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Biomedical subjects

H J Hassan

Publications and source records attributed to H J Hassan.

18 recordsLinked to original sources

Unilineage megakaryocytic proliferation and differentiation of purified hematopoietic progenitors in serum-free liquid culture.

Cellular and molecular analysis of megakaryocytopoiesis has been hampered thus far by the lack of pure and abundant megakaryocyte (MK) cell populations. In this study, hematopoietic progenitor cells (HPCs), stringently purified from peripheral blood, were induced to megakaryocytic differentiation/maturation in serum-free liquid suspension culture treated with a growth factor cocktail (interleukin-3 [IL-3], c-kit ligand, and IL-6) and/or recombinant mpl ligand (mpIL). In particular, (1) the growth factor cocktail induced the growth of a 40% MK population, ie, 4 x 10(4) cells at day 0 generated 2 x 10(5) MK at terminal maturation; (2) further addition of mpIL increased the MK purity level to 80% with a final yield of 4 x 10(5) MKs; (3) treatment with mpIL alone resulted in a 97% to 99% MK population, with a mild increase of cell number (to 1.5 x 10(5) cells). In mpIL-supplemented culture, morphological evaluation indicated the presence of putative mononuclear MK precursors and then of mature polynucleated platelet-forming MKs, peaking at days 5 and 12, respectively. Membrane phenotype analysis showed a gradual decrease of CD34+ HPCs, coupled with an inverse increase of MK-specific antigens (eg, CD61/62/42b) starting before mature MK detection by morphology analysis. In situ hybridization showed the expression of MK-specific von Willebrand gene in both MK precursors and mature MKs. Furthermore, MKs synthesize and secrete low but significant amounts of both IL-6 and granulocyte-macrophage colony-stimulating factor. Comparative culture studies were performed on purified bone marrow CD34+/38hi or CD34+/38lo cells stimulated by mpIL alone. Both populations generated a highly enriched MK progeny (62% and 93% MKs at day 12 of culture, respectively) but showed either little or no proliferation. In conclusion, the purified peripheral blood HPC differentiation culture system allows for growth of a relatively large number of highly purified or "pure" megakaryocytic precursors and then mature MKs, thus providing an in vitro experimental tool to dissect the cellular and molecular basis of megakaryocytopoiesis.

Adult

In vitro human immunodeficiency virus-1 infection of purified hematopoietic progenitors in single-cell culture.

Uni- or multi-lineage suppression of hematopoiesis is observed in the majority of acquired immunodeficiency syndrome (AIDS) patients. The mechanism(s) underlying these abnormalities is not understood: particularly, the human immunodeficiency virus (HIV) infection of hematopoietic progenitor and stem cells (HPCs/HSCs) is highly controversial. We report that CD34+ HPCs from adult peripheral blood (PB) are in part CD4+ and susceptible to in vitro HIV infection. Primitive CD34+ HPCs were approximately 80% purified from PB. Double labeling for CD34 and CD4 membrane antigens was shown for 5% to 20% of the purified cells, thus suggesting their potential susceptibility to HIV-1 infection. The enriched HPC population, challenged with purified or unpurified HIV-1 strains, was cloned in unicellular methylcellulose culture. The single colonies generated by erythroid burst-forming units (BFU-E), granulocyte-macrophage colony-forming units (CFU-GM), and granulocyte-erythroid-macrophage-megakaryocyte colony-forming units (CFU-GEMM) were analyzed for the presence of HIV, ie, for gag DNA, tat mRNA, and p24 protein by PCR, reverse transcription PCR (RT-PCR), and enzyme-linked immunosorbent assay, respectively. In the first series of experiments incubation of HPCs with HIV-1 at multiplicities of infection (MOI) ranging from 0.01 to 10 TCID50/cell consistently yielded an 11% to 17% infection efficiency of BFU-E-generated colonies, thus indicating the sensitivity of HPCs to in vitro HIV infection. An extensive series of experiments was then performed on HPCs challenged with HIV at 0.1 MOI level. In the initial studies proviral gag sequences were detected in 9.2% of 121 analyzed CFU-GM colonies. In further experiments tat mRNA was monitored in 17% and 23% of BFU-E and CFU-GM colonies, respectively, but never in CFU-GEMM clones. Finally, 12% of CFU-GM clones and rare erythroid bursts were shown to be positive for the p24 viral protein. In control studies, purified HPCs grown in liquid suspension culture were induced to terminal unilineage erythroid, monocytic, or granulocytic differentiation: monocytes were consistently HIV-infected, whereas mature-terminal erythroblasts and granulocytes were not. Our observations indicate that a minority of primitive HPCs, but not of the multipotent type, is susceptible to in vitro HIV infection. These observations may reflect on the in vivo hematopoietic impairment in AIDS patients; more important, they provide an experimental model for studies on HIV hematopoietic infection and in vitro tests for anti-HIV HSC gene therapy.

Adult

PCR analysis of HIV-1 sequences and differential immunological features in seronegative and seropositive haemophiliacs.

We have compared the immunological features of two matched groups of seronegative and seropositive haemophilia A individuals. Both groups were exposed from 1981 to 1985 to comparable amounts and batches of FVIII concentrates not subjected to virus inactivation procedures, and had therefore a 100% probability of receiving HIV-contaminated material. The presence of proviral HIV-1 sequences was evaluated by PCR in the DNA from peripheral blood lymphocytes and/or monocytes. After hybridization with specific probes, DNA from all seropositive haemophiliacs revealed HIV sequences; no HIV sequences were observed from the DNA of seronegative patients, even after two rounds of amplification, thus suggesting that these patients were not affected by a latent HIV infection. Seronegative/PCR- and seropositive/PCR+ patients showed a normal and reduced number of CD4+ lymphocytes, and a slight and marked increase of CD8+ cells respectively. Activated T cells expressing the HLA-DR antigen were elevated in both groups. Interestingly, a significant reduction of circulating CD56+/CD3- NK lymphocytes was observed only in seropositive haemophiliacs, whereas NK lymphocytes with CD56+/CD3+ phenotype were within normal levels in both groups. In seropositive patients no correlation was found between the number of CD4+ and CD56+/CD3- lymphocytes. The marked reduction of CD56+/CD3- lymphocytes observed in seropositive haemophiliacs in addition to the CD4+ cell depletion may represent a key pathogenetic factor which facilitates the onset and/or the progression of HIV-1 infection in haemophiliacs, and is related to the capacity of HIV to infect NK cells.

Antigens, CD

Blood coagulation factors in human embryonic-fetal development: preferential expression of the FVII/tissue factor pathway.

The expression of a number of blood coagulation factors (F) (FX, FIX, FVIII, FVII, alpha-, beta-, gamma-fibrinogen chains, protein C, and antithrombin III [AT III]) was analyzed at RNA and protein level in 5- to 10-week-old human embryos and fetuses. FX, FIX, and FVII were also analyzed at protein level. Total and poly(A)+ RNA, extracted from embryonic-fetal (FL) and adult liver (AL), were analyzed by dot and Northern blot hybridization with specific cDNA probes. The results indicate that: (1) the size of the messenger RNAs of these factors is equivalent in FL and AL; (2) in the 5- to 10-week period, their abundance in FL increases from 30% to 50% of the adult level except for FIX (from 2% to 10%) and FX (always 100% of the adult value). Western blot analysis of FIX, FX, and FVII in 5- to 10-week soluble liver proteins and 6- to 8-week plasma showed a low level of FIX versus a higher concentration of both FVII and FX, when compared with corresponding adult values, ie, a liver protein level of 10% versus 100% and a plasma concentration level of 10% versus 40%. Although little is known so far on the activity and the functional role of the clotting factors in early human ontogenic development, these studies suggest an activation of FX via the FVII/tissue factor activity rather than the FIXa/FVIIIa phospholipid complex in human embryonic and early fetal life.

Blood Coagulation Factors

Carrier detection for hemophilia B: evaluation of multiple polymorphic sites.

DNA analysis was performed in families with hemophilia B. Restriction fragment length polymorphisms (RFLPs) produced by endonucleases Taql, Xmnl, and Ddel were studied by two factor IX genomic probes, F9(VIII) and F9(XIII). Fifty-seven subjects from ten families were investigated; of them, 31 were carriers (11 obligate and 20 potential). Of the potential carriers, ten displayed laboratory features allowing for a phenotypic diagnosis of heterozygosity. Segregation analysis of the markers was informative in 19/20 potential carriers, which belong to nine of the ten studied families. Among the potential carriers, Taql allowed the carriership assessment in 15 (78.9%), Xmnl in 15 (94.7%), and Ddel in two (10.4%). Diagnosis was not possible in one family since a homozygosity in the key individuals with all the employed enzymes (Taql, Xmnl, Ddel, + BamHI) was found. Hemophilia B syndrome in two families likely results from a new mutation. In one family, a first-trimester prenatal diagnosis was performed. The use of RFLP analysis allowed us to improve genetic counseling as compared with the phenotypic evaluation by clotting factor assays. Indeed, evaluation of RFLP increased by 26% the carriership assessment of the potential carriers of the hemophilia B trait.

DNA Probes

Factor X Roma: a congenital factor X variant defective at different degrees in the intrinsic and the extrinsic activation.

A factor X molecular variant was identified in a 13-year-old girl affected by a bleeding tendency. Factor X antigen levels and activation by Russel's viper venom (tested both by clotting and amidolytic assays) were normal. Factor X crossed immunoelectrophoresis was found to be identical to that of the control plasma. Factor X functional activity was low (3% of the normal) if tested by PTT-derived assays, whereas it was found at intermediate levels (about 30-50% of the normal) if measured by prothrombin time-derived assays. The defect in the extrinsic activation was more clearly disclosed using as activating agent thromboplastin from ox brain. The factor X of the patient was completely adsorbed by aluminum hydroxide. The parents of the propositus (first degree cousins) showed factor X functional levels compatible with a condition of heterozygosity for the abnormality. This factor X molecular variant appears different from the other ones so far described and was named 'Factor X Roma'.

Adolescent

Multiple polymorphic sites in factor X locus.

The structure of factor X (FX) gene was analyzed in five FX deficient pedigrees with four different variants of the disease, as well as in 50 normal subjects. Genomic DNA from the deficient patients and the normal controls was digested with 12 restriction endonucleases and hybridized with a FX cDNA probe. The results seemingly exclude gross gene deletions or rearrangements in the deficient patients. A variety of polymorphic sites (ie, EcoRI, HindIII, PstI, PvuII, TaqI) was observed within the FX locus and their relative frequency was established. Intriguingly, a highly polymorphic region for the PvuII endonuclease was identified and located approximately 3 kilobases (kb) from the last 3' exon. These polymorphisms allowed us to analyze the allelic segregation in a FX deficient family and to identify a homozygous subject.

Adult

Hereditary thrombophilia: identification of nonsense and missense mutations in the protein C gene.

The structure of the gene for protein C, an anticoagulant serine protease, was analyzed in 29 unrelated patients with hereditary thrombophilia and protein C deficiency. Gene deletion(s) or gross rearrangement(s) was not demonstrable by Southern blot hybridization to cDNA probes. However, two unrelated patients showed a variant restriction pattern after Pvu II or BamHI digestion, due to mutations in the last exon: analysis of their pedigrees, including three or seven heterozygotes, respectively, with approximately 50% reduction of both enzymatic and antigen level, showed the abnormal restriction pattern in all heterozygous individuals, but not in normal relatives. Cloning of protein C gene and sequencing of the last exon allowed us to identify a nonsense and a missense mutation, respectively. In the first case, codon 306 (CGA, arginine) is mutated to an inframe stop codon, thus generating a new Pvu II recognition site. In the second case, a missense mutation in the BamHI palindrome (GGATCC----GCATCC) leads to substitution of a key amino acid (a tryptophan to cysteine substitution at position 402), invariantly conserved in eukaryotic serine proteases. These point mutations may explain the protein C-deficiency phenotype of heterozygotes in the two pedigrees.

Amino Acid Sequence

Intragenic Factor IX restriction site polymorphism in hemophilia B variants.

This study includes 47 normal subjects and 25 hemophilia B patients without inhibitor(s), showing different factor IX coagulant activity and antigen levels. Genomic DNA, digested with various restriction endonucleases, was hybridized with two different factor IX probes, ie, the cDNA and the subgenomic probe for the intragenic TaqI polymorphic site. cDNA restriction patterns suggest absence of gross rearrangements and/or deletions in all hemophilic patients. The frequency of the X chromosome bearing the TaqI polymorphic site is 0.32 +/- 0.09 in hemophilic subjects v 0.36 +/- 0.06 in normal control subjects, the latter value being comparable to that reported for the normal British population. No association between this polymorphism and hemophilia B variants has been observed, thus indicating that a wide spectrum of mutations underlies this blood-clotting disorder and particularly each of its variants.

Cloning, Molecular

Hemophilia B with inhibitor: molecular analysis of the subtotal deletion of the factor IX gene.

The structure of factor IX gene was analyzed in a hemophilia B patient with inhibitor. Genomic DNA, digested with a variety of restriction endonucleases, was hybridized with the cDNA and various genomic factor IX probes. A large subtotal deletion of the gene was observed. The borders of the deletion span from a approximately 125 nucleotide region within the last exon to an unknown domain at least 7.5 kb upstream from the first exon: it thus involves approximately 33 kb of the factor IX locus. The abnormal gene was inherited by the daughter of the propositus, who showed both the normal and the deleted allele.

Chromosome Deletion

Hereditary factor VII deficiency: report of a case of intracranial hemorrhage.

A case of factor VII deficiency in a 52-year-old woman who developed central nervous system hemorrhage is here reported. Screening coagulation tests were all normal except for prothrombin time, normotest and thrombotest. Specific assays of vitamin K-dependent factors revealed that factor VII activity was reduced (11 U/dl). The studies of the family demonstrated that 2 sisters out of 4 were heterozygous for the defect. The activity of factor VII in the offspring, classified as obligatory carriers, ranged between 62 and 78 U/dl, the antigen between 55 and 75 U/dl. The wide variability of factor VII in normal people and the possible compensative effect of normal alleles in carriers do not allow to define the variant, namely if the patient is a CRMR homozygote or a CRMR/CRM-double heterozygote.

Antigens

An abnormal inherited fibrinogen (fibrinogen Genova) with delayed fibrin aggregation.

A new autosomally inherited dysfibrinogenaemia was recognized in 3 members of an Italian family. No bleeding tendency or thrombotic disease in any of the affected members were demonstrated. Coagulation tests revealed prolonged prothrombin, thrombin and Reptilase times. Plasma fibrinogen levels were normal with immunologic method and slightly reduced with chronometric assay: the other blood coagulation factors were normal. In addition, cross-immunoelectrophoresis performed on patients' plasma was indistinguishable from the normal. Dysfibrinogenaemia was confirmed by studying the purified fibrinogen. The fibrin polymerization curve, measured spectrophotometrically, showed a lower slope than the normal. A delay in fibrin monomer aggregation was revealed when compared to the normal at an equal concentration. The release of fibrinopeptides was normal. SDS polyacrylamide gel electrophoresis, isoelectric focusing and cross-immunoelectrophoresis of purified fibrinogen were not able to demonstrate any structural abnormality. The fibrinogen was named fibrinogen Genova.

Blood Coagulation Disorders

Factor VII in liver cirrhosis.

Factor VII activity and factor VII cross-reacting material (CRM) in plasma of patients with liver cirrhosis have been studied before and after vitamin K1 parenteral administration. Subjects were divided into two groups according to the absence (group I) or the presence (group II) of the following clinical findings: ascites, portal hypertension, encephalopathy. Factor VII activity and CRM show a statistically significant correlation (p less than 0.001) in all patients. In group II, significantly reduced levels of both activity and CRM were found as compared to the reference and the group I values. No variations were found after vitamin K administration. Different thromboplastins, investigated with respect to their sensitivity for factor VII, acted differently. Patients with normal albumin levels also showed normal levels of factor VII activity and antigen. No correlation was found in group II. The data discussed suggest that in liver cirrhosis with unknown aetiology no immunologically detectable precursor of factor VII is present.

Adult

Structural or functional heterogeneity of normal human serum albumin, allo albumin, bisalbumin.

The present paper reports a comparative isoelectric focusing study of electrophoretically normal and abnormal albumins. All the albumins were purified by two different techniques (cellulose acetate electrophoresis and preparative slab isoelectric focusing), and submitted to analytical isoelectric focusing before and after incubation with either metabolites or drugs. Isoelectric focusing patterns show general heterogeneity, both in normal and in any of the observed alloalbumins. The heterogeneity is increased in bisalbumins (drug or metabolite induced), showing the same electrophoretic pattern as alloalbumins. The differences are related to the amount of the ligands. The results agree with the hypothesis that the heterogeneity depends on the structure and the carrier function of albumin.

Albumins

Factor VII deficiency: immunological characterization of genetic variants and detection of carriers.

Twenty-one patients with congenital factor VII deficiency belonging to 16 different kindreds were investigated. The existence of three immunochemical variants on the ground of factor VII activity (VII:C) and factor VII-related antigen (VII:Ag) levels (VII-, VII+ and VIIR) was established. There was no correlation between the presence of factor VII:Ag and either the clinical picture or the specific function as studied with the Km calculations. Genetically the model of inheritance is the same whatever the immunological variant, but the identification of carriers is simplified when the presence of factor VII-related antigen is assayed throughout a kindred.

Antigens

Isoenzyme variants of nonspecific esterases in chronic myelocytic leukemia and in blastic crisis.

The isoenzymes of nonspecific esterases have been examined with polyacrylamide gel electrophoresis in 10 patients with chronic myelocytic leukemia (CML) and 10 with blastic crisis (BC) in respect to normal subjects. In patients with active CML the recurrent loss of fast bands was detected, while in patients in remission the isoenzyme variants are similar to those found in normal subjects. Different isoenzyme variants which are similar to those found in acute leukemia were detected in patients with BC of differenct morphological type with the exception of BC of megakaryoblastic type. The possible meaning of such variants in relation to an early identification of malignant proliferating clones, is discussed.

Esterases