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Biomedical subjects

Jun Chang

Publications and source records attributed to Jun Chang.

16 recordsLinked to original sources

Role of semaphorin 4f in cardiac fibroblasts to regulate matrix production through actin remodeling and YAP/TAZ activation.

Cardiac fibrosis remains a critical determinant of adverse outcomes in heart disease, yet effective anti-fibrotic therapies are lacking. While multiple semaphorin family members participate in cardiovascular pathophysiology, the role of semaphorin 4f (Sema4f) in cardiac fibrosis remains unexplored. This study investigates the role and mechanisms of Sema4f in fibrotic remodeling post-myocardial infarction (MI). We employed flow cytometry to characterize cell type-specific Sema4f expression patterns in post-MI hearts. Lineage-specific knockout mice (fibroblast vs. myeloid) were subjected to left anterior descending ligation to assess functional consequences. Proteomic analysis of Sema4f-deficient cardiac fibroblasts was conducted to identify downstream effectors. Key pathways were subsequently validated using pharmacological inhibitors. We found that Sema4f expression was markedly upregulated during the fibrotic phase post-MI, primarily due to fibroblast activation. Fibroblast-, but not myeloid-, specific Sema4f deletion significantly reduced fibrosis and improved cardiac function. Proteomic profiling revealed that Sema4f deficiency led to downregulation of pro-fibrotic gene expression, which was associated with impaired actin cytoskeletal remodeling and decreased nuclear translocation of YAP/TAZ. Pharmacological inhibition of either actin remodeling or YAP/TAZ activity attenuated fibrosis, whereas YAP/TAZ activation abolished the anti-fibrotic effects of Sema4f knockout. Our study provides the first evidence demonstrating the functional role of Sema4f in cardiac fibroblast activation and fibrosis progression. We have identified a fibroblast-specific mechanism mediated by the Sema4f-actin cytoskeleton-YAP/TAZ axis, offering novel mechanistic insights into fibrosis regulation and revealing a promising therapeutic target for cardiac fibrosis with potential clinical applications.

Animals↗

Efficient amplification of melanoma-specific CD8+ T cells using artificial antigen presenting complex.

In vitro large amplification of tumor-specific cytotoxic T lymphocytes (CTLs) and adoptive transfer of these cells is one of the most promising approaches to treat malignant diseases in which an effective immune response is not achieved by active immunization. However, generating sufficient numbers of tumor-specific CTLs stimulated with autologous antigen presenting cells (APCs) in vitro is one of the most problematic steps in the adoptive cell transfer (ACT) therapy. To circumvent this problem, we have developed an artificial antigen presenting complex (aAPCs) using MHC class I molecules loaded with a melanoma-specific TRP-2 peptide epitope. Our results show that TRP-2-specific CD8+ T cells elicited by immunization with recombinant adenovirus expressing the mini-gene epitope are efficiently stimulated and amplified in vitro to a greater extent by aAPCs than by natural splenic APCs. These aAPC-induced CTLs recognized endogenously processed antigens present on B16F10 melanoma cells. Efficient stimulation and proliferation of antigen- specific T cells was also confirmed using ovalbumin peptide-loaded aAPCs and OT-I TCR transgenic cells. These results demonstrate that prior in vivo immunization, which increases the precursor frequency, simplifies posterior expansion of tumor- specific CD8+ T cells, and aAPCs is superior to autologous APC for in vitro amplification. This "prime and expand" regimen can be an alternative method for large amplification of rare tumor-specific CTLs and aAPCs should be a useful tool for ACT immunotherapy.

Adoptive Transfer↗

Abietane diterpenoid dimers from the roots of Salvia prionitis.

Three abietane diterpenoid dimers, bisprioterones A-C (1-3), were isolated from roots of the Chinese folk medicinal plant Salvia prionitis Hance (Labiatae). Compounds 1-3 possessed two different abietane diterpenoid skeleta, which were linked via either a C-C single bond (1 and 2) or an ether bridge (3). Their structures were elucidated by analysis of 1D and 2D NMR spectroscopic data. The structure of 1 was further confirmed by a single-crystal X-ray diffraction determination.

Abietanes↗

Phenolic glycosides and ionone glycoside from the stem of Sargentodoxa cuneata.

Four phenolic glycosides, cuneatasides A-D (1-4), and one ionone glycoside cuneataside E (5), together with seven known phenolic compounds (6-12) were isolated from the water-soluble constituents of the stem of Sargentodoxa cuneata (Sargentodoxaceae). Their structures were elucidated by spectroscopic analysis. In vitro tests for antimicrobial activity showed compounds 1 and 2 to possess significant activity against two Gram-positive organisms, Staphylococcus aureus and Micrococcus epidermidis.

Anti-Infective Agents↗

Cytotoxic phenolic constituents from the root of Actinidia chinensis.

Twelve phenolic compounds, including four novel skeleton phenolic compounds, planchols A-D (1-4), together with four pairs of isomeric flavanoids (5-12) were isolated from the root of Actinidia chinensis Planch (Actinidiaceae). Their structures were elucidated by spectroscopic analysis and chemical evidence. The structure of 1 was further confirmed by a single-crystal X-ray diffraction determination. Moreover, it was found that 1 and 2 showed remarkable cytotoxic activity against P-388 and A-549 cell lines.

Actinidia↗

Novel cytotoxic seco-abietane rearranged diterpenoids from Salvia prionitis.

Six novel 4,5-seco-rearranged abietane diterpenoids, including one tetracyclic diterpenoid, prionoid A (1), two tricyclic diterpenoids, prionoids B (2) and C (3), and three dicyclic diterpenoids, prionoids D (4), E (5), and F (6), were isolated from the roots of Salvia prionitis Hance (Labiatae). Their structures were elucidated using spectroscopic analysis. The structure of 1 was further confirmed by a single-crystal X-ray diffraction determination. Moreover, it was found that 4 (IC50 = 0.41 microM) and 5 (IC50 = 0.72 microM) showed significant cytotoxic activity against P-388 and A-549 cell lines, respectively.

Abietanes↗

Novel phenolic glycoside dimer and trimer from the whole herb of Pyrola rotundifolia.

From the water-soluble constituents of the whole herb of Pyrola rotundifolia (Pyrolaceae), one novel phenolic glycoside dimer, pyrolaside A (1), and one novel phenolic glycoside trimer, pyrolaside B (2), together with two known phenolic glycosides homoarbutin (3) and isohomoarbutin (4), were isolated. The structures were elucidated by spectroscopic analysis and confirmed with chemical degradation. In vitro tests for antimicrobial activity showed pyrolaside B (2) to possess significant activity against two Gram-positive organisms, Staphylococcus aureus and Micrococcus luteus.

Dimerization↗

[Authentication of Zanthexylum bungeanum Maxin population and adulterants by analysis of rDNA ITS sequences].

AIM: To study the difference of rDNA ITS sequences between Zanthexylum bungeanum populations and their adulterants in main habitants of China so as to provide molecular markers for identifying Zanthexylum bungeanum populations against adulterants. METHODS: rDNA ITS regions (including ITS-1, 5.8S and ITS-2) of 7 populations of Zanthexylum bungeanum which are separate located in Gansu, Shanxi, Sichuan, Hebei provinces, and 3 adulterants were sequenced by PCR products sequencing method or clone sequencing method. RESULTS: The sequences of rDNA ITS region of Zanthexylum bungeanum were reported for the first time, and the sequences of ITS region ranged from 619 to 620 bp, and the length difference amoung Zanthexylum bungeanum and their adulterants is 4 bp. There are 15 variable sites, 12 informative sites and 3 authenticable sites among Zanthexylum bungeanum populations. The difference of rDNA ITS regions amoung Zanthexylum bungeanum and their adulterants is obvious, the number of variable sites is 71. CONCLUSION: The difference of rDNA ITS sequences can be used to authenticate accurately the populations of Zanthexylum bungeanum and their adulterants. These populations of Z. bungeanum which have close relationship always distribute in near geographic areas. The characteristics of rDNA ITS sequence can be used as good markers for authenticating Zanthexylum bungeanum populations form their adulterants.

Base Sequence↗

IL-12 priming during in vitro antigenic stimulation changes properties of CD8 T cells and increases generation of effector and memory cells.

Antigenic and costimulatory signals trigger a developmental program by which naive CD8 T cells differentiate into effector and memory cells. However, initial cytokine signals that regulate the generation of effector and memory CD8 T cells are not well understood. In this study, we show that IL-12 priming during in vitro antigenic stimulation results in the significant increase of both primary and memory CD8 T cell population in mice after adoptive transfer of activated cells. The effect of IL-12 priming is closely associated with qualitative changes in CD8 T cells, such as reduced MHC I tetramer binding and CD69 expression, altered distribution of lipid rafts, decreased cytolytic activity, and less susceptibility to apoptosis. Furthermore, exogenous IL-12 priming improved the intrinsic survival properties of memory CD8 T cells, leading to better protective immunity and vaccine-induced memory CD8 T cell responses. However, the experiments with IL-12p40- and IL-12Rbeta1-deficient mice showed similar levels of primary and memory CD8 T cell responses compared with wild-type mice, implying that endogenous IL-12 and/or IL-12R signaling in vivo is not critical for CD8 T cell immunity. Together, our results suggest that IL-12 can serve as an important, but dispensable regulatory factor for the development of CD8 T cells, and IL-12 priming could be useful in many medical applications.

Adoptive Transfer↗

Improved effector activity and memory CD8 T cell development by IL-2 expression during experimental respiratory syncytial virus infection.

Respiratory syncytial virus (RSV) is a major cause of lower respiratory infection in young children and the elderly. Studies of mice suggest that RSV suppresses the effector activity of CD8 T cells and the development of pulmonary CD8 T cell memory, in which the impaired effector activity could be recovered by in vitro IL-2 treatment. To investigate the effect of in vivo IL-2 expression on RSV immunity, mice were infected with RSV followed by administration of replication-defective adenovirus expressing IL-2. The effector activity of RSV M2-specific CD8 T cells and the development of CD8 T cell memory in the lung was significantly increased by IL-2 expression. Furthermore, the Ab responses against RSV were augmented by IL-2. Interestingly, weight loss and illness caused by RSV challenge were substantially reduced by IL-2 priming, suggesting that the pathogenesis of RSV-related disease could be prevented by IL-2-mediated enhancement of beneficial immune responses. Thus, our results show that IL-2 has potential to be used as a vaccine adjuvant against RSV infection.

Adenoviruses, Human↗

[Studies on tissue culture of Dendrobium lituiflorum].

OBJECTIVE: To select optimal media and conditions for the tissue culture of Dendrobium lituiforum. METHOD: The basic media, light illumination condition, phytohormone, and natural aqueous extracts. were tested and compared. The chlorophyll contents and soluble protein contents were measured. RESULT: N6 medium was suitable for embryo germination and growth. 1/2 MS + NAA 0.5 mg x L(-1) cordd be used as the optimal protocorm multiplying media. Culture 20 days in darkness in advance, and then in light is useful to embryo germinate. 1/2 MS+ NAA 0-0.5 mg x L(-1) is beneficial to protocorm multiplication largely. N6 + 6-BA 2.0 mg x L(-1) + NAA 0.5 mg x L(-1) + 10% potato juice is useful to protocorm differentiation. Phytohormone and potato juice added to the media promoted chlorophyll content and souble protein content. N6 + NAA 0.5 mg x L(-1) + 10% banana juice is the best medium for plantlet rootage and strengthening. CONCLUSION: Concentration of inorganic salt, nitrogen source and illumination condition are important to embryo germination and growth. The nitrogen source type has effect on the protocorm multiplication. The chlorophyll contents and souble protein contents may be index to indicate the growth condition of plantlets, which can help to select the optimal media.

Chlorophyll↗

Efficient induction of T helper 1 CD4+ T-cell responses to hepatitis C virus core and E2 by a DNA prime-adenovirus boost.

Hepatitis C virus (HCV) is an important causative agent of liver disease, but currently there is no available prophylactic vaccine against HCV infection. Here, we investigated the HCV E2- and core-specific T-cell responses induced by DNA (D) and/or recombinant adenovirus (A) vaccines. In single (D versus A) or double immunizations (D-D versus A-A), the recombinant adenovirus vaccines induced higher levels of IFN-gamma secreting T-cell response and cytotoxic T lymphocytes (CTL) response than the DNA vaccines. However, a heterologous (D-A) regimen elicited the highest level of T helper 1 (Th1) CD4(+) T-cell responses. Furthermore, three E2-specific CTL epitopes were mapped using a peptide pool spanning the E2 protein sequence (a.a. 384-713) in BALB/c mice, and one of these (E2 405-414: SGPSQKIQLV) was shown to be immunodominant. Interestingly, no significant differences were found in the repertoire of E2-specific T-cell responses or in the immunodominance hierarchy of the three epitopes induced by D-D, D-A, A-A, and A-D, indicating that the breadth and hierarchy of T-cell responses is independent of these different vaccination regimens. In conclusion, the heterologous DNA prime-recombinant adenovirus boost regimen described offers an efficient promising strategy for the development of an effective T-cell-based HCV vaccine.

Adenoviridae↗

Cooperative transformation of murine fibroblast NIH3T3 cells by hepatitis C virus core protein and hepatitis B virus X protein.

Co-infection with hepatitis B virus (HBV) and hepatitis C Virus (HCV) is associated with increased frequency in the development of hepatocellular carcinoma (HCC). Here, we demonstrated that HBV X protein (HBx) and HCV core cooperate to transform mouse fibroblast NIH3T3 cells. They additively stimulated cell growth, especially in the absence of serum growth factors. In addition, co-expression of HBx and HCV core had additive effects on the induction of anchorage-independent cell growth as well as on the secretion of matrix metalloproteases, which may contribute to increased metastatic potential. Furthermore, the cells expressing both viral proteins exhibited higher tumorigenicity, as demonstrated in athymic nude mice.

3T3 Cells↗

Engineering N-glycosylation mutations in IL-12 enhances sustained cytotoxic T lymphocyte responses for DNA immunization.

Interleukin-12 (IL-12), consisting of p40 and p35 subunits, produces both p70 heterodimer and free p40. p70 is essential for the induction of T-helper 1 (Th1) and cytotoxic T-cell (CTL) immunity, whereas p40 inhibits p70-mediated function. Here, we found that mutations introduced into N-glycosylation sites (N220 of murine p40 and N222 of human p40) reduced secretion of p40 but not p70. Co-immunization of N220 mutant mIL-12 gene with hepatitis C virus (HCV) E2 DNA significantly enhanced long-term E2-specific CD8+ T-cell response and protection against tumor challenge compared with that of wild type. Our results indicate that the ratio of p70 to p40 is important for generating sustained long-term cell-mediated immunity. Thus, the mutant IL-12 could be utilized for the development of DNA vaccines as an adjuvant for the generation of long-term memory T-cell responses.

Animals↗

Respiratory syncytial virus infection suppresses lung CD8+ T-cell effector activity and peripheral CD8+ T-cell memory in the respiratory tract.

Respiratory syncytial virus (RSV) is a major cause of morbidity from respiratory infection in infants, young children and the elderly. No effective vaccine against RSV is currently available and studies of the natural history of RSV infection suggest repeated infections with antigenically related virus strains are common throughout an individual's lifetime. We have studied the CD8+ T-cell response during experimental murine RSV infection and found that RSV inhibits the expression of effector activity by activated RSV-specific CD8+ T cells infiltrating the lung parenchyma and the development of pulmonary CD8+ T-cell memory by interfering with TCR-mediated signaling. These data suggest a possible mechanism to explain the limited duration of protective immunity in RSV infection.

Animals↗

Cytotoxic terpenoid and immunosuppressive phenolic glycosides from the root bark of Dictamnus dasycarpus.

Five new compounds, two degraded terpene glycosides, dasycarpusides A and B (1, 2), and three phenolic glycosides, 2-methoxy-4-hydroxymethylphenol 1-O-alpha-rhamnopyranosyl-(1"-->6')- beta-glucopyranoside ( 3), 2-methoxy-4-acetylphenol 1-O-alpha-rhamnopyranosyl-(1"-->6')-beta-glucopyranoside (4), and 2-methoxy-4-(8-hydroxyethyl)-phenol 1-O-alpha-rhamnopyranosyl-(1"-->6')-beta-glucopyranoside (5), were isolated from the water-soluble constituents of the root bark of Dictamnus dasycarpus Turcz.(Rutaceae). Their structures were elucidated by spectroscopic analysis and chemical evidence. Moreover, it was found that dasycarpuside A (1) showed weak cytotoxic activity against A-549 (human lung adenocarcinoma) cell line, while 4 and 5 showed more remarkable activity of inhibiting the proliferation of T-cells in vitro.

4-Butyrolactone↗