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1.
Clin Exp Med ; 24(1): 11, 2024 Jan 20.
Article in English | MEDLINE | ID: mdl-38244120

ABSTRACT

Polycythemia Vera (PV) is typically caused by V617F or exon 12 JAK2 mutations. Little is known about Polycythemia cases where no JAK2 variants can be detected, and no other causes identified. This condition is defined as idiopathic erythrocytosis (IE). We evaluated clinical-laboratory parameters of a cohort of 56 IE patients and we determined their molecular profile at diagnosis with paired blood/buccal-DNA exome-sequencing coupled with a high-depth targeted OncoPanel to identify a possible underling germline or somatic cause. We demonstrated that most of our cohort (40/56: 71.4%) showed no evidence of clonal hematopoiesis, suggesting that IE is, in large part, a germline disorder. We identified 20 low mutation burden somatic variants (Variant allelic fraction, VAF, < 10%) in only 14 (25%) patients, principally involving DNMT3A and TET2. Only 2 patients presented high mutation burden somatic variants, involving DNMT3A, TET2, ASXL1 and WT1. We identified recurrent germline variants in 42 (75%) patients occurring mainly in JAK/STAT, Hypoxia and Iron metabolism pathways, among them: JAK3-V722I and HIF1A-P582S; a high fraction of patients (48.2%) resulted also mutated in homeostatic iron regulatory gene HFE-H63D or C282Y. By generating cellular models, we showed that JAK3-V722I causes activation of the JAK-STAT5 axis and upregulation of EPAS1/HIF2A, while HIF1A-P582S causes suppression of hepcidin mRNA synthesis, suggesting a major role for these variants in the onset of IE.


Subject(s)
Polycythemia Vera , Polycythemia , Humans , Polycythemia/diagnosis , Polycythemia/genetics , Polycythemia Vera/genetics , Mutation , Iron , Germ Cells
2.
Int J Immunopathol Pharmacol ; 24(1 Suppl 2): 69-72, 2011.
Article in English | MEDLINE | ID: mdl-21669141

ABSTRACT

Chondral articular defects are a key concern in orthopaedic surgery. To overcome the disadvantages of autologous chondrocyte implantation (ACI) and to improve the outcomes of autologous matrix-induced chondrogenesis (AMIC), the latter technique is currently augmented with bone marrow concentrate injected under or seeded onto the scaffold. However, to date, only a little is known about histological outcomes of either the AMIC technique or AMIC associated with bone marrow concentrate. This study aimed to evaluate the quality of the repair tissue obtained from biopsies harvested during second-look arthroscopy after arthroscopic AMIC augmented with bone marrow concentrate. We analysed five second-look core biopsies harvested at 12 months follow-up. At the time of biopsy the surgeon reported the quality of the repair tissue using the standard ICRS Cartilage Repair Assessment (CRA). Every biopsy together with patient data was sent to our centre to undergo blind histological evaluation (ICRS II Visual Histological Assessment Scale) and data analysis. Five asymptomatic patients (mean age 43.4 years) had isolated lesions (mean size was 3.7 cm2) at the medial femoral condyle. All the implants appeared nearly normal (ICRS CRA) at arthroscopic evaluation and had a mean overall histological (ICRS II) of 59.8±14,5. Hyaline-like matrix was found in only one case, a mixture of hyaline/fibrocartilage was found in one case and fibrocartilage was found three cases. Our clinical and histological data suggest that this procedure achieved a nearly normal arthroscopic appearance and a satisfactory repair tissue, which was possibly still maturing at 12 months follow-up. Further studies are needed to understand the true potential of one-step procedures in the repair of focal chondral lesions in the knee.


Subject(s)
Bone Marrow Transplantation/methods , Cartilage, Articular/surgery , Collagen , Knee Injuries/surgery , Tissue Scaffolds , Adult , Arthroscopy , Biopsy , Biopsy, Needle , Cartilage/injuries , Cartilage/pathology , Cartilage, Articular/pathology , Female , Fibrocartilage/pathology , Follow-Up Studies , Humans , Hyaline Cartilage/pathology , Knee Injuries/pathology , Male , Middle Aged , Paraffin Embedding , Treatment Outcome , Young Adult
3.
Org Lett ; 3(21): 3273-5, 2001 Oct 18.
Article in English | MEDLINE | ID: mdl-11594812

ABSTRACT

[reaction: see text]. Enantiomerically pure (S)-cleonin, a key component of the antitumor antibiotic cleomycin, was prepared starting from (R)-serine. The Kulinkovich cyclopropanation of the methyl ester of N-Cbz serine acetonide gave the hydroxycyclopropyl moiety. The amino alcohol region was further oxidized to amino acid. The Kulinkovich cyclopropanation allowed also the preparation of other non-natural substituted cyclopropylglycines.


Subject(s)
Amino Acids/chemical synthesis , Bleomycin/analogs & derivatives , Cyclopropanes/chemical synthesis , Antibiotics, Antineoplastic/chemical synthesis , Bleomycin/chemical synthesis , Stereoisomerism
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