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Biomedical subjects

Ping Jin

Publications and source records attributed to Ping Jin.

At least 19 recordsLinked to original sources

Impact of oxidative stress on malignant tumor progression and emerging therapeutic strategies.

Oxidative stress, driven by an imbalance between reactive oxygen species (ROS) production and antioxidant defenses, plays a pivotal role in cancer biology. While persistent, moderately elevated ROS levels can promote genomic instability, tumor progression, and immune evasion, excessive ROS accumulation can overwhelm antioxidant defenses and trigger cancer cell death. Despite promising preclinical findings, clinical translation remains a challenge because of the context-dependent effects of ROS. A deeper understanding of oxidative stress regulation may lead to the development of novel precision medicine strategies, optimizing cancer therapies while minimizing adverse effects. This review highlights the concentration-dependent effects of oxidative stress in tumorigenesis, focusing on its impact on DNA damage, metabolic reprogramming, and immune modulation. We discuss recent advancements in ROS-targeting strategies, including pro-oxidant therapies that exploit redox vulnerabilities in cancer cells and antioxidant-based approaches aimed at mitigating oxidative stress-driven resistance to treatment. Moreover, we examine the interplay between oxidative stress and the tumor microen-vironment, emphasizing its influence on immune surveillance and therapeutic responses. This re-view provides insights into ROS-targeting interventions and their potential in oncologic treatment paradigms.

malignant tumors↗

Pancreatic islet cell therapy for type I diabetes: understanding the effects of glucose stimulation on islets in order to produce better islets for transplantation.

While insulin replacement remains the cornerstone treatment for type I diabetes mellitus (T1DM), the transplantation of pancreatic islets of Langerhans has the potential to become an important alternative. And yet, islet transplant therapy is limited by several factors, including far too few donor pancreases. Attempts to expand mature islets or to produce islets from stem cells are far from clinical application. The production and expansion of the insulin-producing cells within the islet (so called beta cells), or even creating cells that secrete insulin under appropriate physiological control, has proven difficult. The difficulty is explained, in part, because insulin synthesis and release is complex, unique, and not entirely characterized. Understanding beta-cell function at the molecular level will likely facilitate the development of techniques to manufacture beta-cells from stem cells. We will review islet transplantation, as well as the mechanisms underlying insulin transcription, translation and glucose stimulated insulin release.

Animals↗

Comprehensive epitope mapping of the Epstein-Barr virus latent membrane protein-2 in normal, non tumor-bearing individuals.

Latent membrane protein (LMP)-2 is one of the Epstein-Barr virus (EBV)-encoded proteins consistently expressed by nasopharyngeal carcinoma (NPC). EBV-transformed lymphoblastoid cell lines (LCL) have been used in patients with NPC to induce LMP-2-recognizing T cell lines which have been in turn utilized for protein-wide mapping of T cell epitopes. However, comprehensive mapping of naturally recognized LMP-2 epitopes in non tumor-bearing individuals has not been reported. Here, we applied a low sensitivity epitope-defining technique for the identification of LMP-2 CTL responses detectable ex vivo in EBV-experienced individuals. This screening tool has been previously validated by analyzing memory CTL responses to Flu, cytomegalovirus (CMV), and the melanoma associated antigen gp100/Mel17. Peripheral blood monocytes (PBMC) from ten Caucasian and ten Chinese individuals were stimulated ex vivo with pools of nonamer (9-mer) peptides overlapping in a stepwise fashion each single amino acid of the LMP-2 sequence. No obvious differences were observed between the immune response of the two ethnic groups save for those related to the divergence in the ethnic prevalence of HLA haplotypes. Several novel and known LMP-2 epitopes were identified. Reactivity toward at least one LMP-2 epitope was detected in 18 of the 20 donors but no prevalent human leukocyte antigen (HLA)/epitope combination was observed confirming that LMP-2 reactivity in the context of common HLA alleles is more pleiotropic than that of FLU and CMV. We believe that the usefulness of these epitopes occurring naturally in non-cancer bearing patients as reagents for the immunization of patients with early or advanced stage NPC deserves further evaluation.

Amino Acid Sequence↗

Molecular signatures induced by interleukin-2 on peripheral blood mononuclear cells and T cell subsets.

Experimentally, interleukin-2 (IL-2) exerts complex immunological functions promoting the proliferation, survival and activation of T cells on one hand and inducing immune regulatory mechanisms on the other. This complexity results from a cross talk among immune cells which sways the effects of IL-2 according to the experimental or clinical condition tested. Recombinant IL-2 (rIL-2) stimulation of peripheral blood mononuclear cells (PBMC) from 47 donors of different genetic background induced generalized T cell activation and anti-apoptotic effects. Most effects were dependent upon interactions among immune cells. Specialized functions of CD4 and CD8 T cells were less dependent upon and often dampened by the presence of other PBMC populations. In particular, cytotoxic T cell effector function was variably affected with a component strictly dependent upon the direct stimulation of CD8 T cells in the absence of other PBMC. This observation may provide a roadmap for the interpretation of the discrepant biological activities of rIL-2 observed in distinct pathological conditions or treatment modalities.

Journal Article↗

Artemin crystal structure reveals insights into heparan sulfate binding.

Artemin (ART) promotes the growth of developing peripheral neurons by signaling through a multicomponent receptor complex comprised of a transmembrane tyrosine kinase receptor (cRET) and a specific glycosylphosphatidylinositol-linked co-receptor (GFRalpha3). Glial cell line-derived neurotrophic factor (GDNF) signals through a similar ternary complex but requires heparan sulfate proteoglycans (HSPGs) for full activity. HSPG has not been demonstrated as a requirement for ART signaling. We crystallized ART in the presence of sulfate and solved its structure by isomorphous replacement. The structure reveals ordered sulfate anions bound to arginine residues in the pre-helix and amino-terminal regions that were organized in a triad arrangement characteristic of heparan sulfate. Three residues in the pre-helix were singly or triply substituted with glutamic acid, and the resulting proteins were shown to have reduced heparin-binding affinity that is partly reflected in their ability to activate cRET. This study suggests that ART binds HSPGs and identifies residues that may be involved in HSPG binding.

Amino Acid Sequence↗

Common cancer biomarkers.

There is an increasing interest in complementing conventional histopathologic evaluation with molecular tools that could increase the sensitivity and specificity of cancer staging for diagnostic and prognostic purposes. This study strove to identify cancer-specific markers for the molecular detection of a broad range of cancer types. We used 373 archival samples inclusive of normal tissues of various lineages and benign or malignant tumors (predominantly colon, melanoma, ovarian, and esophageal cancers). All samples were processed identically and cohybridized with an identical reference RNA source to a custom-made cDNA array platform. The database was split into training (n = 201) and comparable prediction (n = 172) sets. Leave-one-out cross-validation and gene pairing analysis identified putative cancer biomarkers overexpressed by malignant lesions independent of tissue of derivation. In particular, seven gene pairs were identified with high predictive power (87%) in segregating malignant from benign lesions. Receiver operator characteristic curves based on the same genes could segregate malignant from benign tissues with 94% accuracy. The relevance of this study rests on the identification of a restricted number of biomarkers ubiquitously expressed by cancers of distinct histology. This has not been done before. These biomarkers could be used broadly to increase the sensitivity and accuracy of cancer staging and early detection of locoregional or systemic recurrence. Their selective expression by cancerous compared with paired normal tissues suggests an association with the oncogenic process resulting in stable expression during disease progression when the presently used differentiation markers are unreliable.

Biomarkers, Tumor↗

Surface plasmon resonance of silver nanoparticles on vanadium dioxide.

The localized surface plasmon resonance (SPR) spectrum of silver nanoparticles fabricated on a thermochromatic film, vanadium dioxide (VO2), is studied in this paper. Owing to the temperature-dependent dielectric function of VO2, the SPR band dramatically exhibits temperature dependence in the range of 30-80 degrees C. The peak extinction wavelength, lambda(SPR), blueshifts as temperature increases and reversibly redshifts as temperature decreases. The shift magnitude (DeltalambdaSPR) is strongly dependent on the silver mass thickness, dm; a value of 50 nm of DeltalambdaSPR is achieved for particles (mean diameter 51 nm) with dm=2 nm while a value of 250 nm is achieved for particles (mean diameter 133 nm) with dm=10 nm. Beyond the SPR band, it is interesting to find that the spectral line shape of silver particles is dominated by the imaginary part of the dielectric function of VO2. These results can be interpreted based on dynamical Maxwell-Garnett theory.

Journal Article↗

Chromosomal imbalances in nasopharyngeal carcinoma: a meta-analysis of comparative genomic hybridization results.

Nasopharyngeal carcinoma (NPC) is a highly prevalent disease in Southeast Asia and its prevalence is clearly affected by genetic background. Various theories have been suggested for its high incidence in this geographical region but to these days no conclusive explanation has been identified. Chromosomal imbalances identifiable through comparative genomic hybridization may shed some light on common genetic alterations that may be of relevance to the onset and progression of NPC. Review of the literature, however, reveals contradictory results among reported findings possibly related to factors associated with patient selection, stage of disease, differences in methodological details etc. To increase the power of the analysis and attempt to identify commonalities among the reported findings, we performed a meta-analysis of results described in NPC tissues based on chromosomal comparative genomic hybridization (CGH). This meta-analysis revealed consistent patters in chromosomal abnormalities that appeared to cluster in specific "hot spots" along the genome following a stage-dependent progression.

Journal Article↗

[Cross-sectional study of the relation between carboxypeptidase-H antibody and islet beta cell function in patients with latent autoimmune diabetes in adults].

OBJECTIVE: To explore the relation between carboxypeptidase-H antibody (CPH-Ab) and islet beta cell function in patients with latent autoimmune diabetes in adults (LADA) and to further confirm the diagnostic value of CPH-Ab for LADA. METHODS: Five hundred and forty-five patients who were initially diagnosed as Type 2 diabetes mellitus (T2DM) were tested with CPH-Ab and GAD-Ab by radioligand assay (RLA). T2DM patients, according to CPH-Ab and GAD-Ab status, were divided into CPH-Ab(+) group, GAD-Ab(+) group, and Ab(-) group to compare their islet beta cell function [represented by fasting C-peptide (FCP) and 2h postprandial C-peptide (2hCP)]. The relation between CPH-Ab and islet beta cell function in LADA was analyzed. RESULTS: The fasting C-peptide level in CPH-Ab(+) patients was between that of GAD-Ab(+) patients and that of Ab(-) patients (P<0.05), and the difference was still significant when the 3 groups were stratified with duration of disease (All P<0.05), but not with body mess index (all P>0.05). Corrected by concomitant variables including age, age at onset, duration of disease, and sex, the differences among the 3 groups were statistically significant (both P<0.001). Among the 3 groups FCP was lower than Ab(-) group in CPH-Ab(+) (P<0.05) and both FCP and PCP were lower than Ab(-) group in GAD-Ab(+) group (P<0.05 and P<0.01). The proportions of patients with insulin deficiency in CPH-Ab(+), GAD-Ab(+), and Ab(-) group were 27.6% (8/29), 48.1% (8/52) and 13.5% (54/400), respectively, which were significantly different among the 3 groups (P<0.001). GAD-Ab, BMI, and fasting blood glucose had effects on FCP and PCP in T2DM patients (All P<0.05), while CPH-Ab did not enter the equation in multivariable stepwise regressive analysis (P>0.05). CONCLUSION: The effect of CPH-Ab is less marked than that of GAD-Ab on islet beta-cell function in LADA patients. The value of CPH-Ab for the failure of islet beta-cell function in LADA should be determined prospectively.

Adult↗

An unusual feature of end-substituted model carbon (6,0) nanotubes.

We have examined the effects of substituents on the computed electrostatic potentials V(S)(r) and average local ionization energies I(S)(r) on the surfaces of model carbon nanotubes of the types (5,5), (6,1) and (6,0). For the (5,5) and the (6,1), the effects upon both V(S)(r) and I(S)(r) of substituting a hydroxyl group at one end are primarily localized to that part of the system. For the (6,0) tube, however, a remarkable change is observed over its entire length, with V(S)(r) showing a marked gradation from strongly positive at the substituted end to strongly negative at the other; I(S)(r) correspondingly goes from higher to lower values. Replacing OH by another resonance- donor, NH2, produces similar results in the (6,0) system, while the resonance withdrawing NO2 does the opposite, but in equally striking fashion. We explain these observations by noting that the arrangement of the C-C bonds in the (6,0) tube facilitates charge delocalization over the full length and entire surface of the tube. Substituting NH2 and NO2 at opposite ends of the (6,0) tube greatly strengthens the gradations in both V(S)(r) and I(S)(r). The first hyperpolarizability of this system was found to be nine times that of para-nitroaniline, suggesting possible nonlinear optical applications. [figure: see text]. HF/STO-5G electrostatic potential on outer surface of open (6,0) C72H10NH2NO2. The nitro group is at the right end of the tube, the amino group at the left. In eV: purple is less than 14, blue is between 14 and 15, green is between 15 and 16.5, yellow is between 16.5 and 17.5, and red is more than 17.5.

Carbon↗

[Inhibitory effect of polyethylenimine-mediated transfection of suicide gene HSV-tk with an ovarian-specific promoter on growth of ovarian cancer cell line SKOV3].

BACKGROUND & OBJECTIVE: Improving the transfection efficiency and targeted delivery of gene vector are 2 critical problems in the field of gene therapy. Polycationic polyethylenimine (PEI), as a new kind of gene vector, provides an effective solution. This study aimed to investigate the antitumor and targeted delivery effects of PEI-mediated transfection of suicide gene HSV-tk regulated by ovarian-specific promoter OSP1 on human ovarian carcinoma cell line SKOV3. METHODS: SKOV3 cells were separately transfected with PEI, liposome DOTAP, and naked DNA mediated by plasmid pGL3-Luc; the transfection efficiency was measured by relative luciferase unit (RLU). SKOV3 cells and human hepatocellular carcinoma cell line SMMC7721 were transfected with pOSP1-HSVtk mediated by PEI. Cytotoxicity of ganciclovir (GCV) to SKOV3 and SMMC7721 cells was measured by MTT assay; the concentration of GCV in SKOV3 cells was detected by high performance liquid chromatography (HPLC). Cell apoptosis was detected by flow cytometry (FCM) and TdT-mediated dUTP nick end labeling (TUNEL) technique. RESULTS: RLU was significantly higher in PEI group than in DOTAP and naked DNA groups (187.35+/-6.48 vs. 45.74+/-5.98, and 0.03+/-0.00,P<0.01). Evident GCV cytotoxicity was observed in SKOV3 cells, but negligible in SMMC7721 cells. The concentration of GCV in SKOV3 cells was gradually decreased with treatment prolonging. FCM showed that the apoptotic rate of pOSP1-HSVtk-transfected SKOV3 cells was increased when exposed to GCV for 24, 48, and 72 h [(8.42+/-0.76)%, (18.50+/-1.78)%, (34.80+/-3.46)%]. A lot of apoptotic SKOV3 cells were detected by TUNEL. CONCLUSION: PEI-mediated transfection of suicide gene regulated by ovarian-specific promoter has an in vitro tissue-specific killing effect on ovarian cancer cells, which may improve the efficiency and the targeting of gene therapy.

Adenocarcinoma↗

Selection and validation of endogenous reference genes using a high throughput approach.

BACKGROUND: Endogenous reference genes are commonly used to normalize expression levels of other genes with the assumption that the expression of the former is constant in different tissues and in different physiopathological conditions. Whether this assumption is correct it is, however, still matter of debate. In this study, we searched for stably expressed genes in 384 cDNA array hybridization experiments encompassing different tissues and cell lines. RESULTS: Several genes were identified whose expression was highly stable across all samples studied. The usefulness of 8 genes among them was tested by normalizing the relative gene expression against test genes whose expression pattern was known. The range of accuracy of individual endogenous reference genes was wide whereas consistent information could be obtained when information pooled from different endogenous reference genes was used. CONCLUSIONS: This study suggests that even when the most stably expressed genes in array experiments are used as endogenous reference, significant variation in test gene expression estimates may occur and the best normalization is achieved when data from several endogenous reference genes are pooled together to minimize minimal but significant variation among samples. We are presently optimizing strategies for the preparation of endogenous reference gene mixtures that could yield information comparable to that of data pooled from individual endogenous reference gene normalizations.

Carcinoma↗

[Etiological dissection in common anti-islet autoantibody-negative patients with type 1 diabetes].

OBJECTIVE: To explore the immunological and genetic factors of common anti-islet autoantibody-negative patients with type 1 diabetes. METHODS: Specimens of peripheral blood were collected from 33 common autoantibody (GAD-Ab, IA2-Ab, IAA, TGA and TPO-Ab) negative diabetic patients with new-onset of unprovoked ketosis (or ketoacidosis), and genome DNA was extracted. The antibodies to carboxypeptide-H (CPH) and SOX13 (ICA12) were detected by radioligand assay. The gene mutations of MODY3 (HNF-1alpha) and MODY6 (NeuroD1/Beta2) were detected by PCR-SSCP sequencing. Mitochondrial gene mutations were analyzed with PCR-RFLP. RESULTS: Two (6%) of the patients were SOX13-Ab positive, while none of them was positive for CPH-Ab. Gene mutation detection found one case of a new mutation, R321H (CGC-->CAC) in the exon 5 of HNF-1alpha gene and one case with ND1 mt3316 G-->A mutation in mitochondrial DNA. In addition to the diabetes-associated mutations described above, seven polymorphisms of HNF-1alpha gene, including L17L, I27L, L459L, S487N, IVS5 + 9 C > G, IVS6-42 G > T, and IVS7 + 7 G > A, and one NeuroD1/Beta2 gene polymorphic variant Ala45Thr, were found. CONCLUSION: Autoimmunity and gene mutations (such as MODY3 and mitochondrial genes mutations) may be etiological in a few cases initially diagnosed as autoantibody-negative type 1 diabetes. Autoimmunity and MODY and mitochondrial diabetes should be excluded if idiopathic type 1 (type 1B) diabetes is diagnosed.

Adolescent↗

Mechanism of immune response during immunotherapy.

Tumor immunology embraces an extensive array of biological phenomena that include interactions between neoplastic cells and the innate and adaptive immune response. Among immune cells, T cells have taken the center stage because they can be easily demonstrated to specifically recognize autologous cancer cells. However, their role is limited and other components of the immune response are likely necessary for the completion of cancer rejection. Metastatic melanoma and renal cell carcinoma (RCC) are malignancies strongly predisposed to regress in response to the systemic administration of high-dose interleukin (IL)-2. Several clinical Studies in extensive cohorts of patients have shown that this treatment can induce complete or partial clinical regressions of metastatic disease in 15 to 20% of patients who receive this treatment. Although IL-2 has direct pluri-potent effects on cells with immune and inflammatory function, it remains unexplained which cell subset is implicated in mediating tumor regression. In a quest to characterize the mechanism of action of IL-2 during the course of immunotherapy, we have investigated the early changes in transcriptional profiles of circulating mononuclear cells and microenvironment of melanoma metastases following high dose IL-2 administration (720,000 IU/kg) by serial sampling of blood cells and tumors in the form of fine needle aspirate (FNA). Furthermore, studies are currently ongoing to characterize the proteomic profiling of RCC patients undergoing the same treatment using protein arrays (manuscript in preparation). The predominant activation of genes related to inflammation and activation of mononuclear phagocytes lead us to further characterize this cell subset in the context of stimulation with a panel of soluble factors potentially present in the circulation and tumor microenvironment.

Antibody Formation↗

Overview of melanoma vaccines and promising approaches.

It is difficult to envision anything better than melanoma vaccines to exemplify the effectiveness of modern biotechnology in developing biologically rational therapeutics. Melanoma vaccines can reproducibly induce cytotoxic T lymphocyte (CTL) responses better than any other anticancer therapy. Anticancer vaccines have been labeled by some as ineffective for the simple reason that they only rarely lead to cancer regression. This oxymoron stems from the naïve expectation that CTLs are all that is needed to reject cancer. Little is known about requirements for CTL localization and effector function within the tumor microenvironment. In the future, more attention should be given to events downstream of immunization (afferent arm of immune response) to identify combination therapies likely to facilitate localization and activation of CTL at the receiving end (efferent arm).

Antigens, Neoplasm↗

Cytokine polymorphism and its possible impact on cancer.

Human cancer is an unpredictable disease as is its response to therapy. The intrinsic genetic heterogeneity and instability of cancer cells could in part explain such behavior. However, it is possible that, individual variation in the genetic make-up of humans may affect the relationship between host and cancer cells and, therefore, be, at least in part responsible for this extraordinary variation. Human gene polymorphism has been shown indeed to play a role in immune responses; among the immune-related genes, cytokines are often polymorphic. Some polymorphisms of cytokine and cytokine receptor may have direct functional significance by altering directly and indirectly the level of gene expression and/or its function; other may only demarcate a genetic linkage to a particular haplotype associated with a given clinical condition. The majority of polymorphisms found in cytokines or their receptors are located in the promoter, intronic and 3' untranslated regions. These sequence variations can still affect gene expression and function. In this review will we summarize the current knowledge about the role of cytokine polymorphism in disease and more specifically in cancer.

3' Untranslated Regions↗

Vaccination with T cell-defined antigens.

Tumour immunology encompasses a broad array of biological phenomena including interactions between neoplastic cells and the innate and adaptive immune response. Among immune cells, T cells have taken the centre stage because they can be easily demonstrated to specifically recognise autologous cancer cells. As most tumour-associated antigens are intracellular proteins, T cells appear to be the most suitable tool for cancer-specific attack, as antibodies do not cross the cell membrane and the innate immune response lacks the same level of specificity. Finally, the relative ease in which T cells can be educated through antigen-specific immunisation to recognise cancer cells has elevated them to an even higher stature. In this review, it will be argued that T cells represent a unique anticancer agent, characterised by absolute specificity. Although other therapeutic modalities (antibody-based) have been effectively implemented, a comparison of T cell-based approaches with other modalities goes beyond the purposes of this review and will not be included in the discussion. However, it is obvious that the role of the T cell is limited and other components of the immune response (effector mononuclear phagocytes, natural killer cells, cytokines, chemokines, soluble factors), genetic background and tumour heterogeneity are likely to be necessary for the completion of cancer rejection.

Animals↗