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[Effect of some polycyclic aromatic hydrocarbons on gap junction intercellular communication in hepatoma Hep G2 cell culture].

Systems regulating tissue homeostasis are gap junction intercellular communications (GJIC). It is accepted that the down-regulation of GJIP has been due to tumor promoting properties of carcinogens. In this study, effects of some carcinogenic and noncarcinogenic polycyclic aromatic hydrocarbons (PAH) on GJIC were investigated. Noncarcinogenic PAHs do not influence GJIC function. In dose 5 microg/ml carcinogenic PAHs down-regulated GJIC by 70-100% after a 24 h treatment. Dependent on the structure of PAHs, down-regulation was observed after a 1 h treatment. The methyl group in PAH structure decreased down-regulation of GJIC in 1 h experiments, whereas after a 24 h treatment the down-regulation caused by methyl group either contained or not contained PAH was nearly the same. To clarify the role of Ah-receptor in PAH action on GJIC, the effect of 2,3,7,8-tetrachlorodibezdioxin, a specific ligand of Ah-receptor was studied, which appeared to be insignificant. Benzo/a/pyrene does not influence the functioning of gramicidine channels formed in the phospholipid membrane. This result indicates that PAH action on GJIC is not associated with non-specific destruction of the membrane. Thus, two steps are there in PAH action on GJIC: one is fast and caused by specific interaction of unchanged PAH molecule, the other develops in time and is presumably associated with the formation of active metabolites.

Carcinogens↗

Quantitative selectivity of contact-mediated intercellular communication in a metastatic mouse mammary tumor line.

We have examined contact-mediated intercellular communication by measuring the transfer of thioguanine sensitivity to a hypoxanthine phosphoribosyltransferase (EC 2.4.2.8)-negative clone (66cl-4) selected from one subline isolated previously from a spontaneously arising mammary tumor of a BALB/cfC3H mouse. We tested other sublines from the same tumor and unrelated cell types for their ability to serve as 6-thioguanine nucleotide donors to 66cl-4 cells. The degree of communication, measured by the number of donor cells required to reduce the number of thioguanine-resistant colonies, varied with the donor cell type. The 66cl-4 line communicated with the parent cell line from which the thioguanine-resistant cell was selected and with other sublines from the parent tumor, with some unrelated tumor cells, and with some nonneoplastic cells (3T3, hamster kidney and lung fibroblasts, and mouse mammary epithelial cells). There was a quantitative difference in the amount of communication which took place with the various cells tested, but no pattern of difference could be discerned. Line 66cl-4 did not preferentially communicate with cells of epithelial versus fibroblast morphology, nor with tumor versus nontumor cells. The 66cl-4 cells retained the ability of their parent line to form metastatic tumors when injected s.c. into BALB/c mice. A quantitative selectivity of communication is thus expressed in these malignant metastatic cells, but it is apparently unrelated to either the morphological or malignant phenotype of the donor. Contact-mediated communication between tumor subpopulations may differentially affect growth and drug sensitivity within a tumor.

Animals↗

Decreased intercellular communication and connexin expression in mouse aortic endothelium during lipopolysaccharide-induced inflammation.

The role of gap junctional intercellular communication during inflammatory processes is not well understood. In particular, changes in the expression and function of vascular endothelial connexins (gap junction proteins) in response to inflammatory agents has not been fully investigated. In this study, we used intercellular dye transfer methods to assess interendothelial communication in aortic segments isolated from mice treated with or without intraperitoneal lipopolysaccharide (LPS), a potent inflammatory mediator. LPS treatment resulted in a 49% decrease in endothelial dye coupling 18 h after injection. Western blots indicated that LPS treatment also caused a reduction in endothelial connexin40 (Cx40) levels to 33% of control levels. Connexin37 (Cx37) levels decreased only slightly after LPS treatment to 79% of control levels. We also examined endothelial communication in aortic segments isolated from Cx37-/- and Cx40-/- mice. LPS treatment caused a significantly greater decrease in dye transfer in endothelium isolated from Cx37-/- animals compared with endothelium from Cx40-/- animals (71 vs. 26% decrease). LPS injection caused a reduction in Cx40 levels in Cx37-/- endothelium, whereas LPS actually increased Cx37 levels in Cx40-/- endothelium. These results suggest that LPS mediates changes in endothelial gap junction-mediated communication, at least in part, through modulation of Cx40 and Cx37 levels.

Animals↗

Effects of n-6 and n-3 polyunsaturated fatty acids on gap junctional intercellular communication during spontaneous differentiation of the human colon adenocarcinoma cell line Caco-2.

Gap junctional intercellular communication (GJIC), which modulates cell growth and differentiation, may play an important role in tumor growth. Cancer cells have dysfunctional GJIC, but it is not known whether GJIC is mechanistically involved in the carcinogenic and anti-carcinogenic effects of n-6 and n-3 polyunsaturated fatty acids (PUFAs) on colon tumor cells. Caco-2 cells were used as an in vitro model to study the effects of PUFAs on differentiated as well as undifferentiated human colon cells. The GJIC capacity of this cell line increased during spontaneous differentiation. However, no differential effects between n-6 and n-3 PUFAs on GJIC were observed. Short-term incubation with linoleic acid (18:2n-6), alpha-linolenic acid (18:3n-3), arachidonic acid (AA, 20:4n-6), and eicosapentaenoic acid (EPA, 20:5n-3) did not influence GJIC, while long-term incubation (> 10 days) with linoleic acid and alpha-linolenic acid inhibited GJIC of these colon cells. Long-chain metabolites such as AA and EPA were not formed after incubation with linoleic acid and alpha-linolenic acid, thus excluding the involvement of prostaglandins in the observed effects. Although the exact mechanism of GJIC inhibition is unclear, cytotoxicity probably mediated by lipid peroxidation products seems to be related, because incubation with more PUFAs (AA and EPA) completely abolished GJIC.

Adenocarcinoma↗

Influence of lipids on gap-junction-mediated intercellular communication between Chinese hamster cells in vitro.

The influence of lipids on gap-junction-mediated intercellular communication (i.e., metabolic cooperation) between Chinese hamster V79 cells was investigated. Unsaturated free fatty acids (oleate, linoleate, linolenate, palmitoleate, myristoleate, and arachidonate) inhibited metabolic cooperation between 6-thioguanine-resistant, hypoxanthine guanine phosphoribosyltransferase-deficient and 6-thioguanine-sensitive, hypoxanthine guanine phosphoribosyltransferase-proficient V79 cells. Saturated fatty acids (stearate, palmitate, myristate, and arachidate) had no effect. Further characterization of the effects of fatty acids on metabolic cooperation is summarized as follows: a relationship between the degree of unsaturation and the ability of unsaturated fatty acids to inhibit metabolic cooperation could not be established (i.e., inhibition of metabolic cooperation by 18:1 greater than 18:2 = 18:3); longer carbon chain monounsaturated fatty acids are more effective in inhibiting metabolic cooperation (i.e., inhibition of metabolic cooperation by 18:1 greater than 16:1 greater than or equal to 14:1); geometric isomerism is of some importance in determining the efficacy of monounsaturated fatty acids to inhibit metabolic cooperation (i.e., inhibition of metabolic cooperation by cis 18:1 greater than trans 18:1 and cis 16:1 greater than trans 16:1); and the position of the double bond(s) is relatively unimportant (i.e., inhibition of metabolic cooperation by 18:3 = gamma 18:3). Unsaturated diacylglycerol compounds (diolein, dilinolein, and 1-oleoyl-2-acetyl glycerol) inhibit metabolic cooperation; a saturated diacylglycerol compound (distearin) had no effect. The position of the unsaturated fatty acid groups is not of importance in the inhibition of metabolic cooperation by diacylglycerols containing unsaturated fatty acid moieties (i.e., 1,2-diolein and 1,3-diolein are equally efficacious in inhibiting metabolic cooperation; relative inhibition of metabolic cooperation by 18:1 greater than 1-oleoyl-2-acetyl glycerol greater than 1,2-diolein). Alterations of membrane biophysical properties and protein kinase C involvement are discussed as possible mechanisms involved in the inhibition of metabolic cooperation by unsaturated lipid.

Animals↗

Metastatic capacity and intercellular communication between normal cells and metastatic cell clones derived from a rat mammary carcinoma.

Three highly metastatic clones and two weakly metastatic clones were obtained from a spontaneously arising mammary carcinoma in an SHR rat. The difference in their capacity to generate metastatic ability was recognized when the tumor cells were implanted s.c. but not when they were implanted i.v. This evidence possibly indicates that the difference in the metastatic capacity of these clones is caused by different potential for detachment from the primary site and for intravasation during the various steps of metastasis. There are no differences between highly and weakly metastatic clones with regard to their in vitro growth characteristics (doubling time, saturation density, plating efficiency, etc.), homotypic aggregation, and adhesiveness to plastic matrices and fibroblast monolayers. Therefore, we used a dye transfer method to examine the relationship between the metastatic capacity of tumor cells and the capacity of tumor cells to make junctional communication with normal fibroblasts. We found that the incidence of intercellular communication between weakly metastatic clone cells and fibroblasts (derived from normal s.c. tissues and tumor tissues) was significantly higher than that between highly metastatic clone cells and fibroblasts. These results suggest that junctional communication between tumor cells and normal fibroblasts may play a part in the early stage of cancer metastasis.

Animals↗

Gap junctional intercellular communication in bovine corneal endothelial cells.

Gap junctions and/or paracrine mediators, such as ATP, mediate intercellular communication (IC) in non-excitable cells. This study investigates the contribution of gap junctions toward IC during propagation of Ca(2+) waves in cultured bovine corneal endothelial cells (BCEC) elicited by applying a point mechanical stimulus to a single cell in a confluent monolayer. Changes in [Ca(2+)](i) were visualized using the fluorescent dye Fluo-4. The area reached by the Ca(2+) wave, called the active area (AA), was determined as a measure of efficacy of IC. RT-PCR and Western blotting showed expression of Cx43, a major form of connexin, in BCEC. In scrape-loading (using lucifer yellow) and fluorescence recovery after photobleaching (FRAP; using carboxyfluorescein) protocols, significant dye transfer of the hydrophilic dyes was evident indicating functional gap junctional IC (GJIC) in BCEC. Gap27 (300 microM), a connexin mimetic peptide that blocks gap junctions formed by Cx43, reduced the fluorescence recovery in FRAP experiments by 19%. Gap27 also reduced the active area of the Ca(2+) wave induced by point mechanical stimulation from 73,689 microm(2) to 26,936 microm(2), implying that GJIC contribution to the spread of the wave is at least approximately 63%. Inhibitors of ATP-mediated paracrine IC (PIC), such as a combination of apyrase VI and apyrase VII (5U/ml each; exogenous ATPases), suramin (200 microM; P2Y antagonist), or Gap26 (300 microM; blocker of Cx43 hemichannels) reduced the active area by 91%, 67%, and 55%, respectively. Therefore, estimating the contribution of GJIC from the residual active area after PIC inhibition appears to suggest that GJIC contributes no more than approximately 9% towards the active area of the Ca(2+) wave. Gap27 did not affect the enhancement in active area induced by ARL-67156 (200 microM, ectonucleotidase inhibitor), ATP release induced by point mechanical stimulation, and zero [Ca(2+)](o)-induced lucifer yellow uptake, indicating that the peptide has no influence on PIC. Exposure to Gap27 in the presence of PIC inhibitors led to a significant further inhibition of the Ca(2+) wave. The finding that the residual active area after inhibition of PIC by apyrases was much smaller than the reduction of the active area by Gap27, provides evidence for interaction between GJIC and PIC. These findings together suggest that functional gap junctions are present in BCEC, that both GJIC and PIC contribute significantly to IC, and that the two pathways interact.

Adenosine Triphosphate↗

Screening of anti-hypoxia/reoxygenation agents by an in vitro method. Part 2: Inhibition of tyrosine kinase activation prevented hypoxia/reoxygenation-induced injury in endothelial gap junctional intercellular communication.

In this study, we demonstrated that hypoxia/reoxygenation (H/R) induced an injury in gap junctional intercellular communication (GJIC) after 2 h of reoxygenation in cultured HUVEC. Free radical scavenger (DMSO) and antioxidant (SOD) did not prevent this GJIC injury at all. Protein kinase C inhibitor (calphostin C) partly blocked this injury. However, the protein tyrosine kinase (PTK) inhibitor genistein completely inhibited this GJIC injury. Compounds 1 [laxogenin-3-O-alpha-L-arabinosyl-(1-->6)- beta-D-glucopyranoside], 2 (macrostemososide A), 3 [laxogenin-3-O-beta-D-xylopyranosyl-(1-->4)-alpha- L-arabinopyranosyl-(1-->6)-beta-D-glucopyranoside], 4 (chinenoside II), 5 (beta-sitosterol), 6 (daucosterine), 7 (ginsenoside-Rd), 29 (isocumarine), 52 (icariin), 53 (icariside), and 54 (icaritin), which showed obvious influence on H/R-induced PTK activation as stated in Part 1 (except 1), were explored for their effects on GJIC. The results showed that compounds 2-7 and 52-57 partly protected H/R-induced GJIC injury. Compounds 5 and 6 (especially 5), which showed the strongest inhibitory effects on PTK activation, completely blocked H/R-provoked GJIC injury. Compound 1, which did not influence PTK activation, failed to prevent this GJIC injury. In contrast, compound 29, which significantly promoted PTK activation, enhanced this H/R-induced GJIC injury further. Western blotting of connexin 43, an important gap junctional protein for modulating GJIC in HUVEC, revealed that interference with the gap junctional protein might be the most direct mechanism for compounds 2, 5, 29, and 53 to affect H/R-injured GJIC.

Cell Communication↗

Effect of DDT on hepatic gap junctional intercellular communication in rats.

The effects of in vivo exposure to DDT on hepatic gap junctional intercellular communication (GJIC) and connexin gene/protein expression in Sprague-Dawley rats were examined by in vivo/in vitro dye-transfer assay, immunohistochemical staining, and by Western and Northern blot analyses. In the dose-response study, three dose levels of DDT (5, 25 and 50 mg/kg/day) were administered orally to rats once a day for 2 weeks. The average size of the dye spread after injection of Lucifer Yellow and the area of Cx32 spots per hepatocyte decreased in a dose-dependent manner, but there was no effect on the number of Cx32 spots per hepatocyte. In the time-course study, DDT (50 mg/kg/day) was administered orally once a day for up to 6 weeks. Hepatic GJIC decreased at week 1 but recovered at week 6. The average area of Cx32 spots per hepatocyte gradually decreased at weeks 2 and 4, and remained at the same level at week 6, correlating with the decreased Cx32 protein level in plasma membranes. The average area of Cx26 spots per hepatocyte in the peripheral zones clearly decreased at week 1, but quickly recovered at week 2 and increased at week 6; however, no clear change of the Cx26 protein level in plasma membranes was observed. No changes of Cx32 and Cx26 mRNA levels were observed in DDT groups. These results suggest that DDT, a liver tumor-promoting agent, inhibits hepatic GJIC in vivo dose-dependently in rats and that aberrant Cx32 and Cx26 protein expression and/or localization may be responsible for this effect.

Animals↗

Frequent reduction of gap junctional intercellular communication and connexin43 expression in human and mouse lung carcinoma cells.

The reduced gap junctional intercellular communication (GJIC) and gap junction protein (connexin) expression that have been noted in many neoplastic cell types may contribute to the neoplastic phenotype. We assessed GJIC (by fluorescent dye micro-injection) and connexin expression (by Northern blotting, Western blotting and immunohistochemistry) in five mouse and 17 human lung carcinoma cell lines; both measures were lower in neoplastic cells compared to non-transformed lung epithelial cells. Other connexins were not detected in these cells. Co-culture experiments indicated that carcinoma cell lines able to transfer dye among themselves (homologous GJIC) had little capacity for dye-coupling with non-transformed cells (heterologous GJIC). Southern blot analyses indicated that reductions in GJIC and connexin43 expression were not due to deletions or rearrangements of this gene, but were more likely accounted for by transcriptional down-regulation and/or post-transcriptional factors. No correlations between GJIC and known oncogene and tumor suppressor gene alterations in the human lung carcinoma cells were apparent, suggesting that other mechanisms down-regulate GJIC in these cells. Since the neoplastic cell lines exhibited low GJIC (either homologous or heterologous), this characteristic may be involved in expression of the neoplastic phenotype.

Adenocarcinoma↗

Intercellular communication, homeostasis, and toxicology.

The article highlighted in this issue is "Inhibition of Gap Junctional Intercellular Communication by Perfluorinated Compounds in Rat Liver and Dolphin Kidney Epithelial Cell Lines in Vitro and Sprague-Dawley Rats in Vivo" by W. Hu, P. D. Jones, B. L. Upham, J. E. Trosko, C. Lau, and J. P. Giesy (pp. 429-436).

Animals↗

Inhibition of gap junctional intercellular communication by perfluorinated compounds in rat liver and dolphin kidney epithelial cell lines in vitro and Sprague-Dawley rats in vivo.

Gap junctional intercellular communication (GJIC) is the major pathway of intercellular signal transduction, and is thus important for normal cell growth and function. Recent studies have revealed a global distribution of some perfluorinated organic compounds, especially perfluorooctane sulfonic acid (PFOS) in the environment. Because other perfluoroalkanes had been shown to inhibit GJIC, the effects of PFOS and related sulfonated fluorochemicals on GJIC were studied using a rat liver epithelial cell line (WB-F344) and a dolphin kidney epithelial cell line (CDK). In vivo effects on GJIC were studied in Sprague-Dawley rats orally exposed to PFOS for 3 days or 3 weeks. Effects on GJIC were measured using the scrape loading dye technique. PFOS, perfluorooctane sulfonamide (PFOSA), and perfluorohexane sulfonic acid (PFHA) were found to inhibit GJIC in a dose-dependent fashion, and this inhibition occurred rapidly and was reversible. Perfluorobutane sulfonic acid (PFBS) showed no significant effects on GJIC within the concentration range tested. A structure activity relationship was established among all 4 tested compounds, indicating that the inhibitory effect was determined by the length of fluorinated tail and not by the nature of the functional group. The results of the studies of the 2 cell lines and the in vivo exposure were comparable, suggesting that the inhibitory effects of the selected perfluorinated compounds on GJIC were neither species- nor tissue-specific and can occur both in vitro and in vivo.

Alkanesulfonic Acids↗

The behavior of cells during the evaluation of gap junctional intercellular communication by metabolic cooperation assay.

The behavior of cells during the assessment of gap junctional intercellular communication (GJIC) by metabolic cooperation assay was studied, either under standard conditions, or with the simultaneous addition of an inhibitor of GJIC-ethylene glycol, and eventually plus dibutyryl cyclic adenosine monophosphate. Generally, the behavior of cells in the course of the assay did not depend significantly on the combination of drugs used. Cell locomotion during the assay was minimal, and consequently the results depended, almost solely on the probability of mutual contact between donor and recipient cells during the seeding. The first significant decrease in recovery of recipient cells, that is a detectable GJIC, was observed 30 min after the assay had started. Final results of the assay depended on the first 12 h of the experiment, in which the maximum decrease in the recovery of recipient cells, that is the maximum GJIC, was reached. The longer duration of the assay did not affect the results significantly.

Animals↗

Connexin 26-mediated gap junctional intercellular communication suppresses paracellular permeability of human intestinal epithelial cell monolayers.

In some cell types, gap junctional intercellular communication (GJIC) is associated with tight junctions. The present study was performed to determine the roles of GJIC in regulation of the barrier function of tight junctions. Caco-2 human colonic cells were used as a monolayer model, and barrier function was monitored by measuring mannitol permeability and transepithelial electrical resistance (TER). The monolayers were chemically disrupted by treatment with oleic acid and taurocholic acid. Western blotting analyses were performed to evaluate the protein levels of connexins, which are components of gap junctional intercellular channels. Cx26 expression was detected in preconfluent Caco-2 cells, and its level increased gradually after the monolayer reached confluency. These results prompted us to examine whether overexpression of Cx26 affects barrier function. Monolayers of Caco-2 cells stably expressing Cx26 showed significantly lower mannitol permeability and higher TER than mock transfectants when the monolayers were chemically disrupted. The levels of claudin-4, an important component of tight junctions, were significantly increased in the stable Cx26 transfectant. These results suggest that Cx26-mediated GJIC may play a crucial role in enhancing the barrier function of Caco-2 cell monolayers.

Caco-2 Cells↗

Gap junctional intercellular communication and connexin expression in normal and SV 40-transformed human liver cells in vitro.

The gap junction intercellular communication (GJIC) capacity of two normal human liver-derived epithelial cell strains and their SV40 large T oncogene-transformed counterparts was examined. In homologous cultures the GJIC capacity of the transformed cells was considerably less than the parental cells. In heterologous cultures, transformed cells appeared to be able to form GJIC channels with normal cells. Only non-transformed cells expressed connexin (cx) 43 gene and cx 26 or cx 32 transcripts were not detectable in any cell strains tested. When GJIC was assayed in the presence of the phorbol ester tumour promoter 12-O-tetradecanoylphorbol-13- acetate (TPA), all four strains showed a marked sensitivity to TPA in inhibitory activity at 1-10 ng/ml. In contrast to a rat liver epithelial cell line, this effect of TPA did not appear to become refractory even after 24 h exposure. These studies demonstrate that GJIC of human liver cells in culture can be decreased by viral oncogene and tumour promoter action. Such disturbance may be an important component of the carcinogenic activity of these agents.

Adult↗

Effect of tumor-conditioned medium on intercellular communication and proliferation of Balb/c 3T3 cells.

The possible role of tumor cell-derived factors in the regulation of gap junctional intercellular communication and proliferation of fibroblasts was studied in a model system of Balb/c 3T3 cells growing in tumor conditioned medium by Lucifer Yellow CH dye-transfer and BrdU incorporation assays. Six to 24 h incubation of Balb/c 3T3 cells in a medium conditioned by WiDr adenocarcinoma cells enhanced the gap junctional communication between the cells by 25-40% as revealed by intercellular transfer of a fluorescent dye Lucifer Yellow CH. Simultaneously the cell proliferation rates were examined and found to be reduced by 23% at 24 h treatment. Since adenocarcinoma cells are known to secrete different growth factor-like polypeptides into their conditioned medium, we suppose that tumors that produce these molecules might alter their host environment through the enhancement of cell-cell communication thereby facilitating the exchange of modulatory factors.

3T3 Cells↗

Effective reduction of neuronal death by inhibiting gap junctional intercellular communication in a rodent model of global transient cerebral ischemia.

Gap junctions assemble astrocytes into syncytia, allowing exchange of metabolites, catabolites, and second-messenger molecules. Connexin43 is the predominant connexin of astrocytic gap junctions. The distribution of gap junction protein connexin43 was analyzed in different subfields of the hippocampal formation as a function of time after transient forebrain ischemia. One decisive key step in understanding why an ischemic insult gradually expands may be to establish how gap junction channels permit dying cells in the ischemic focus to communicate, in particular, with viable cells. The role of gap junctional intercellular communication in the hippocampus under ischemic conditions could be decisive for cell death propagation. We found that the vulnerable CA1/CA2 subfields have a higher density of gap junctions than the resistant CA3/CA4 areas, that changes in the distribution of connexin43 immunoreactivity may correlate with the phenomenon of selective vulnerability, and that inhibition of astrocytic gap junction permeability by octanol restricts the flow of undesirable neurotoxins that could potentially exacerbate neuronal damage. This provides a novel perspective for analysis of the pathophysiology of cerebral ischemia.

Animals↗

Herpes simplex virus-type 2 infectivity and agents that block gap junctional intercellular communication.

In rat liver epithelial (WB) cells, the protein kinase C inhibitor H7 blocked gap junctional intercellular communication (GJIC) and reduced virus infectivity. Octanol, 18-beta-glycyrrhetinic acid, and staurosporine, agents that reduce GJIC, had no effect upon virus infectivity. Previous studies demonstrated that herpes simplex virus-type 2 (HSV-2) infection was accompanied by attenuated GJIC. Of agents tested, only H7 reduced plaque forming unit (pfu) ability in a dose-dependent manner with 100% plaque reduction at 40 microM without evidence of cytotoxicity. Dye transfer indicated that H7 decreased GJIC, although Western blotting revealed that it did not alter phosphorylation of the gap junction protein, connexin 43 (Cx43). Using indirect immunofluorescence, Cx43 was found to localize in membrane plaques in uninfected cells and H7 did not alter this distribution. However, Cx43 was lost from the membrane at 24h in both H7-treated and untreated cells infected with HSV-2. Viral infection increased serine phosphorylation, particularly in the nuclear region, and this effect was reduced following H7 treatment. Thus, H7 attenuated both GJIC and infectivity of HSV-2 in WB cells but the anti-viral effects were due to reduced nuclear protein phosphorylation rather than alterations in phosphorylation or localization of Cx43.

Animals↗