therapeutic potential of ThromboSol (a recently developed platelet storage solution) plus PCs cryopreserved in 2% DMSO in patients undergoing myeloablative chemotherapy and autologous transplantation. PCs were collected from 14 women with breast cancer by a single plateletapheresis and cryopreserved in ThromboSol/2% DMSO by either direct insertion in a -80 degrees C freezer or in liquid nitrogen after computer-controlled rate (CR) freezing. When required, PCs were thawed, centrifuged to remove the cryoprotectants and transfused. In vitro studies on thawed platelets showed loss of epitopes of surface glycoproteins and a marked reduction of functional activity compared with fresh platelets. Transfusion of CR-frozen PCs was associated with a mean 1 h corrected count increment (CCI) of 9.2 +/- 5.4 x 109/l and only one allogeneic PC was required in this group. In contrast, six out of seven patients required additional allogeneic transfusions in the -80 degrees C group (CCI = 2.7 +/- 1.4 x 109/l). ThromboSol-treated PCs have the ability to overcome thrombocytopenia if processed by a CR freezing protocol, but appear ineffective when frozen by direct placing at -80 degrees C.

Blood Transfusion, Autologous↗

Relationship between size and thiazole orange fluorescence of platelets in patients undergoing high-dose chemotherapy.

The reticulated platelet count relies upon the assumption that newly formed platelets contain a residual amount of RNA which selectively binds the dye thiazole orange (TO) and greatly enhances its fluorescence signal. It has, however, recently been shown that almost half of the platelet TO-signal is derived from the labelling of dense-granule nucleotides. It is therefore possible that the higher TO fluorescence of young platelets partially derives from the higher granule content due to their larger volume. To investigate the relationship between platelet size and TO fluorescence we studied 13 patients with high-risk breast cancer undergoing high-dose chemotherapy. Mean platelet volume, platelet distribution width, platelet-large cell ratio, membrane content of glycoprotein Ib and IIb-IIIa and platelet aggregation were significantly greater during resolution than during development of thrombocytopenia, suggesting a prevalence of young and old platelets respectively. Mean TO fluorescence per cell was higher in the platelet population enriched in young cells than in that enriched in old cells, but this difference was no longer observed when the ratio TO signal/platelet size was examined. Moreover, RNase treatment and platelet degranulation reduced TO fluorescence to a similar extent in platelet populations enriched in young or old cells. Therefore our data suggest that the higher TO signal of young platelets is derived, to a significant extent, from their larger volume and granule content.

Antineoplastic Agents↗

Incompatibility for CD31 and human platelet antigens and acute graft-versus-host disease after bone marrow transplantation.

Bone marrow transplantation (BMT) is often complicated by acute graft-versus-host disease (aGVHD). In patients transplanted with an HLA-matched donor the occurrence of this complication is believed to be favoured by disparities at the minor histocompatibility antigens (mHA). However, few of these polymorphic molecules have been identified. We sought to determine whether donor/recipient incompatibility for HPA-1, HPA-2, HPA-3, HPA-5 or CD31 (codon 125) antigens represented a risk factor for aGVHD and genotyped these antigens in 70 bone marrow donors and their HLA-identical recipients. All patients were children who received BMT for haematological malignancies at a single institution according to well-defined therapy protocols. Statistical analysis showed that incompatibility for CD31 (codon 125) was a risk factor for grade II-IV aGVHD in the overall patient population, whereas HPA-3 incompatibility predicted aGVHD occurrence in HLA-A2 patients only. The magnitude of the aGVHD risk was directly related to the number of HPA/CD31 incompatibilities. No correlation was found between non-identity for HPA/CD31 and aGVHD. Since incompatibility but not non-identity for CD31 or HPA-3 was a risk factor for aGVHD, we suggest that allelic variants of these molecules can serve as mHA in BMT recipients from HLA-identical donors.

Adolescent↗

In vitro and in vivo effects of desmopressin on platelet function.

BACKGROUND AND OBJECTIVE: Desmopressin (DDAVP) may shorten bleeding time in patients with disorders of platelet function, but its mechanism of action in these conditions is still a matter of debate. In particular, contrasting results have been obtained concerning the ability of DDAVP to interact with platelets and to activate them directly. To gain further information on the DDAVP-platelet interaction, we studied the in vitro and ex vivo effects of DDAVP on platelet function. DESIGN AND METHODS: Platelet responses to DDAVP both as a single agent and in conjunction with agonists of platelet activation were investigated. For in vitro experiments platelets were obtained from healthy adult volunteers, while the ex vivo effects of DDAVP were studied in 12 patients with a bleeding disorder receiving a test dose of this drug. RESULTS: DDAVP in vitro did not induce either platelet aggregation or surface expression of the activation-dependent antigens; it did, however, greatly inhibit platelet aggregation response to vasopressin (AVP) and increased the maximal extent of platelet aggregation induced by collagen and ADP. DDAVP infusion did not promote the expression of activation antigens, but significantly enhanced ex vivo platelet aggregation stimulated by ADP and collagen. This priming effect was observed in patients with von Willebrand's disease, hemophilia A, May-Hegglin anomaly, gray platelet syndrome and Ehlers-Danlos syndrome. In all these patients bleeding time was shortened by DDAVP infusion. In contrast, neither platelet aggregation nor bleeding time was modified in two subjects with Glanzmann's thrombasthenia. INTERPRETATION AND CONCLUSIONS: Our in vitro experiments indicate that DDAVP interacts directly with platelets and facilitates their activation via other agonists. In vivo results suggest that this effect occurs and is clinically relevant in patients with platelet dysfunction responding to DDAVP with a shortening of bleeding time.

Adenosine Diphosphate↗

Thrombocytopenia, giant platelets, and leukocyte inclusion bodies (May-Hegglin anomaly): clinical and laboratory findings.

PURPOSE: May-Hegglin anomaly is a rare hereditary condition characterized by the triad of thrombocytopenia, giant platelets, and inclusion bodies in leukocytes. Clinical features and the pathogenesis of bleeding in this disease are poorly defined. PATIENTS AND METHODS: From 1988 to 1996 we studied 15 new May-Hegglin anomaly patients from 7 unrelated Italian families. In addition to clinical examination and routine laboratory testing, we measured bleeding time, platelet aggregation and release reaction, and platelet staining for tubulin, and performed ultrastructural study of polymorphonuclear leukocytes. RESULTS: Although the mean age of our patients was 33 years, May-Hegglin anomaly had not been previously recognized in any of them. Bleeding diatheses ranged from severe to absent, and platelet count from 26 to 178 x 10(9)/L. No correlation was found between bleeding tendency and platelet count. Previous therapy with corticosteroids, high-dose immunoglobulins, and splenectomy had no effect on platelet count or bleeding diathesis. Desmopressin infusion greatly shortened the bleeding time in the most severely affected patient. The in vitro function of platelets was normal except for the absence of shape change in all subjects and defective response to epinephrine in 8 of 15 patients. Platelet tubulin was distributed unevenly instead of being organized in a circumferential band at the cell periphery. CONCLUSION: The diagnosis of May-Hegglin is easily missed, and its frequency is probably underestimated. A qualitative defect of platelets may be responsible for mild bleeding diathesis even in the absence of thrombocytopenia, while severe bleeding results from both qualitative and quantitative platelet defects. May-Hegglin anomaly should be suspected whenever a patient has a low platelet count or a bleeding diathesis of unknown origin.

Adolescent↗

A new variant of Bernard-Soulier syndrome characterized by dysfunctional glycoprotein (GP) Ib and severely reduced amounts of GPIX and GPV.

We describe a new variant of Bernard-Soulier syndrome characterized by almost normal amounts of GPIb and severely reduced GPIX and GPV. Despite surface expression, GPIbalpha failed to support ristocetin-induced platelet agglutination and to bind two conformation-dependent monoclonal antibodies, suggesting a qualitative defect. Sequence analysis of the gene coding for GPIX revealed a T-to-C substitution at base 1811, leading to a Leu40Pro conversion, whereas no defects were found in the coding region of the GPIbalpha gene. Allele-specific restriction enzyme analysis showed that the propositus and one of his sisters. both with severe bleeding diathesis. were homozygous for the GPIX mutation: the members of the family with mild bleeding diathesis and/or giant platelets in the peripheral blood were heterozygous, whereas the healthy ones were homozygous for the normal allele. Infusion of 1-desamino-8-D-arginine vasopressin normalized bleeding time in the two severely affected patients, although it did not modify ristocetin-induced platelet agglutination or membrane expression of GPIbalpha, GPIX, GPIIb-IIIa and GMP-140. Moreover, in one patient, normalization of bleeding time and rise of von Willebrand factor plasma concentration did not seem to be directly related.

Amino Acid Substitution↗

Autologous platelet transfusion in patients receiving high-dose chemotherapy and circulating progenitor cell transplantation for stage II/III breast cancer.

BACKGROUND AND OBJECTIVE: Concerns about the risk of transfusion therapy are driving towards new strategies which are designed to minimize exposure to allogeneic blood products. We aimed to find out whether it is possible to support the phase of thrombocytopenia following high-dose chemotherapy (HDC) and circulating progenitor cells (CPC) transplantation by autologous platelet concentrates (PC). DESIGN AND METHODS: PC were collected from 32 patients undergoing HDC and CPC transplantation for stage II/III breast cancer. A single plateletpheresis was performed at rebound after high-dose cyclophosphamide, when platelet count exceeded 250 x 10(9)/L. PC were cryopreserved in 5% DMSO after controlled-rate freezing and stored in liquid nitrogen. In vitro studies of cryopreserved platelets (aggregation, ATP release and change of mean platelet volume induced by EDTA) were performed. When platelet counts dropped below 20 x 10(9)/L following HDC (thiotepa 600 mg/m2, L-PAM 160 mg/m2) and CPC transplant (CD34+ cells > 5 x 10(6)/kg), PC were thawed in a 37 degrees C water bath, centrifuged to remove DMSO, resuspended in autologous plasma and reinfused within one hour. RESULTS: Large quantities of platelets were harvested in all patients (median 6.6 x 10(11), range 4.8-12.2). In vitro studies showed preserved platelet function as compared to both fresh platelets and standard PC. Twenty-eight out of 32 patients received autologous PC. At the time of transfusion most of the patients were febrile (> 38 degrees C) and had mucositis > G2. The median number of platelets reinfused was 3.8 x 10(11) (range 2.0-8.1) with a median loss during the freeze-thaw-wash procedure of 37%. Autotransfusion was able to maintain platelet count above 20 x 10(9)/L in most patients, with a corrected count increment > 7.5 in 20 cases. Four patients required one additional allogeneic transfusion, two because of a poor increment and two due to a late-occurring epistaxis. No side effects related to PC infusion were recorded. Sixteen control patients who received the same HDC and a similar number of CD34+ cells required a total of 17 allogeneic PC units (1 patient did not require platelet transfusion). INTERPRETATION AND CONCLUSIONS: Our data demonstrate that large doses of autologous platelets can easily be collected and safely administered to support the period of thrombocytopenia in patients undergoing HDC and CPC transplantation. Autologous PC in these patients can abrogate the risks deriving from allogeneic platelet transfusion.

Adult↗

Autologous platelet collection and storage to support thrombocytopenia in patients undergoing high-dose chemotherapy and circulating progenitor cell transplantation for high-risk breast cancer.

OBJECTIVES: The use of circulating progenitor cell support following high-dose chemotherapy for malignancies decreases but does not entirely abolish platelet transfusion requirement. We investigated the feasibility of supporting the posttransplant thrombocytopenic phase exclusively with autologous platelets collected by apheresis and cryopreserved. METHODS: 25 patients underwent plateletpheresis during the platelet rebound occurring after high-dose cyclophosphamide. Autologous platelets were cryopreserved in 5% dimethylsulfoxide, thawed and transfused during the aplastic phase after the myeloablative regimen whenever clinically required. RESULTS: A single plateletpheresis was carried out in all patients, allowing the harvest of a platelet concentrate with a mean value of 7.7 x 10(11) platelets. No significant procedure- or transfusion-related side effects were recorded. Mean platelet recovery after freezing and thawing was 63% and the mean number of platelet reinfused was 4.8 x 10(11); 23 of 25 patients were fully supported with autologous platelets. CONCLUSION: Plateletpheresis performed in our selected group of patients was found to be a safe and effective procedure to collect large amounts of autologous platelets; the numbers obtained proved to be sufficient for the transfusion demand of almost all patients.

Antineoplastic Combined Chemotherapy Protocols↗

Thrombopoietin levels in patients with primary and reactive thrombocytosis.

Human c-mpl ligand or thrombopoietin (TPO) has been proved to be a critical cytokine in the physiological regulation of thrombopoiesis. Previous evidence suggested that TPO production is constitutive and TPO plasma levels are regulated by the platelet-megakaryocyte mass through c-mpl receptor-mediated uptake and metabolism. To evaluate whether this mechanism of TPO level regulation is also operative in subjects with an elevated platelet count, we evaluated serum TPO in 32 patients with thrombocytosis due to essential thrombocythaemia (ET) or polycythaemia vera (PV) and in 70 subjects with reactive thrombocytosis; 32 healthy subjects were also studied. TPO levels were significantly higher in the ET and PV groups (median 246.2 pg/ml, range 93.5-4596) and reactive thrombocytosis patients (median 287 pg/ml, range 82.7-1960.0) than in normal subjects (median 156.7 pg/ml, range 62.2-352.7). No significant difference was found between the two groups of patients, indicating that serum TPO levels cannot differentiate between primary and reactive thrombocytosis. No significant correlation was found between platelet count and TPO levels in either ET-PV or reactive thrombocytosis, whereas a trend toward a correlation between acute-phase reactants and TPO was observed in patients with reactive thrombocytosis. These results indicate that TPO clearance by platelets-megakaryocytes is not fully operative or is not the only mechanism of TPO level regulation in primitive and reactive thrombocytosis.

Acute-Phase Reaction↗

A phenylalanine-55 to serine amino-acid substitution in the human glycoprotein IX leucine-rich repeat is associated with Bernard-Soulier syndrome.

The platelet membrane glycoprotein (GP) Ib-IX-V complex, the major von Willebrand factor receptor on platelets, is absent or dysfunctional in patients with the Bernard-Soulier syndrome (BSS). The four single subunits of the GPIb-IX-V complex (GPIb alpha, Ib beta, IX and V) are molecular products of different genes. Several point mutations and deletions affecting the GPIb alpha gene have been identified as the cause of BSS, whilst in four BSS families a GPIX gene defect has been reported. Moreover, a single case of BSS has been associated with a genetic defect of GPIb beta. We investigated the molecular basis of another case of BSS with a deficient expression of GPIX, as detected by immunofluorescence studies. After amplification of the entire GPIX coding region, nucleotide sequence analysis showed a homozygous single point mutation predicting a phenylalanine to serine substitution at position 55 of the mature GPIX within its unique leucine-rich repeat. By allele-specific oligonucleotide hybridization we confirmed the homozygosity of the patient as well as the carrier state of two out of three of his children studied. Although the parents of the patient, who were first cousins, were no longer alive and thus not available for study, we speculate that the molecular defect observed in the proband was inherited from both parents, who probably were heterozygous for this GPIX gene defect. This study confirms that BSS may be caused by many different subtle molecular defects that often prevent the assembly and expression of a functional GPIb-IX-V complex.

Aged↗