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Biomedical subjects

N Savion

Publications and source records attributed to N Savion.

At least 37 records · Page 2Linked to original sources

The effect of fish oil on hypertension, plasma lipids and hemostasis in hypertensive, obese, dyslipidemic patients with and without diabetes mellitus.

We have recently reported that dietary fish oil supplementation (n-3) polyunsaturated fatty acid (PUFA) led to a reduction in blood pressure (BP) and serum triglycerides (TG), in addition to the normalization of the hypercoagulable state in subjects with obesity, hypertension and dyslipidemia without diabetes mellitus (OHD-DM). The aim of the present study was to explore the mechanism of this amelioration by comparing the previous results to those obtained from 19 subjects who, in addition to the conditions described above, also suffer from diabetes mellitus (OHD+DM) and proteinuria. In both the non-diabetic and diabetic groups, a similar reduction was observed in BP (from 158.7/80.8 to 146/72.9 mmHg, and from 157.6/83.2 to 141.9/75.6 mmHg, respectively, P<0.001) and TG levels (from 159.2 to 108.0 mg/dl and from 208.7 to 153.1 mg/dl, respectively, P<0.001). However, a favorable reduction in hemostasis parameters (platelet aggregation on extracellular matrix and (alpha2-antiplasmin) was only seen among the nondiabetic patients (from 12.1+/-4.9 to 4.2+/-3.2%, P<0.001). This difference may stem from a less efficient exchange between n-3 and n-6 PUFA in serum phospholipid of the OHD+DM patients. Overall, this 13-day fasting/refeeding method developed by us has proven to cause the rapid exchange of arachidonic acid for eicosapentaenoic acid. It appears to be an effective regimen for the reduction of cardiovascular risk factors (BP, TG and hemostatic variables) in OHD-DM patients and to a lesser extent in OHD+DM patients.

Aged↗

Activated platelets mediate Staphylococcus aureus deposition on subendothelial extracellular matrix: the role of glycoprotein Ib.

Extracellular matrix (ECM) derived from bovine corneal endothelial cells was used as a model to study the role of platelets in Staphylococcus aureus interaction with the vascular subendothelium. In whole blood, S. aureus activated platelets, as demonstrated by P-selectin expression on the platelet membrane. Subjecting platelet-rich plasma (PRP) to the ECM under oscillatory conditions resulted in platelet adhesion and aggregation. S. aureus increased platelet deposition on ECM depending on the bacterium-platelet ratio. Scanning electron microscopy revealed that S. aureus adhered to and formed clusters on ECM-bound platelets. These findings were confirmed by using [3H]thymidine-labeled bacteria that adhered to the surface more extensively after deposition of platelets on ECM. Platelet pre-treatment with prostaglandin E1 resulted in inhibition of bacterial adherence. Glycoprotein (GP)Ib was involved in the bacterium-platelet interaction, as indicated by the following: (i) S. aureus diminished the binding of GPIb but not of GPIX or GPIIb-IIIa monoclonal antibodies (Mab) to washed fixed platelets; (ii) GPIb Mab inhibited S. aureus -induced platelet aggregation in a dose-dependent fashion; (iii) blockade of von Willebrand factor (vWf) binding to GPIb by a recombinant vWf fragment reversed the enhanced platelet deposition on ECM in the presence of S. aureus but did not affect platelet deposition in the absence of bacteria. The results indicate that S. aureus activates platelets and promotes their deposition on ECM via GPIb-dependent mechanism and that adherent platelets mediate S. aureus deposition on the subendothelium. These interactions might play a role in the pathogenesis of bacterial endocarditis.

Journal Article↗

Increased neonatal platelet deposition on subendothelium under flow conditions: the role of plasma von Willebrand factor.

In vitro platelet function of umbilical cord blood and neonatal peripheral vein blood from full-term newborns was compared with that of adults. Citrated whole blood was subjected to shear stress (1300 s(-1)) on subendothelial extracellular matrix (ECM)-coated wells in a cone and plate(let) analyzer. Adhered platelets on the ECM were quantitated by image analyzer. Both umbilical cord and neonatal peripheral blood platelets demonstrated more extensive adhesion than adult platelets, and similar aggregate formation on ECM. The ability of neonatal platelets to form aggregates on ECM was confirmed by scanning electron microscopy. Similar activation of neonatal and adult platelets after subjection to shear stress, in the suspension phase, was established by flow cytometry, which showed an increase in fibrinogen binding and a decrease in glycoprotein Ib expression on platelet membrane. The difference in adhesion rates between neonatal and adult platelets was preserved even when the hematocrit level of the neonatal blood was adjusted to that of adults. Reconstitution of neonatal or adult platelet-rich plasma with autologous or heterologous red packed cells yielded no change in adhesion and aggregation. When von Willebrand factor-covered plates were used to prevent deposition of plasma von Willebrand factor on the surface, no difference in platelet adhesion was seen between neonatal and adult blood. In conventional aggregometry assay, the response to ristocetin of washed platelets of either neonatal or adult source was higher on addition of plasma from neonates than from adults. Our data suggest that the extensive neonatal platelet deposition on ECM is mediated by plasma von Willebrand factor, which is known to be more multimerized and, therefore, more active in neonates than in adults. This mechanism may provide balanced primary hemostasis in neonates despite the platelet hyporeactivity to agonists without application of shear stress.

Adult↗

Shear-induced platelet adhesion and aggregation on subendothelium are increased in diabetic patients.

Increased platelet aggregation has been suggested to play a role in the accelerated atherosclerosis of diabetics. However the physiological relevance of the aggregation tests has been questioned. The purpose of this study was to determine platelet activation in diabetic patients, using a novel device--the cone and plate(let) analyzer--to measure shear-induced platelet adhesion and aggregation on extracellular matrix (ECM). Whole blood platelet adhesion and aggregation in patients with noninsulin-dependent diabetes mellitus (n=82) and in nondiabetic controls (n=71) were compared. Clinical and laboratory characteristics of the diabetic patients were analyzed for possible correlation with parameters of platelet activity. Patients with diabetes had a significantly increased platelet activation compared to nondiabetic subjects, demonstrated by an increased adhesion to the ECM (surface coverage, 23% [95% confidence interval, 22-25%] vs. 19% [95% confidence interval, 18-20%], respectively) and an increased average size of the ECM-bound aggregates (54 microm2 [95% confidence interval, 51-57 microm2] vs. 47 microm2 [95% confidence interval, 43-51 microm2], respectively). Platelet adhesion in the diabetic group was found to correlate with triglyceride levels (r=0.36) and hematocrit values (r=0.31) and inversely with high-density lipoprotein cholesterol levels (r=0.30). There were no correlation, however, between parameters of platelet reactivity and duration of diabetes, vascular complications and low-density lipoprotein levels. Our data demonstrate an increased platelet adhesion and aggregation in diabetic patients and suggest a modulatory role of diabetic dyslipidemia.

Adult↗

Oxidation decreases low density lipoprotein association with the subendothelium extracellular matrix.

Atherosclerosis is initiated by accumulation of low density lipoprotein (LDL) in the subendothelium extracellular matrix (ECM) followed by oxidation and scavenger receptor mediated uptake by the vessel wall recruited macrophages. The effect of oxidation on LDL association with the ECM is not yet clear. In the present study we examined the hypothesis that excessive oxidation of LDL results in decreased LDL association with ECM, thereby increasing its accessibility to the scavenger receptor on macrophages. We have studied the relative association of Cu+2 ion oxidized LDL to native LDL with the native or oxidized bovine corneal endothelial cells ECM. Oxidation of LDL decreased its binding to the ECM. The kinetic of this process was characterized by approximately 1 h lag phase followed by a significant decreased binding of 80% after 6.5 h oxidation. This kinetic more closely resembled the pattern of the oxidation product dienals accumulation rather than thiobarbituric acid reactive substance formation. Oxidation of ECM-bound LDL resulted in an increased LDL release from the ECM as a function of Cu+2 ion concentration with a maximal increase of 2-fold at 3 microM. ECM oxidation prior to exposure to LDL resulted in a 30% decrease in LDL binding to the ECM. In conclusion, these results suggest that oxidation processes in the vessel wall result in increased dissociation of ECM-bound LDL, which in turn makes this oxidized LDL more accessible for binding and uptake by macrophages leading to foam cell formation.

Animals↗

Continuous administration of insulin-like growth factor-I and basic fibroblast growth factor does not affect left ventricular geometry after acute myocardial infarction in rats.

We examined the long-term effect of exogenous administration of bFGF and IGF-I on myocardial geometry in 72 Sprague-Dawley male rats subjected to AMI. A preloaded miniature osmotic pump subsequently implanted in the peritoneum for continuous infusion (1 week) of IGF-I, bFGF, IGF-I+bFGF or rat albumin. Six weeks following AMI the rats were killed and cross-section slices were analyzed for left ventricular geometry. No differences were observed between IGF-I-treated, bFGF-treated, IGF-I+bFGF-treated and control groups in all parameters of the left ventricle.

Animals↗

Platelet/endothelial cell adhesion molecule-1 serves as a costimulatory agonist receptor that modulates integrin-dependent adhesion and aggregation of human platelets.

Platelet/endothelial cell adhesion molecule-1 (PECAM-1) is a 130-kD member of the Ig gene superfamily that is expressed on the surface of circulating platelets, monocytes, neutrophils, and selective T-cell subsets. It is also a major component of the endothelial cell intercellular junction. Previous studies have shown that cross-linking PECAM-1 on the surface of leukocytes results in the activation of adhesion molecules of both the beta 1 and beta 2 integrin family. In addition, the process of leukocyte transendothelial migration appears to be mediated, at least in part, by homophilic adhesive interactions that take place between leukocyte and endothelial cell junctional PECAM-1 molecules. However, little is known about the functional role of this membrane glycoprotein in human platelets. In the present study, we examined the effects of PECAM-1 engagement on integrin-mediated platelet-extracellular matrix or platelet-platelet interactions. Bivalent, but not monovalent, anti-PECAM-1 monoclonal antibodies (MoAbs) specific for membrane-proximal Ig-homology domain 6 significantly augmented platelet deposition (increased surface coverage) and aggregation (increased average size) onto extracellular matrix, under both oscillatory or defined low shear flow conditions (200 s-1) in a modified cone and plate viscometer. Moreover, bivalent anti-domain 6 MoAbs were capable of serving as costimulatory agonists to markedly enhance both adenosine diphosphate (ADP)- and platelet activating factor (PAF)-induced platelet aggregation resonses. These antibodies appeared to act via outside-in signal transduction through PECAM-1, as evidenced by the fact that their binding (1) led to conformational changes in the alpha IIb beta 3 integrin complex, (2) induced surface expression of P-selectin, and (3) resulted in the tyrosine phosphorylation of PECAM-1. Together, these data support a role for PECAM-1 in cellular activation and suggest that PECAM-1 may serve as a costimulatory agonist receptor capable of modulating integrin function in human platelets during adhesion and aggregation.

Blood Platelets↗

Cone and plate(let) analyzer: monitoring glycoprotein IIb/IIIa antagonists and von Willebrand disease replacement therapy by testing platelet deposition under flow conditions.

Exposure of citrated whole blood samples to polystyrene plates under flow conditions with the cone and plate(let) analyzer (CPA) results in surface immobilization of plasma von Willebrand factor (vWF) followed by platelet deposition. Staining the plates allows measurement of the percentage of surface covered (SC) by the adhered particles and their average size (AS). Both SC and AS parameters depend on platelet count and hematocrit level and reach maximal values after 2 minutes; only AS is shear rate dependent. Under optimal assay conditions (2 minutes at 1800 sec(-1)) normal blood samples yielded an SC of 14.9% +/- 2.5% and an AS of 39.4 +/- 5.2 microm2. Severe von Willebrand disease (eight patients) yielded low SC (5.2% +/- 2.1%), which was restored to normal by testing with vWF precoated surfaces. Glanzmann's thrombasthenia (six patients) samples demonstrated no adhesion of platelet at all. Blocking of the glycoprotein (GP) IIb/IIIa receptor by the chimeric antibody abciximab, and of the GPIb by a recombinant vWF fragment, have yielded a dose-response inhibition demonstrating the crucial role of these receptors in platelet deposition on polystyrene plates in this system. Evaluation of a patient with severe von Willebrand disease receiving replacement vWF factor VIII therapy revealed a comparable response as tested by both the CPA and the Ricof methods. In vitro testing of the GPIIb/IIIa blocking by a nonpeptidic analogue tirofiban and abciximab revealed a good correlation between the CPA test and the routine aggregometry. Eleven patients treated by abciximab after coronary angioplasty were studied by the CPA during the first 24 hours, demonstrating a marked decrease in SC and AS, with some diversity in the responses. We conclude that the CPA test is suitable for evaluation of primary hemostasis and for monitoring of anti-platelet drugs.

Blood Circulation↗

Basic fibroblast growth factor enhances the growth and expression of the osteogenic phenotype of dexamethasone-treated human bone marrow-derived bone-like cells in culture.

Basic fibroblast growth factor (bFGF) was shown to enhance rat stromal bone marrow cells in culture to produce mineralized bone-like tissue in response to dexamethasone (Dex) treatment (Pitaru et al., J Bone Miner Res 8:919; 1993). The purpose of this study was to explore the effect of bFGF on Dex-treated human stromal bone marrow cells (hSBMC) in culture. Human SBMC from 6 patients were cultured for 14 days (P0) and then subcultured and grown for 28 days in the presence of Dex (10(-8) mol/L). The effect of bFGF on cell proliferation at P0 and protein content, DNA content, alkaline phosphatase activity (ALP), osteocalcin secretion, and formation of mineralized bone-like tissue (MBT) at P1 was analyzed. bFGF treatment resulted in a 2.4-fold increase in cell number at P0 and a concentration-dependent increase in [3H]-thymidine incorporation at P1, reaching a maximum increase of 3.7-fold at a concentration of 0.3 ng/mL. Furthermore, bFGF significantly increased both DNA content (two- to threefold), protein content (five- to sixfold), and the amount of MBT (up to 20-fold) at P1 cultures. Morphological evaluation of the MBT at the electron microscope level revealed a mineralization process along collagen fibrils similar to the natural process. The osteogenic nature of the bFGF-treated cultures was further shown by their ALP activity, as well as osteocalcin secretion in response to 1,25-dihydroxyvitamin D3. In conclusion, bFGF demonstrated a stimulatory effect on the proliferation of Dex-treated hSBMC-derived osteoprogenitors while maintaining their capacity to fully differentiate and form bone-like tissue in culture.

Adolescent↗

Thrombin promotes platelet-mediated melanoma cell adhesion to endothelial cells under flow conditions: role of platelet glycoproteins P-selectin and GPIIb-IIIA.

We investigated the role of platelets in human melanoma cell (line 397) interaction with vascular endothelial cells (ECs) under flow conditions. The ability of the tumour cells to adhere to the EC monolayer was significantly reduced by application of flow at a shear rate of 250 s(-1). A 2.2-fold increase in tumour cell adhesion to ECs under flow was observed upon addition of thrombin receptor agonist peptide (TRAP)-activated platelets but not resting platelets. A similar increase (2.5-fold) in tumour cell adhesion to ECs under flow was observed when the tumour cells were incubated with resting platelets on thrombin-treated ECs. However, thrombin treatment of the ECs alone had no effect on tumour cell adhesion in the absence of platelets. The enhancement of tumour cell adhesion to ECs by TRAP-activated platelets was virtually abolished by blockade of the platelet glycoproteins P-selectin and GPIIb-IIIa by monoclonal antibodies. Blockade of P-selectin also inhibited the direct adhesion of TRAP-activated platelets to ECs, but did not affect the interaction of the tumour cells with platelets immobilized on subendothelial extracellular matrix (ECM). Blockade of GPIIb-IIIa inhibited both platelet-EC and platelet-tumor cell interactions. Our results indicate that tumour cell adhesion to the endothelium under flow is enhanced by platelets under conditions that allow platelet adhesion to ECs. Inhibition studies suggest that activated platelet adhesion to ECs is mediated by P-selectin and GPIIb-IIIA, and tumour cell adhesion to EC-bound platelets--mainly by GPIIb-IIIa.

Animals↗

Cone and platelet analyser (CPA): a new test for the prediction of bleeding among thrombocytopenic patients.

The risk of bleeding among thrombocytopenic patients was evaluated using our new cone and platelet analyser (CPA) test. Using this test, adherence of platelets was quantitated on extracellular matrix and expressed as percent of surface coverage (SC) and the average size (AS) of aggregates. 42 thrombocytopenic patients with ITP (n=23), post chemotherapy (n= 12) and others (n= 7) were tested over a total of 82 visits. On each visit, complete blood count and CPA tests were performed and patients were evaluated for evidence of bleeding (found in 40 visits). Bleeding patients had significantly lower platelet counts (27.4 +/- 22.0 v 47.1 +/- 21.0 x 10(9)/l), lower haematocrit values (30.2 +/- 8.1 v 35.2 +/- 6.6%), lower MPV (6.83 +/-1.89 v 8.98 +/- 1.13 fl), and lower SC (4.87 +/- 3.95 v 10.33 +/-5.48%) and AS (33.99 +/- 14.94 v 52.9 +/- 24.34 microm2). Univariate analysis yielded platelet count < or =20.0 x 10(9)/l, MPV < or =8 fl, haematocrit <35%, SC <5%, AS< or =40 microm2 as significantly associated with bleeding, whereas only MPV and SC were associated with bleeding (OR 6.95, CI 2.25-21.46 and OR 4.27, CI 1.29-14.16, respectively) by multivariate analysis. When taken together, 21/22 of patients (95%) with both low SC (<5%) and low MPV (<8.0 fl) had bleeding symptoms, whereas only 9/43 (21%) patients with both these parameters above these values experienced bleeding symptoms. We conclude that the CPA test and the parameter SC (<5%) together with MPV (< or =8 fl) might be used as independent predictors of bleeding in the management of thrombocytopenic patients.

Adolescent↗

Cementum attachment protein manifestation is restricted to the mineralized tissue forming cells of the periodontium.

The mechanisms that regulate cementogenesis are mainly unknown. A specific cementum attachment protein (CAP) has been recently partially characterized and found to be more efficient in supporting the attachment of alveolar bone cells (ABC) and periodontal ligament cells (PLC) than that of gingival fibroblasts (GF). The purpose of this study was to determine the capacity of human periodontal-derived cells to bind and express CAP and to relate these properties to their capacity to express alkaline phosphatase (AlP) and form mineralized tissue (MTF). ABC, PLC and GF were tested. Human stromal bone marrow cells (SBMC) and a cementoma-derived cell line (CC) served as controls. CAP binding was determined using 125I-CAP. The amount of MTF was assessed by alizarin red staining and image analysis determination of the amount of red-stained material. AlP and CAP expression were examined by histochemistry and immunochemistry, respectively. The highest expression of CAP was observed in CC, followed by PLC and ABC in decreasing order, whereas SBMC and GF did not express CAP. SBMC manifested the highest CAP binding capacity followed by CC, ABC, PLC and GF. MTF and AlP manifestation were greatest in SBMC, followed by ABC, PLC and CC. Collectively the results indicate that CAP binding and secretion are not linked and that CAP manifestation is restricted to periodontal derived cell lineages with the potential of forming mineralized tissues.

Alkaline Phosphatase↗

Basic fibroblast growth factor induces myocardial hypertrophy following acute infarction in rats.

Basic fibroblast growth factor (bFGF) is a potent mitogen which induces growth of collateral vessels in ischaemic and infarcted myocardium. The effect of systemically administered bFGF on left ventricular (LV) function, myocardial hypertrophy and LV remodelling following acute myocardial infarction (MI) have not yet been fully investigated. Thirty Sprague-Dawley male rats were randomized to receive bFGF (0.5 mg) or rat albumin intraperitoneally for 1 week, beginning immediately after the induction of MI. Five animals served as controls and did not undergo any operation. Animals were killed 6 weeks after surgery and the hearts were perfused and fixed at physiological pressure. Transverse cross-sections from infarcted areas were stained with antibodies against proliferating cell nuclear antigen (PCNA) and Masson-trichrome and analysed with a coloured-image analyser for LV area (mm2), LV cavity diameter (mm), infarcted area (%), and wall thickness (mm) in infarcted and non-infarcted regions. LV area was similar in MI rats and in controls (41.7 +/- 6.9 and 43.0 +/- 1.5 mm2, respectively) and was significantly larger in MI bFGF-treated (MI/bFGF) animals (47.6 +/- 7.1 mm2) (P = 0.023). LV cavity diameter was significantly larger in the MI group than in MI/bFGF and control animals (6.0 +/- 0.8, 4.9 +/- 1.4, and 4.4 +/- 0.8 mm, respectively, P = 0.018). Wall thickness in the non-infarcted region was significantly smaller in MI animals (1.4 +/- 0.3 mm) than in MI/bFGF animals (1.6 +/- 0.4 mm) and the control group (1.6 +/- 0.1 mm) (P = 0.015). The ratio between LV cavity diameter/non-MI wall thickness was higher in MI than in control and MI/bFGF groups (4.8 +/- 1.6, 2.7 +/- 0.6 and 3.3 +/- 1.8, respectively, P = 0.03). Proliferating endothelial cells were significantly more abundant in infarcted than in normal areas in both MI and MI/bFGF groups, but with no significant differences between the groups. Intraperitoneal administration of bFGF did not cause any untoward extracardiac effects. Thus, systemic bFGF administration following acute MI in rats prevents dilatation of the LV, induces hypertrophy of the non-infarcted myocardium and exerts no untoward effects on extracardiac organs.

Animals↗

A new method for quantitative analysis of whole blood platelet interaction with extracellular matrix under flow conditions.

A new method and device in which whole blood platelet deposition and aggregation on extracellular matrix (ECM) under defined shear conditions is quantitatively evaluated was developed. A 0.25 mL aliquot of citrated whole blood is placed on ECM and a defined shear rate is applied for 2 min using a cone and plate device. This is followed by staining and measuring the number of stained objects, the percentage of ECM surface covered with stained objects and the average size of the objects using an image analyzer. When normal blood is analyzed, platelet deposition is a shear and a time dependent process, reaching maximal levels within 2 min at high shear rate (1300 s-1) of about 20% surface coverage and average aggregate size of about 40-50 microns 2. These two parameters demonstrated positive correlation with the platelet count and the hematocrit. Studies using samples from patients with von Willebrand disease (vWD) and Glanzmann's Thrombasthenia (GT) were performed and demonstrated the ability of the new method to detect these pathological conditions. Blood samples of vWD patients showed a very low adhesion and aggregation at high shear rate as reflected by very low surface coverage (5.2%) and average particle size of single platelets (21.3 microns2). GT samples at a high shear rate demonstrated surface coverage similar to normal blood samples (21.7%) but with average particle size of single platelets (21.3 microns2). The new method is an alternative method to clinically evaluate platelet function under close to physiological conditions.

Blood Platelets↗

Platelets mediate tumor cell adhesion to the subendothelium under flow conditions: involvement of platelet GPIIb-IIIa and tumor cell alpha(v) integrins.

The aim of our study was to explore the role of platelets and their specific integrin receptors in mediating the interaction of 4 human tumor cell lines (3 melanoma and 1 carcinoma) with the extracellular matrix (ECM) under static and arterial flow conditions. Under static conditions, all 4 cell lines adhered to the ECM. The adhesion capacity of all 4 cell lines was virtually abolished by application of flow during incubation with the ECM. Under static conditions, tumor cell adhesion was not affected by adding platelets to the cell suspension and was slightly reduced by pre-coating the ECM with platelets prior to the addition of tumor cells. In contrast, under flow conditions, platelets significantly increased tumor cell adhesion to the ECM, the enhancing effect being more pronounced when platelets were pre-incubated with the ECM prior to the addition of tumor cells than when incubated simultaneously with the cells. Platelet-mediated tumor cell adhesion under flow was markedly inhibited by blockade of the platelet GPIIb-IIIa or of the tumor cell alpha(v) integrins. Platelets of a Glanzmann thrombastenia (GT) patient were unable to support tumor cell adhesion to the ECM under flow. Our results suggest that the interaction of tumor cells with subendothelium-bound platelets under flow conditions is mediated by platelet GPIIb-IIIa and by tumor cell alpha(v) integrins independently of the nature of the beta subunit.

Animals↗

A collagenous cementum-derived attachment protein is a marker for progenitors of the mineralized tissue-forming cell lineage of the periodontal ligament.

The periodontal ligament (PDL) is a fibrous and cellular connective tissue that mediates tooth attachment to bone, and it comprises fibroblastic and mineralized tissue-forming (MTF) progenitors. The MTF progenitors are believed to give rise to the cementoblastic and osteoblastic lineages. Cementum attachment protein (CAP) is a collagenous cementum-derived protein which binds strongly to osteoblasts, moderately to PDL cells, and weakly to gingival fibroblasts. The aim of the present study was to determine the relationship between the capacity of PDL progenitors to bind CAP and their potential to express alkaline phosphatase (ALP) and form mineralized-like tissue in culture. Cloned human PDL progenitor populations obtained from nine human donors were assayed for their constitutive capacity to bind CAP and express ALP, and for the dexamethasone-induced potential to form mineralized-like tissue in culture in the presence of ascorbic acid and beta-glycerophosphate. Forty percent of the progenitor clones produced mineralized-like tissue. Two patterns of mineralization were observed: a spread and flat pattern similar to that produced by human bone cells in culture and a nodular ridge-like type resembling that formed by human cementoma-derived cells. A direct correlation was found between the percentage of ALP positive cells in each progenitor clone and the amount of mineralized-like tissue formed (r = 0.565). Similar correlations were found between the number of ALP positive cells and the binding capacity of each clone (r = 0.392) and between the CAP binding capacity and mineralized-like tissue formation (r = 0.584). Multiple regression analysis indicated that the constitutive capacity of a clone to bind CAP and express ALP is directly correlated to its dexamethasone-induced potential to form mineralized tissue (r = 0.675). These results indicate that CAP binding and ALP expression can serve as markers for the identification of MTF progenitors in the heterogeneous cultured population of the human periodontal ligament. These data show for the first time that binding capacity to extracellular components of mineralized tissues can be a marker for mineralized tissue-forming progenitors.

Alkaline Phosphatase↗