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Biomedical subjects

L Peng

Publications and source records attributed to L Peng.

At least 55 records · Page 3Linked to original sources

Early resistance to therapy during induction in childhood acute lymphoblastic leukemia.

Many patients with acute lymphoblastic leukemia (ALL) are not cured by current therapy because of the development of drug resistance. It is not clear when resistance develops during the growth of the leukemic clone and whether resistant cells are already present at diagnosis or develop later during treatment. Twenty-two uniformly treated children with ALL were studied throughout induction treatment. The size of the leukemic clone in blood and marrow was estimated by limiting dilution PCR analysis, using the rearranged immunoglobulin heavy chain gene as a molecular marker. The decline in the number of leukemic cells was biphasic in virtually all patients. For both marrow and blood, the logarithmic mean of the number of leukemic cells fell by approximately four orders of magnitude during the first 2 weeks, one order of magnitude during the third week, and not at all during the last two weeks of induction treatment. For marrow, the median of the fraction of leukemic cells in each patient that survived per week of treatment was 0.008 for the first 2 weeks, 0.12 for the third week, and 1.4 for the last 2 weeks; for blood, the corresponding figures were 0.003, 0.14, and 0.69, respectively. In individual patients, the results for marrow and blood showed good correlation. The biphasic decline of leukemic cell number suggests that most leukemic cells were sensitive to treatment and were rapidly killed, leaving behind a minor but substantial population of drug-resistant cells. The most likely explanation for this phenomenon is that these resistant cells were already present at diagnosis, their resistance having originated from genetic or epigenetic mutations during prior growth of the leukemic clone.

Antineoplastic Combined Chemotherapy Protocols↗

Prolongation of cardiac allograft survival using dendritic cells treated with NF-kB decoy oligodeoxyribonucleotides.

Dendritic cells (DC) classically promote immune responses but can be manipulated to induce antigen-specific hyporesponsiveness in vitro. The expression of costimulatory molecules (CD40, CD86, CD80) at the DC cell surface correlates with their capacity to induce or suppress immune responses. Expression of these molecules is associated with NF-kB-dependent transcription of their genes. DC tolerogenicity has been associated with impaired NF-kB-dependent transcription of costimulatory genes as well as NF-kB translocation to the nucleus. In this report, we demonstrate that double-stranded oligodeoxyribonucleotides containing binding sites for NF-kB (NF-kB ODN) are efficiently incorporated by bone marrow-derived DC and specifically inhibit NF-kB-dependent transcription of a reporter gene. Moreover, exposure of DC to the oligonucleotide decoys inhibited lipopolysaccharide (LPS)-induced nitric oxide production, a marker of DC maturation. Treatment of bone marrow-derived DC progenitors with NF-kB ODN selectively suppressed the cell-surface expression of costimulatory molecules without interfering with MHC class I or class II expression. Furthermore, NF-kB ODN DC induced allogeneic donor-specific hyporesponsiveness in mixed leukocyte cultures, and this was associated with inhibition of Th1-type cytokine production. Finally, infusion of NF-kB ODN-modified bone marrow-derived DC into allogeneic recipients prior to heart transplantation resulted in significant prolongation of allograft survival in the absence of immunosuppression. Specific interference with NF-kB and other transcriptional pathways involved in immune stimulation in DC using ODN decoy approaches could be one means to promote tolerance induction in organ transplantation.

Animals↗

Fractionation of carbohydrates in Arabidopsis root cell walls shows that three radial swelling loci are specifically involved in cellulose production.

Three non-allelic radial swelling mutants (rsw1, rsw2 and rsw3) of Arabidopsis thaliana L. Heynh. were shown to be specifically impaired in cellulose production. Fractionation methods that identify, characterise and quantify some of the major cell wall polysaccharides in small quantities of seedlings demonstrated that changes in the production of cellulose are much more pronounced than changes in the production of non-cellulosic polysaccharides. A crude cell wall pellet was sequentially extracted with chloroform methanol (to recover lipids), dimethyl sulphoxide (starch), ammonium oxalate (pectins) and alkali (hemicelluloses). Crystalline cellulose remained insoluble through subsequent treatments with an acetic/nitric acid mixture and with trifluoroacetic acid. Cetyltrimethylammonium bromide precipitation resolved neutral and acidic polymers in the fractions, and precipitation behaviour, monosaccharide composition and glycosidic linkage patterns identified the major polysaccharides. The deduced composition of the walls of wild-type seedlings and the structure and solubility properties of the major polymers were broadly typical of other dicots. The three temperature-sensitive, radial swelling mutants produced less cellulose in their roots than the wild type when grown at their restrictive temperature (31 degrees C). There were no significant differences at 21 degrees C where no radial swelling occurs. The limited changes seen in the monosaccharide compositions, glycosidic linkage patterns and quantities of non-cellulosic polysaccharides support the view that the RSW1, RSW2 and RSW3 genes are specifically involved in cellulose synthesis. Reduced deposition of cellulose was accompanied by increased accumulation of starch.

Arabidopsis↗

Increased apoptosis in the heart of genetic hypertension, associated with increased fibroblasts.

OBJECTIVE: The present studies were undertaken to identify apoptosis in cardiomyocytes of genetic hypertension and to study the relationship among apoptosis, aging and blood pressure, and the effect of angiotensin-converting enzyme (ACE) inhibitors on apoptosis. METHODS: Apoptosis in the hearts of spontaneously hypertensive rats (SHR) was identified by electron microscopy (EM) and DNA laddering, and quantified from age 3 weeks to 64 weeks in comparison with normotensive rats (WKY). Fibroblasts and protein products of Bcl-2 and Bax were measured by quantitative immunohistochemistry. SHR were treated with ramipril, an ACE inhibitor. RESULTS: The results showed that: (1) ultrastructural characteristics of apoptosis were observed in cardiomyocytes of SHR, with shrinkage of the cell and condensation of the cytoplasm and chromatin. A DNA ladder was shown; (2) a significant increase in apoptosis in SHR began as early as age 4 weeks and reached a plateau at 16 weeks and maintained at high levels up to 64 weeks. Blood pressure (BP) in SHR started to increase significantly at age 5 weeks; (3) fibroblasts were significantly increased in the heart of SHR; (4) the ratio of Bcl-2/Bax was significantly reduced in SHR; and (6) ramipril effectively reduced apoptosis and fibroblasts, and increased the ratio of Bcl-2/Bax. CONCLUSION: Apoptosis occurs in the cardiomyocytes of genetic hypertension although fibroblasts are increased, and a significant, age-dependent increase in apoptosis is observed. The increase in apoptosis occurs before the difference in blood pressure is detectable. The ACE inhibitor ramipril may be useful for prevention of apoptosis in the heart.

Analysis of Variance↗

Stimulation of Na+,K+-ATPase activity, increase in potassium uptake, and enhanced production of ouabain-like compounds in ammonia-treated mouse astrocytes.

Active potassium (K+) uptake and Na+,K+-ATPase activity were measured in primary cultures of mouse astrocytes. Both parameters were virtually unaffected by acute ammonia treatment but increased after chronic exposure to pathophysiologically relevant concentrations of ammonia (0.3 or 3 mM) for 1-4 days. The increased Na+,K+-ATPase activity after chronic treatment with ammonia was further enhanced in the acute presence of 12 mM K+. Based on these observations and literature data it was hypothesized that the direct effect of ammonia is formation of easily diffusible compound(s) with ouabain-like effect, that upregulation occurs of Na+,K+-ATPase activity and K+ uptake in response to the resulting ATPase inhibition, and that the washing procedure preceding the uptake experiments and the determination of Na+,K+-ATPase activity unmasks the upregulation. To test this hypothesis, the content of compounds with ouabain-like action was measured in media in which astrocytes had been incubated in the presence of 3 mM ammonia for 4 days and in controls to which an additional 3 mM NaCl had been added instead of ammonia. An endogenous, compound with ouabain-like activity was demonstrated both under control conditions and in the ammonia-treated cultures, and the content of this compound was increased by 50% in the ammonia-treated cultures. Preliminary experiments showed that at least part of the released ouabain-like compounds cross-react with authentic ouabain.

Ammonia↗

Developmental regulation of the cell division protein FtsZ in Anabaena sp. strain PCC 7120, a cyanobacterium capable of terminal differentiation.

Heterocysts are terminally differentiated cells devoted to nitrogen fixation in the filamentous cyanobacterium Anabaena sp. strain PCC 7120. We show here that the cell division protein FtsZ is present in vegetative cells but undetectable in heterocysts. These results provide a first rational explanation for the inability of mature heterocysts to undergo cell division.

Anabaena↗

CD4+ T cells in adoptive immunotherapy and the indirect mechanism of tumor rejection.

Tumor-specific CD4+ effector T cells often play a decisive role in immunologic tumor rejection, in some cases without evident co-participation of CD8+ T cells. During such CD4+ T-cell-mediated rejection there is often no detectable direct contact between T cells and tumor cells. Optimally prepared, adoptively transferred CD4+ T cells can reject established tumors with great efficiency even when targeted tumor cells express no MHC Class II molecules, implying that recognition of tumor antigen (Ag) occurs via MHC Class II-expressing host antigen-presenting cells (APC) within the tumor. Because consequent rejection also excludes Ag-specific contact between CD4+ T cells and MHC Class IIneg tumor cells, the most critical CD4+ T-cell-mediated event is likely cytokine release, resulting in an accumulation and activation of accessory cells such as tumoricidal macrophages and lymphokine-activated killer cells. Although such an indirect rejection mechanism may appear antithetical to popular strategies centered on CD8+ cytotoxic T cell (CTL), current evidence suggest that even CD8+ T-cell-mediated recognition/rejection often bypasses direct tumor cell contact and is largely cytokine mediated. While CTL are likely to participate prominently in many models of tumor rejection, indirect mechanisms of recognition/rejection have the theoretical advantage of remaining operative even when individual tumor cells evade direct contact by down-regulating MHC and/or Ag expression.

Animals↗

Anti-human platelet tetraspanin (CD9) monoclonal antibodies induce platelet integrin alphaIIbbeta3 activation in a Fc receptor-independent fashion.

OBJECTIVE: This study characterized the activation of platelet integrin alphaIIbbeta3 induced by two anti-human platelet tetraspanin monoclonal antibodies (mAbs), HI117 and SJ9A4. METHODS: Using 125I-labeled human fibrinogen(Fg), specific Fg binding to human platelets induced by HI117 and SJ9A4 was measured as indication of activation of platelet integrin alphaIIbbeta3 by the two mAbs. RESULTS: HI117 and SJ9A4 (10 microg/ml and 20 microg/ml) induced evident specific Fg binding to human platelets, suggesting that the two mAbs evoked activation of platelet integrin alphaIIbbeta3. Further study indicated that HI117 and SJ9A4 induced integrin alphaIIbbeta3 activation independent of platelet Fc-receptors, and that HI117 and SJ9A4-induced integrin alphaIIbbeta3 activation was inhibited by sphingosing, aspirin, apyrase, and/or PGI2. CONCLUSION: The anti-platelet tetraspanin (CD9) mAbs, HI117 and SJ9A4, can induce platelet integrin alphaIIbbeta3 activation independent of Fc-receptor. Three signaling pathways, i.e. thromboxane, secreted ADP, and cAMP pathways may be involved in the process, with protein kinase C activation presumably being the common step of the three pathways.

Antibodies, Monoclonal↗

Reversible exposure of human platelet fibrinogen receptors by antiplatelet tetraspanin monoclonal antibodies via induction of a conformational change in membrane glycoprotein IIb/IIIa complex.

Antihuman platelet tetraspanin (CD9 antigen) monoclonal antibodies, HI117 and SJ9A4, can induce human platelet aggregation and secretion. As platelet aggregation is mediated by fibrinogen binding to its receptors exposed on platelet glycoprotein IIb/IIIa complex, we, therefore, investigated the induction of platelet fibrinogen receptors by HI117 and SJ9A4. It was found that HI117 and SJ9A4 induced specific fibrinogen binding to human platelets, suggesting that the two monoclonal antibodies evoked obvious exposure of fibrinogen receptors on human platelets. But in the absence of fibrinogen, the monoclonal antibody-exposed fibrinogen receptors gradually lost their capacity to bind fibrinogen and closed. Our results also showed that HI117 and SJ9A4, when activating platelets, caused a conformational change in glycoprotein IIb/IIIa complex, which must contribute to the exposure of functional fibrinogen receptors on this integrin. The effect of HI117 and SJ9A4 on glycoprotein IIb/IIIa complex seems, however, to be indirect, because the HI1117 and SJ9A4-induced fibrinogen binding was reduced by pretreatment of platelets with sphingosine, aspirin, apyrase, and/or PGI2. Taken together, we conclude that the antihuman platelet tetraspanin monoclonal antibodies, HI117 and SJ9A4, reversibly expose platelet fibrinogen receptors via inducing a conformational change in glycoprotein IIb/IlIa complex. Three signaling pathways, that is, thromboxane, secreted ADP, and cAMP pathways may be involved in this process, while protein kinase C activation seems to be the final common step of the three pathways.

Antibodies, Monoclonal↗

Fifteen-year reproducibility of natural head posture: A longitudinal study.

Natural head posture continues to be widely used as the logical reference position for the evaluation of craniofacial morphology. The basic underlying premise is that the long-term clinical reproducibility (variability) of natural head posture is significantly less than the variability of conventional reference planes with respect to the vertical. This study reports the 15-year longitudinal reproducibility of natural head posture. Twenty Chinese adults in Hong Kong, who had initial natural head posture radiographs at age 12 years, were followed up and had repeated cephalograms after 15 years. The method error (reproducibility) after 15 years was 2.2 degrees, which compared favorably with the 5-year reproducibility (method error = 3.0 degrees ) and the 5 to 10 minutes reproducibility (method error = 1.9 degrees ). The individual variability of natural head posture reproducibility increased slightly over time. After 15 years the variance of natural head posture (4.8 degrees [= 2.2(2)]) remains significantly less than the variance of intracranial reference planes to the vertical (25 degrees to 36 degrees ). Cephalometric analyses based on natural head posture therefore remain valid over time.

Adult↗

Expression of 3beta-hydroxysteroid dehydrogenase type I and type VI isoforms in the mouse testis during development.

Six isoforms of the enzyme 3beta-hydroxysteroid dehydrogenase (3betaHSD) have been identified in the mouse, each the product of a distinct gene. Two of these isoforms (type I and type VI) are detectable in the adult testis but changes in their expression during development are unknown. In this study we have examined changes in testicular expression and localization of mRNA encoding the type I and type VI isoforms of 3betaHSD. Total 3betaHSD (type I plus type VI) mRNA was measured by reverse transcription-polymerase chain reaction and showed a peak of expression at day 5 after birth followed by a decline and then a further rise after day 10 that continued up to adulthood. When each isoform was measured individually it was clear that the type I isoform was expressed at all ages from embryonic day 13 to adulthood. In contrast, the type VI isoform was only expressed at significant levels during fetal life on embryonic day 13 and then not again until after day 10 postnatally. Expression of the type VI isoform mRNA increased markedly after day 10 so that by adulthood it was the predominant 3betaHSD isoform present in the testis. Closer examination of the timing of type VI expression showed that the isoform mRNA was first detectable at a significant level on day 11. In-situ hybridization confirmed that the type I isoform is the only one expressed in the fetal/neonatal animal and showed that expression was limited to the interstitial tissue. In the adult, both type I and type VI expression was within the interstitial tissue. The timing of 3betaHSD type VI mRNA expression suggests, strongly, that this isoform is expressed only by adult-type Leydig cells in the mouse testis and that this development starts shortly before day 11. The limited expression of the type VI isoform means that it will be a useful marker in studies of adult Leydig cell development.

3-Hydroxysteroid Dehydrogenases↗

Delivery of erythromycin to subcutaneous tissues in rats by means of a trans-phase delivery system.

Topical administration of antibiotics is associated with reduced risk of systemic side-effects and alteration of gut microflora, and results in higher concentrations of antibiotics at the site of application (and so a lower dose of the drug is required). In conditions such as acne vulgaris, infiltration of the antibiotics into the infected subcutaneous layers is highly desirable. A trans-phase delivery system (TPDS), a mixture of benzyl alcohol, acetone and isopropanol, has been shown to enhance the effective transport of the antibiotic erythromycin across the epidermal barrier and enhance accumulation in the dermis. Two formulations containing N-methyl[14C]erythromycin were compared, a TPDS solution and a propylene glycol solution. They were applied to the dorsal areas of 4-6 week old Fischer rats and tissues were removed for analysis of radioactivity after 2, 4, 8, 12 or 24 h and skin was biopsied and sectioned for autoradiography. The erythromycin dissolved in the TPDS solvent mixture penetrated the stratum corneum and a relatively high concentration was maintained in adjacent tissues for up to 24 h. Penetration was very effective and the erythromycin was detected in significant amounts in the underlying muscle, various organs and later in the urine. In contrast the propylene glycol carrier, probably because of its primarily hydrophilic character, caused the erythromycin to traverse tissue barriers rapidly and appear in the urine. Microautoradiographs qualitatively revealed progressive disappearance of radioactivity from the surface; this correlated with results obtained by direct isotope counting. The route of penetration, in addition to following the interkeratinocyte spaces, seemed to include the perimeter of the pilosebaceous glands and their appendages before diffusion into the capillaries. The propylene glycol solution seemed to traverse the epidermis and the papillary and reticular dermis more rapidly, which might explain its rapid appearance in the urine. These data suggest that the different solutions penetrate the skin by different mechanisms.

Administration, Cutaneous↗

Assessment of the potential pharmacokinetic and pharmacodynamic interactions between erythromycin and argatroban.

Argatroban, a direct thrombin inhibitor, is metabolized in vitro by CYP3A4/5 and therefore may be susceptible to clinically relevant CYP3A drug interactions. The effect of erythromycin, a potent CYP3A4/5 inhibitor, on the pharmacokinetics and pharmacodynamics of argatroban was evaluated in 14 healthy male volunteers in an open-label, crossover study with a 5-day washout between regimens. Argatroban 1 microgram/kg/min was infused alone for 5 hours (regimen A) and again on day 6 of a 7-day oral regimen of 500 mg erythromycin four times daily (regimen B). Serial blood samples for the determination of activated partial thromboplastin time (aPTT) and argatroban concentrations were collected for up to 48 hours following infusion. Mean values for argatroban area under the concentration-time curves (AUC0-inf), maximum concentration (Cmax), and half-life (t1/2) were similar between regimens. Mean aPTT values were not affected significantly by the concomitant administration of argatroban and erythromycin compared to argatroban alone. No serious adverse events or bleeding episodes occurred during the study. These results suggest that oxidative metabolism by CYP3A4/5 is unlikely to be an important in vivo elimination pathway for argatroban. Therefore, coadministration of CYP3A4/5 inhibitors should not require a modification in the dosage of argatroban.

Adolescent↗

[Genetic complementation group analysis of xeroderma pigmentosum patients in China].

OBJECTIVE: To establish skin fibroblast cell strains derived from Chinese xeroderma pigmentosum(XP) patients and to analyze the genetic complementation group and distribution. METHODS: From four XP patients, skin fibroblast cell strains were derived and used for the complementation group analysis by autoradiography and cell-fusion technique. RESULTS: Of the four XP patients from apparently independent families, three were assigned to group C, and one belonged to group E. This is the first report on XP-E patient in China. CONCLUSION: Based on the data from the previous 7 cases and the present 4 cases, the distribution of complementation group in Chinese XP patients known at present is: nine XP-C, one XP-F and one XP-E. Although the number of cases is still limited, XP-C appears to be more frequent in China. This forms a marked contrast to Japanese XP patients, who are dominated by XP-A with infrequent presence of XP-C.

Adolescent↗

P2Z purinoceptor, a special receptor for apoptosis induced by ATP in human leukemic lymphocytes.

OBJECTIVE: To investigate the role of purinergic P2Z receptors for apoptosis of human leukemic lymphocytes mediated by extracellular adenosine triphosphate (ATP). METHODS: A total of 13 B-chronic lymphocytic leukemia (CLL) patients were studied. Exposure of leukemic lymphocytes with (n = 8) or without (n = 5) P2Z receptors to ATP, benzoylbenzoic-ATP (BzATP), 2-methylthio-ATP (2MeSATP), adenosine-5' [gamma-thio] triphosphate (ATP-gamma S), and other nucleosides for 8 h in vitro. Apoptosis was detected by electron microscopy (EM), agarose gel electrophoresis, and the quantitative assay-TdT assay. RESULTS: Apoptosis was detected only in leukemic lymphocytes with P2Z receptors. Using a quantitative assay, ATP-induced DNA strand breaks were found to occur specifically with BzATP, ATP and 2MeSATP, but not for analogue ATP-gamma S nor other nucleosides. Meanwhile, ATP-induced DNA fragmentation was fully blocked by pretreatment with oxidized ATP (OxATP), a compound recently shown to block P2Z receptors. Also, it is shown that the Ca2+/calmodulin complex plays a role in the regulation of the apoptosis induced by ATP on CLL cells, because an antagonist of this complex, 1-[N, O-bis (5-isoquinolinesulfonyl)-N-methyl-L-tyrosyl]-4-phenylpiperazine (KN-62) was found to inhibit the ATP-induced apoptosis. Furthermore, choline, an inhibitor of phospholipase D (PLD), is first shown to partially inhibit ATP-induced apoptosis. CONCLUSION: These data indicate that P2Z receptors on lymphocytes play an important role in the apoptosis induced by ATP in vitro.

Adenosine Triphosphate↗

The relationship between apoptosis and spontaneous hypertension.

OBJECTIVE: To explore the relationship between apoptosis and spontaneous hypertension, and the effect of angiotensin converting enzyme (ACE) inhibitor on apoptosis. METHODS: Male spontaneously hypertensive rats (SHR) and normotensive control rats (WKY) at different ages were used, meanwhile, the treatment of SHR with ramipril, an inhibitor of ACE was administered orally (1 mg.kg-1.d-1) to SHR from 3 to 10 or from 5 to 10 weeks of age. Apoptosis in cardiomyocytes of SHR was quantified by a maximal labeling (Lmax) method and the characteristic features of apoptosis were identified by electron microscopy (EM), in situ labeling of DNA strand breaks with terminal deoxynucleotidyl transferase mediated dUTP end labeling (TUNEL) and autoradiographic analysis of DNA fragments. RESULTS: The results of a quantitative method showed an age-dependent increase in apoptosis in the cardiac tissues of SHR. A significant increase in DNA breaks occurred as early as 4 weeks and continued to increase up to a plateau at 16 weeks in the cardiac tissue of SHR whereas there was no significant change in apoptosis in WKY up to 64 weeks. Moreover, after the treatment of SHR with ramipril, an inhibitor of angiotensin converting enzyme (ACE), from 3 to 10 or from 5 to 10 weeks of age, the DNA fragmentation as well as blood pressure (BP) was reduced significantly compared with that of untreated SHR (P < 0.01), and similar to that of the control WKY. CONCLUSION: There is a significant increase in the apoptosis of SHR cardiac tissues with increasing age, and ramipril can significantly prevent the increase of apoptosis and in blood pressure, which demonstrates that apoptosis may be involved in the pathogenesis of genetic hypertension. The inhibition of apoptosis as well as hypertension by ACE inhibitors may open a new avenue for developing therapeutic approach for hypertension.

Angiotensin-Converting Enzyme Inhibitors↗

[Characteristics of human platelet fibrinogen receptors regulated by anti-CD9 monoclonal antibodies].

OBJECTIVE: To investigate the regulatory effect of two anti-CD9 monoclonal antibodies (McAbs), HI117 and SJ9A4, on human platelet fibrinogen receptors, and explore their potential mechanisms. METHODS: By using 125I-labeled human fibrinogen (Fg), the Fg specifically bound to human platelets induced by HI117 and SJ9A4 was measured, and the changes of anti-CD9 McAbs-exposed Fg receptor in the absence of Fg were also observed. RESULTS: HI117 (10 micrograms/ml) and SJ9A4 (20 micrograms/ml) induced markedly the specific binding of Fg to human platelets, suggesting that the two McAbs evoked obvious exposure of Fg receptors. But in the absence of Fg, the McAbs-exposed Fg receptors gradually lost their capacity to bind Fg and closed. Further study indicated that HI117 and SJ9A4-induced Fg binding was reduced by pretreatment of platelets with sphingosine, aspirin, apyrase, and/or PGI2. CONCLUSION: The anti-CD9 McAbs, HI117 and SJ9A4, can reversibly expose platelet Fg receptors, probably via three signaling pathways, i.e. thromboxane, secreted ADP and cAMP, protein kinase C (PKC) activation presumably being the common passage for the signaling.

Antibodies, Monoclonal↗