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Ping Cai

Publications and source records attributed to Ping Cai.

At least 19 recordsLinked to original sources

Oxidative and nitrosative stress in trichloroethene-mediated autoimmune response.

Reactive oxygen and nitrogen species (RONS) are implicated in the pathogenesis of several autoimmune diseases. Also, increased lipid peroxidation and protein nitration are reported in systemic autoimmune diseases. Lipid peroxidation-derived aldehydes (LPDAs) such as malondialdehyde (MDA) and 4-hydroxynonenal (HNE) are highly reactive and bind proteins covalently, but their potential to elicit an autoimmune response and contribution to disease pathogenesis remain unclear. Similarly, nitration of protein could also contribute to disease pathogenesis. To assess the status of lipid peroxidation and/or RONS, autoimmune-prone female MRL+/+ mice (5-week old) were treated with trichloroethene (TCE), an environmental contaminant known to induce autoimmune response, for 48 weeks (0.5mg/ml via drinking water), and formation of antibodies to LPDA-protein adducts was followed in the sera of control and TCE-treated mice. TCE treatment led to greater formation of both anti-MDA- and -HNE-protein adduct antibodies and higher serum iNOS and nitrotyrosine levels. The increase in TCE-induced oxidative stress was associated with increases in anti-nuclear-, anti-ssDNA- and anti-dsDNA-antibodies. These findings suggest that TCE exposure not only leads to oxidative/nitrosative stress, but is also associated with induction/exacerbation of autoimmune response in MRL+/+ mice. Further interventional studies are needed to establish a causal role of RONS in TCE-mediated autoimmunity.

Aldehydes↗

Enantioselective synthesis of vinylcyclopropanes and vinylepoxides mediated by camphor-derived sulfur ylides: rationale of enantioselectivity, scope, and limitation.

By a sidearm approach, camphor-derived sulfur ylides 1 were designed and synthesized for the cyclopropanation of electron-deficient alkenes and epoxidation of aldehydes. Under the optimal conditions, the exo-type sulfonium salts 4a and 4b reacted with beta-aryl-alpha,beta-unsaturated esters, amides, ketones, and nitriles to give 1,3-disubstituted-2-vinylcyclopropanes with high diastereoselectivities and enantioselectivities. When the endo-type sulfonium salts 5a and 5b were used, the diastereoselectivities were not changed, whereas the absolute configurations of the products became the opposite to those of the reactions of 4a and 4b. An ylide cyclopropanation of chalcone derivatives with phenylvinyl bromide in the presence of catalytic amount of chiral sulfonium salts 4b and 5b has been developed. The sidearmed hydroxyl group was found to play a key role in the control of enantioselectivity and diastereoselectivity. The origins of the high diastereoselectivity and enantioselectivity were also studied by density functional theory calculations, which reveal the importance of the hydrogen-bonding between the sidearmed hydroxyl group and the substrate in determining the diastereoselectivity and enantioselectivity. The ylides 1 were also successfully applied for the epoxidation of aromatic aldehydes.

Journal Article↗

Autoimmune response in MRL+/+ mice following treatment with dichloroacetyl chloride or dichloroacetic anhydride.

Dichloroacetyl chloride (DCAC) is formed from trichloroethene (TCE), which is implicated in inducing/accelerating autoimmune response. Due to its potent acylating activity, DCAC may convert proteins to neo-antigens and thus could induce autoimmune responses. Dichloroacetic anhydride (DCAA), which is a similar acylating agent, might also induce autoimmune responses. To evaluate if chloroacylation plays a role in the induction of autoimmunity, we have measured the autoimmune responses following treatment with DCAC or DCAA in autoimmune-prone MRL+/+ mice. Five-week-old female mice were injected intraperitoneally (twice weekly) with 0.2 mmol/kg of DCAC or DCAA in corn oil for 6 weeks. Total serum IgG, IgG1, and IgE levels were significantly increased in DCAC-treated mice as compared to controls. These increases corresponded with increases in DCAC-specific IgG and IgG1 levels. Total serum IgM was decreased in both DCAC- and DCAA-treated mice. Antinuclear antibodies, measured as an indication of systemic autoimmune responses, were increased in both DCAC- and DCAA-treated mice. Of eight Th1/Th2 cytokines measured in the serum, only IL-5 was significantly decreased in both treatment groups. The cytokine secretion patterns of splenic lymphocytes after stimulation with antibodies against CD3 (T cell receptor-mediated signal) and CD28 (costimulatory signal) differed between treatment and control groups. Levels of IL-1, IL-3, IL-6, IFN-gamma, G-CSF, and KC were higher in cultures of stimulated splenocytes from either DCAC- or DCAA-treated mice than from controls. The level of IL-17 was only increased in cultures from DCAC-treated mice. Increased lymphocytic populations were found in the red pulp of spleens following treatment with either DCAC or DCAA. In addition, thickening of the alveolar septa in the lungs of DCAC- or DCAA-treated mice was observed. The lung histopathology in exposed mice was consistent with the symptomology observed in welders exposed to DCAC/phosgene. Thickening was more pronounced in DCAC-treated mice. Our data suggest that DCAC and DCAA elicit autoimmune responses in MRL+/+ mice that might be reflective of their chloroacylation potential in vivo.

Acetates↗

Metabolic basis of ethanol-induced cytotoxicity in recombinant HepG2 cells: role of nonoxidative metabolism.

Chronic alcohol abuse, a major health problem, causes liver and pancreatic diseases and is known to impair hepatic alcohol dehydrogenase (ADH). Hepatic ADH-catalyzed oxidation of ethanol is a major pathway for the ethanol disposition in the body. Hepatic microsomal cytochrome P450 (CYP2E1), induced in chronic alcohol abuse, is also reported to oxidize ethanol. However, impaired hepatic ADH activity in a rat model is known to facilitate a nonoxidative metabolism resulting in formation of nonoxidative metabolites of ethanol such as fatty acid ethyl esters (FAEEs) via a nonoxidative pathway catalyzed by FAEE synthase. Therefore, the metabolic basis of ethanol-induced cytotoxicity was determined in HepG2 cells and recombinant HepG2 cells transfected with ADH (VA-13), CYP2E1 (E47) or ADH + CYP2E1 (VL-17A). Western blot analysis shows ADH deficiency in HepG2 and E47 cells, compared to ADH-overexpressed VA-13 and VL-17A cells. Attached HepG2 cells and the recombinant cells were incubated with ethanol, and nonoxidative metabolism of ethanol was determined by measuring the formation of FAEEs. Significantly higher levels of FAEEs were synthesized in HepG2 and E47 cells than in VA-13 and VL-17A cells at all concentrations of ethanol (100-800 mg%) incubated for 6 h (optimal time for the synthesis of FAEEs) in cell culture. These results suggest that ADH-catalyzed oxidative metabolism of ethanol is the major mechanism of its disposition, regardless of CYP2E1 overexpression. On the other hand, diminished ADH activity facilitates nonoxidative metabolism of ethanol to FAEEs as found in E47 cells, regardless of CYP2E1 overexpression. Therefore, CYP2E1-mediated oxidation of ethanol could be a minor mechanism of ethanol disposition. Further studies conducted only in HepG2 and VA-13 cells showed lower ethanol disposition and ATP concentration and higher accumulation of neutral lipids and cytotoxicity (apoptosis) in HepG2 cells than in VA-13 cells. The apoptosis observed in HepG2 vs. VA-13 cells incubated with ethanol appears to be mediated by release of mitochondrial cytochrome c via activation of caspase-9 and caspase-3. These results strongly support our hypothesis that diminished hepatic ADH activity facilitates nonoxidative metabolism of ethanol and the products of ethanol nonoxidative metabolism cause apoptosis in HepG2 cells via intrinsic pathway.

Acyltransferases↗

Pegylated wortmannin and 17-hydroxywortmannin conjugates as phosphoinositide 3-kinase inhibitors active in human tumor xenograft models.

Phosphoinositide 3-kinase (PI3K) is an important target for cancer chemotherapy due to the deregulation of its signaling pathway in a wide spectrum of human tumors. Wortmannin and its analogues are potent PI3K inhibitors whose therapeutic use has been impeded by inherent defects such as instability and toxicity. Pegylation of wortmannin and 17-hydroxywortmannin gives rise to conjugates with improved properties, including a higher therapeutic index. Pegylated 17-hydroxywortmannin (8, PWT-458) has been selected for further development.

Androstadienes↗

[In vitro inhibition of human laryngeal squamous cell carcinoma cell line by 1,25(OH)2D3].

OBJECTIVE: The present study was to investigate the effect of 1,25(OH)2D3 on the proliferation and apoptosis of Lscc-02 laryngeal squamous cell carcinoma cell line. METHOD: Lscc-02 human laryngeal squamous cell carcinoma cell line was treated with 1,25(OH)2D3. Cell proliferation was evaluated by MTT assay, distribution of cell cycle and rate of apoptosis determined by flow cytometry, and cell morphology and structure observed by microscopy. RESULT: The results showed that(10(-10) - 10(-7)) mol/L 1,25(OH)2D3 inhibited the proliferation of Lscc-02 cell line, and the inhibitory rate was positively associated with concentration of 1,25(OH)2D3 and treatment time. Cell cycle arrest in G0 /G1 phase and induction of apoptosis occurred after 1,25(OH)2D3. CONCLUSION: 1,25(OH)2D3 can inhibit proliferation and induce apoptosis in Lscc-02 laryngeal squamous cell carcinoma cell line in vitro, which suggests that 1,25(OH)2D3 will be potential for the therapy of laryngeal squamous cell carcinoma.

Apoptosis↗

[Effect of micronization on the quality of Salvia miltiorrhiza Bge].

OBJECTIVE: The powder characteristic, water extraction amount and active ingredients cryptotanshinone (CTS), tanshinone II A (TS) and protocaechuic aldehyde (PA) were comparatively studies between crude powder and micronized powder to study the application of micronization technology to Salvia miltiorrhiza Bge. METHODS: Salvia miltiorrhiza Bge powedr was characterized by laser diffraction analyzer and scanning electron microscopy. The angle of repose and bulk density was measured. The water extraction was quantified by heated extraction method. The active ingredinents CTS, TS and PA were detected by RP-HPLC after it released from Salvia miltiorrhiza Bge. RESULTS: The differences of particle characteristic and surface modality between crude powder and superfine were significant. Water extraction amount of micronized powder was 1.23 times as that of crude powder. The CTS, TS and PA extraction amount of micronized powder were 1.54, 1.48 and 1.90 times as those of crude powder. CONCLUSION: The extraction content of lipo-solubility and water-solubility active ingredients of Salvia miltiorrhiza Bge. are improved by micronization. Micronization can economize the resource of Salviae miltiorrhiza Bge. The bioavability of Salviae miltiorrhiza Bge. will be improved with the new techonology.

Abietanes↗

Enantiomeric interpenetrating 3D nets with chiral silver helicates.

A new enantiomeric interpenetrating 3D nets with chiral helical coordination silver(i) polymer was achieved via self-assembly using the new ligand modular approach, in which the special helical conformation of the ligand provided the opportunity to translate chirality from one metal center to others.

Ligands↗

PWT-458, a novel pegylated-17-hydroxywortmannin, inhibits phosphatidylinositol 3-kinase signaling and suppresses growth of solid tumors.

Deregulated phosphatidylinositol 3-kinase (PI3K) signaling pathway is widely implicated in tumor growth and resistance to chemotherapy. While a strong rationale exists for pharmacological targeting of PI3K, only a few proof-of-principle in vivo efficacy studies are currently available. PWT-458, pegylated-17-hydroxywortmannin, is a novel and highly potent inhibitor of PI3K in animal models. Upon in vivo cleavage of its poly(ethyleneglycol) (PEG), PWT-458 releases its active moiety 17-hydroxywortmannin (17-HWT), the most potent inhibitor in its class. Here we show that a single intravenous injection of PWT-458 rapidly inhibited PI3K signaling, as measured by a complete loss of AKT (Ser-473) phosphorylation in xenograft tumors grown in nude mice. Following a daily X5 dosing regimen, PWT-458 demonstrated single-agent antitumor activity in nude mouse xenograft models of U87MG glioma, nonsmall cell lung cancer (NSCLC) A549, and renal cell carcinoma (RCC) A498. Efficacious doses ranged from 0.5 mg/kg to 10 mg/kg, achieving a superior therapeutic index over 17-HWT. PWT-458 augmented anticancer efficacy of a suboptimal dose of paclitaxel against A549 and U87MG tumors. Combination treatment of PWT-458 and an mTOR inhibitor, Pegylated-Rapamycin (Peg-Rapa), resulted in an enhanced antitumor efficacy in U87MG. Finally, PWT-458 in combination with interferon-alpha (Intron-A) caused a dramatic regression of RCC A498, which was not achieved by either agent alone. These studies identify PWT-458 as an effective anticancer agent and provide strong proof-of-principle for targeting the PI3K pathway as novel anticancer therapy.

Androstadienes↗

Hygrocins a and B, naphthoquinone macrolides from Streptomyces hygroscopicus.

Two new naphthoquinone macrolides, hygrocins A (1) and B (2), were isolated from the fermentation broth of Streptomyces hygroscopicus. Hygrocin A is not stable due to the presence of an active methylene group (C-22), which undergoes intramolecular aldol condensation with the quinone ring to yield a gamma-lactam derivative, 6. Its structural elucidation was achieved by chemical conversion to 3, an unusual diazomethane derivative, and confirmed by its alkaline hydrolysis product 4, hydrogenation derivative 5, and "degradation" product 6. The structure of hygrocin B was determined by combined chemical and spectroscopic methods.

Lactams, Macrocyclic↗

[Establishment of a HPV-negative cell line derived from xenografted human laryngeal squamous cell carcinoma].

OBJECTIVE: To establish a human laryngeal carcinoma cell line unassociated with human papillomavirus (HPV). METHODS: Viable tissue of a well-differentiated laryngeal squamous cell carcinoma was obtained and tested negative for the presence of HPV by polymerase chain reaction. Minced tissue fragments were then transplanted subcutaneously into nude mice. After two successive passages, the tumor tissue was seeded into culture flasks and incubated in a medium containing 10% fetal bovine serum, insulin and epidermal growth factor. Tumor cell phenotype and molecular features were determined by various methods. RESULTS: A stable cell line, designated as Lscc-02, was successfully established after 86 culture passages. The cells grew as a monolayer with epithelioid features. The cell doubling time was approximately 39.1 hours. The human origin of the tumor cells was confirmed by karyotype analysis. The squamous epithelial phenotype was demonstrated by the immunopositivity of anti-cytokeratin antibodies and ultrastructural presence of tonofilaments and desmosomes. The malignant nature of the cells was documented by their clonal formation in soft-agar and tumorigenicity in nude mice. Lscc-02 cells expressed carcinoembryonic antigen (CEA) and were negative for HPV DNA. CONCLUSION: This newly established Lscc-02 laryngeal squamous cell carcinoma cell line may be a useful model for investigating laryngeal carcinoma unrelated to HPV infection, and the role of HPV in the progression of human laryngeal carcinoma.

Animals↗

[Application of alpha-cyanoacrylate medical adhesive in fixation of intratemporal facial nerve within chitin chamber].

OBJECTIVE: To study the feasibility of alpha-cyanoacrylate medical adhesive in fixation of intratemporal facial nerve when nerve was repaired within chitin chamber, and to investigate the nerve regeneration. METHODS: Nerve defect of 6 mm was made in left intratemporal facial nerves of 48 rabbits. All the defects were bridged with chitin chamber and were fixed by alpha-cyanoacrylate medical adhesive, surgical suture and natural union. Nerve function test and histomorphological examination were carried out at 1 month and 3 months after repair. RESULTS: It was observed that the nerve was fixed firmly to the chamber with no crack or crease by alpha-cyanoacrylate medical adhesive. The regenerated new nerve fibers were more regular and denser and the neurological function recovered much better in the group fixed by alpha-cyanoacrylate medical adhesive than in the groups those fixed by surgical suture and natural union. CONCLUSION: The medical adhesive is strong in adhesion and beneficial to nerve repair; repair of intratemporal facial nerve defect within chitin chamber fixed by alpha-cyanoacrylate medical adhesive is feasible, simple and timesaving.

Animals↗

[Automatic ECG analysis system based on TMS320F206].

An automatic ECG analysis system based on DSP is introduced in this paper. It can fulfill the functions of signal regulation, adaptive filtering, QRS waves positioning, and automatically recognize more than 10 kinds of arrhythmia and report alarm. TI DSP product--TMS320F206 is applied in this system to accomplish the adaptive filtering and automatic diagnosis of arrhythmia for the need of real time signal processing.

Adaptation, Physiological↗