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Biomedical subjects

Ping Wang

Publications and source records attributed to Ping Wang.

354 records · Page 20Linked to original sources

[Effects of mtDNA deletion associated with abnormal expression in rat cochlear with presbycusis].

OBJECTIVE: To investigate the effects of the common deletion (4834-bp) of mitochondrial DNA (mtDNA) in rat cochlear with presbycusis. METHODS: The mtDNA 4834-bp deletion was analyzed by PCR. The mitochondrial-encoded cytochrome c oxidase subunit I (COXI) transcript level and cytochrome c oxidase (COX) activity were measured by RT-PCR and histochemical methods respectively. RESULTS: The 4834-bp deletion occurred in all the senescent rat cochlear. The COXI transcript level was decreased associated with the decline of COX activity. CONCLUSION: The mtDNA 4834-bp deletion presented in the rat cochlear with presbycusis, which lead to the decrease of COXI transcript level and COX activity, may play an important role in the pathogens of presbycusis.

Animals↗

[Effects of anti-ABL tyrosine kinase intrabody on the growth of K562 cells in nude mice].

OBJECTIVE: To study the effects of anti-ABL tyrosine kinase intrabody on the growth of human chronic myelogenous leukemia (CML) cells in nude mice. METHODS: A recombinant retroviral vector MSCV-ibE-IRES-eGFP was constructed to express intracellular single-chain antibody (intrabody) against ABL tyrosine kinase domain in CML cells. K562 cells were transduced with the retrovirus, eGFP+ cells were then selected by fluorescence-activated cell sorting (FACS). The intrabody mRNA expression was determined by reverse transcription (RT)-polymerase chain reaction (PCR). BCR/ABL and c-ABL protein tyrosine kinase (PTK) activity in the cells was examined. Transduced cells and control group K562 cells were transplanted into nude mice respectively and the tumor sizes were dynamically observed. RESULTS: K562-ibE cell was obtained. Expression of the BCR/ABL and c-ABL protein tyrosine kinase activity of harvested K562-ibE cells were markedly inhibited. At 14, 21 and 28 days after cell injection, the tumor volumes of experimental mice were obviously smaller than that of control mice, about one half of the control groups (P < 0.05). CONCLUSION: The growth of K562-ibE cells was significantly inhibited in vivo. It is possible that inhibition of the BCR/ABL protein tyrosine kinase activity by the intrabody blocked BCR/ABL signal transduction pathway, promoted apoptosis and reduced tumorigenicity of K562 cells in vivo.

Animals↗

[Research about the gray-level correction in DSA].

How to eliminate the background of other tissue and to protrude the blood vessel information is the basic requirements in DSA. Because of the complexity and non-linearity of the X-ray imaging process, the common DSA technique cannot completely remove other tissue's image which lapped over the vessels. By experiments, this paper analyses and corrects the imaging process of the actual DSA system based on the "equivalent single energy" model, and the results indicate the validity of this method.

Algorithms↗

[The studies of sensitivity of genotypes in soybean to lines of Agrobacterium tumefaciens].

The sensitivity of genotypes in soybean to lines of Agrobacterium tumefaciens and the ability of A.tumefaciens infecting to soybean were investigated with hypocotyls of soybean (Jilin30, Jilin43 ,Suinong8, Heinong35 and Dongnong42) and lines of A. tumefaciens LBA4404 and EHA105 which including plasmid pGBI121S4ABC and pGBI4A2B respectively. The results showed that the sensitivity of genotypes in soybean to A. tumefaciens was significantly different. Jilin43 was the most sensitive materials to A. tumefaciens. The ability of A. tumefaciens infecting hypocotyls in soybean was different. LBA4404 including plasmid pGBI121S4ABC was easier to infect hypocotyls of soybean.

English Abstract↗

[The Effect of Different Doses of Aspirin on Platelet Function and Its Clinical Importance]

The aim of this study was to investigate the initial time of platelet inhibiting effect of aspirin (ASA) and the effects of different doses on equilibrium of prostacyclin (PGI(2))-thromboxane B(2) (TXB(2)). The effects of 100 mg and 300 mg ASA on Platelet count, platelet aggregation rate, TXB(2) and PGI(2) were investigated using cross-compare way for 40 aspirin ingestion patients. The results showed that the platelet counts decreased to 33% after 30 minutes of single-dose ASA ingestion of 100 mg and to 25.6% after 60 minutes. TXB(2) and PGI(2) also decreased meanwhile. The platelet counts decreased to 39.5%, 35.5% and 26.6%, respectively with dose of 300 mg on day 1, 2 and 3. The platelet counts decreased to 38.1% and 39.5%, respectively, after 120 minutes with 100 and 300 mg ASA ingestion, without significent difference. In conclusion ASA began to inhibit platelet function after 30 minutes of ingestion, and gave the strongest inhibition after 60 minutes. Continuous ASA ingestion accumulates the inhibitory effect. The single-dose ASA ingestion of 100 and 300 mg have nearly the same inhibitory effects.

Journal Article↗

Assignment of Proton Resonances and Conformational Characterization of Oligodeoxyribonucleic Acid d(CCGTACGG) in Solution.

Lycobetaine prepared from lycorine is a new anticancer agent. The experimental and quantum pharmacological studies revealed that lycobetaine can interact with DNA by intercalation, preferentially into GO base pairs. In order to provide detailed interaction model of lycobetaine-DNA, a self-complementary octanucleotide d(CCGTACGG) was designed and synthesized by using new HELP (high efficiency Liquid phase) According to its nature, the sample was prepared to the desired final concentration by adding salt and buffer solutions. Two-dimensional (1)H-(1)H COSY and NOESY spectra in 99.8% D(2)O and 95% H(2)O were recorded for the duplex, and the NMR techniques of presaturation and WATERGATE were applied to water suppression. Protons of every spin system were identified by their scalar couplings, then through their special couplings all protons in the molecule were assigned except the poorly resolved H5' and H5' ' resonances. The chemical shifts of exchangeable protons and NOE intensities of nonexchangeable protons indicate qualitatively that the d(CCGTACGG) helix is right-handed B-DNA in aqueous solution.

Journal Article↗

Inherited erythrocyte pyruvate kinase deficiency in a beagle dog.

A 1-year-old, female Beagle dog with minimal exercise intolerance was found to have a persistent, severe, and highly regenerative anemia, splenomegaly, and progressive osteosclerosis. Despite near-normal in vitro erythrocyte pyruvate kinase (PK) activity, the authors diagnosed PK deficiency by demonstrating a glycolytic block at the PK step, the lack of normal R-type PK isoenzyme, and the presence of M(2)-type PK in the animal's erythrocytes. The dam had half-normal erythrocyte PK activity, which supports an autosomal recessive mode of inheritance. We conclude from our studies that close similarities exist between erythrocyte PK deficiency in Beagle, Basenji, and West Highland White Terrier dogs and that this form of PK deficiency may be more widespread than previously thought.

Journal Article↗

Enzyme-carrying polymeric nanofibers prepared via electrospinning for use as unique biocatalysts.

Improvement of catalytic efficiency of immobilized enzymes via materials engineering was demonstrated through the preparation of bioactive nanofibers. Bioactive polystyrene (PS) nanofibers with a typical diameter of 120 nm were prepared and examined for catalytic efficiency for biotransformations. The nanofibers were produced by electrospinning functionalized PS, followed by the chemical attachment of a model enzyme, alpha-chymotrypsin. The observed enzyme loading as determined by active site titration was up to 1.4% (wt/wt), corresponding to over 27.4% monolayer coverage of the external surface of nanofibers. The apparent hydrolytic activity of the nanofibrous enzyme in aqueous solutions was over 65% of that of the native enzyme, indicating a high catalytic efficiency as compared to other forms of immobilized enzymes. Furthermore, nanofibrous alpha-chymotrypsin exhibited a much-improved nonaqueous activity that was over 3 orders of magnitude higher than that of its native counterpart suspended in organic solvents including hexane and isooctane. It appeared that the covalent binding also improved the enzyme's stability against structural denaturation, such that the half-life of the nanofibrous enzyme in methanol was 18-fold longer than that of the native enzyme.

Animals↗

Self-assembling of polymer-enzyme conjugates at oil/water interfaces.

Interface-binding enzymes are desirable for biphasic reactions in that they offer simultaneous access to substrates dissolved in both phases across the interface. It has been shown that conjugating water-soluble enzymes with hydrophobic polymers facilitated the assembling of enzymes at oil/water interfaces. In this work, the interfacial assembling of alpha-chymotrypsin conjugated with polystyrene, poly(methyl methacrylate), and poly(l-lactic acid) was examined using the pendant drop method. The interface-assembling process of the conjugates from the organic phase followed a similar pattern of that of native alpha-chymotrypsin from the aqueous buffer phase, i.e., the interfacial tension decreased gradually with time. However, when the conjugates were dispersed in the form of particulates in the aqueous phase, in which the conjugate was insoluble, the assembling occurred faster and the interfacial tension quickly approached zero. It was suspected that the assembling in this case involved two steps, i.e., the adsorption of the particulates and the subsequent rearrangement, dissociation, and redispersion of the conjugates at the interface. The effect of other factors, including the polarity of organic solvent and pH and ionic strength of the aqueous phase, was evaluated. It was found that the polar solvent slightly facilitated the assembling, whereas pH and ionic strength showed minimal effects.

Biochemistry↗

Oxidized and ubiquitinated proteins may predict recovery of postischemic cardiac function: essential role of the proteasome.

This study examined the hypothesis that postischemic levels of oxidized and/or ubiquitinated proteins may be predictive of functional recovery as they may be indicative of activity of the 20S and/or 26S proteasomes, respectively. Subjecting isolated rat hearts to 15 min of ischemia had no effect on 20S- and 26S-proteasome activities; however, both were significantly (p < 0.05) decreased by 70% and 54%, respectively, following 30 min of ischemia and 60 min of reperfusion, changes associated with increased levels of protein carbonyls and ubiquitinated proteins. Preischemic treatment of hearts with the proteasome inhibitor, MG132, resulted in dose-dependent decreases (p < 0.05) in recovery of postischemic function [MG132 (microM), heart rate x pressure product: 0, 11,158 +/- 2,423; 6, 11,400 +/- 3,009; 12, 5,513 +/- 2,225; 25, 2,325 +/- 992] and increased accumulation of ubiquitinated proteins. Preconditioning with repetitive ischemia (IP) or preischemic treatment with nicorandil (Nic) resulted in a significant increase in postischemic 20S-proteasome activity after 60 min of reperfusion (control, 95 +/- 4; IP, 301 +/- 65; Nic, 242 +/- 61 fluorescence units). Only Nic had similar effects on 26S-proteasome activity. These results support the conclusion that a correlation exists between eventual recovery of postischemic function and levels of oxidized and/or ubiquitinated proteins, a phenomenon that may be dependent on activity of the 20S and 26S proteasomes.

Animals↗

Preclinical studies with adrenomedullin and its binding protein as cardiovascular protective agents for hemorrhagic shock.

Traumatic injury is a major, largely unrecognized public health problem in the US that cuts across race, gender, age, and economic boundaries. The resulting loss of productive life years exceeds that of any other disease, with societal costs of $469 billion annually. Most trauma deaths result either from insufficient tissue perfusion due to excessive blood loss, or the development of inflammation, infection, and vital organ damage following resuscitation. Clinical management of hemorrhagic shock relies on massive and rapid infusion of fluids to maintain blood pressure. However, the majority of victims with severe blood loss do not respond well to fluid restoration. The development of effective strategies for resuscitation of traumatic blood loss is therefore critically needed. We have recently discovered that the vascular responsiveness to a recently-discovered potent vasodilatory peptide, adrenomedullin (AM) is depressed after severe blood loss, which may be due to downregulation of a novel specific binding protein, AM binding protein-1 (AMBP-1). Using three different animal models of hemorrhage (controlled hemorrhage with large volume resuscitation, controlled hemorrhage with low volume resuscitation, and uncontrolled hemorrhage with minimum resuscitation), we have shown that cell and organ injury occurs after hemorrhage despite fluid resuscitation. Administration of AM/AMBP-1 significantly improves cardiac output, heart performance and tissue perfusion, attenuates hepatic and renal injury, decreases pro-inflammatory cytokines, prevents metabolic acidosis, and reduces hemorrhage-induced mortality. Thus, administration of AM/AMBP-1 appears to be a novel and useful approach for restoring cardiovascular responses, preventing organ injury, and reducing mortality after hemorrhagic shock.

Adrenomedullin↗

Metabolic disturbances in shock, and the role of ATP-MgCl2 and sex steroids.

Hemorrhage following accidental injuries is a common cause of death in the industrialized world. Moreover, the impact of elective surgery and solid organ transplantation sometimes results in low flow conditions similar to those seen following hemorrhagic shock. A shortage in O(2) availability, or hypoxia, leads to sequential changes in cell metabolism and morphology, including inflammatory responses and the expression of hypoxia-inducible transcription factor-1, which controls the cellular adaptation to hypoxia. These endogenous adaptive responses show that O(2) deprivation is not an unforeseen event for cells. The purpose of this review article is to discuss the pathophysiologic principles of shock and the metabolic alterations that cells undergo during low flow conditions. Moreover, the rationale for therapeutic intervention by administering ATP-MgCl(2) and sex steroids following shock and trauma will also be discussed.

Adenosine Triphosphate↗