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The dynamics and mechanics of endothelial cell spreading.

Cell adhesion to extracellular matrix is mediated by receptor-ligand interactions. When a cell first contacts a surface, it spreads, exerting traction forces against the surface and forming new bonds as its contact area expands. Here, we examined the changes in shape, actin polymerization, focal adhesion formation, and traction stress generation that accompany spreading of endothelial cells over a period of several hours. Bovine aortic endothelial cells were plated on polyacrylamide gels derivatized with a peptide containing the integrin binding sequence RGD, and changes in shape and traction force generation were measured. Notably, both the rate and extent of spreading increase with the density of substrate ligand. There are two prominent modes of spreading: at higher surface ligand densities cells tend to spread isotropically, whereas at lower densities of ligand the cells tend to spread anisotropically, by extending pseudopodia randomly distributed along the cell membrane. The extension of pseudopodia is followed by periods of growth in the cell body to interconnect these extensions. These cycles occur at very regular intervals and, furthermore, the extent of pseudopodial extension can be diminished by increasing the ligand density. Measurement of the traction forces exerted by the cell reveals that a cell is capable of exerting significant forces before either notable focal adhesion or stress fiber formation. Moreover, the total magnitude of force exerted by the cell is linearly related to the area of the cell during spreading. This study is the first to monitor the dynamic changes in the cell shape, spreading rate, and forces exerted during the early stages (first several hours) of endothelial cell adhesion.

Actins↗

Revisitation of the luminance conditions for the occurrence of the achromatic neon color spreading illusion.

This paper develops the idea (Bressan, 1993) that neon spreading derives from the perceptual scissioning of ordinary assimilation color, a process identical to that occurring with nonillusory colors in phenomenal transparency. It is commonly held that the critical elements in achromatic neon spreading patterns must be of luminance intermediate between that of the embedding lines and of the background. The interpretation of neon spreading on the basis of color scissioning, however, predicts that neon spreading should also be observed for different luminance hierarchies, provided that these are compatible with transparency. This prediction found experimental support in the present work. The results suggest that (1) the widespread notion that chromatic and achromatic neon spreading must be mediated by separate mechanisms is unwarranted; (2) the widespread notion that color spreading in ordinary assimilation patterns and color spreading in neon patterns must be mediated by separate mechanisms is unwarranted; and (3) other than pointing to the way in which the overall organization of a scene affects the mode of color appearance, the neon spreading effect may not convey any extra theoretical relevance.

Attention↗

Pre-emptive targeting of the epitope spreading cascade with genetically modified regulatory T cells during autoimmune demyelinating disease.

Epitope spreading or endogenous self-priming has been implicated in mediating the progression of autoimmune disease. In the present study we created an immune-deviated, epitope spreading response in SWXJ mice after the onset of experimental autoimmune encephalomyelitis, a prototypic autoimmune animal model widely used in multiple sclerosis research. We established an immunoregulatory spreading repertoire by transferring T cells genetically modified to produce high levels of IL-10 in response to a dominant epitope spreading determinant. Installation of a Th2/Tr1-like spreading repertoire resulted in a marked and prolonged inhibition of disease progression and demyelination characterized by 1) bystander inhibition of the recall response to the priming immunogen, and 2) a Th1-->Tr1 immune-deviated spreading response involving a shift in the source of IL-10 production from the transferred regulatory population to the host-derived, endogenously primed repertoire. Thus, our data provide a rationale for cell-based therapeutic intervention in multiple sclerosis by showing that pre-emptive targeting of the epitope spreading cascade with regulatory T cells effectively induces an immune-deviated spreading response capable of inhibiting ongoing inflammatory autoreactivity and disease progression.

Adoptive Transfer↗

Cooperation of C1q receptors and integrins in C1q-mediated endothelial cell adhesion and spreading.

The interaction of C1q with endothelial cells elicits a multiplicity of biologic responses. Although these responses are presumed to be mediated by the interaction of C1q with endothelial cell surface proteins, the identity of the participants is not known. In this study we examined the roles of two C1q binding proteins, cC1q-R/calreticulin and gC1q-R/p33, in C1q-mediated adhesion and spreading of human dermal microvascular endothelial cells (HDMVEC). When HDMVEC were cultured in microtiter plate wells coated with concentrations of C1q ranging from 0 to 50 microg/ml, a specific and dose-dependent adhesion and spreading was observed. The extent of adhesion and spreading was similar to the adhesion seen on collagen-coated wells. Spreading (68 +/- 12%) and to a moderate extent adhesion (47 +/- 9%) were inhibited by anti-gC1q-R mAb 60.11. Similar effects were noted with polyclonal anti-cC1q-R but not with control nonimmune IgG. The two Abs had a slight additive effect (75 +/- 13% inhibition) when mixed together in the proportion of 100 microg/ml anti-gC1q-R and 30 microg/ml anti-cC1q-R. More importantly, a 100% inhibition of spreading, but not adhesion, to C1q-coated wells was observed when HDMVEC were cultured in the presence of 30 microM of the peptide GRRGDSP but not GRRGESP. Furthermore, while anti-beta(1) integrin Ab blocked both adhesion and spreading, anti-alpha(5) integrin blocked only spreading and not adhesion. Ag capture ELISA of endothelial cell membrane proteins using polyclonal anti-gC1q-R showed the presence of not only beta(1) and alpha(5) integrins but also CD44. Taken together these results suggest that endothelial cell adhesion and spreading require the cooperation of both C1qRs and beta(1) integrins and possibly other membrane-spanning molecules.

Antibodies↗

Parametrial spread is a prognostic factor in endometrial carcinoma.

OBJECTIVE: Parametrial spread of endometrial carcinoma, including the histopathological pattern of the spread and its significance as a prognostic factor, as well as its correlation with other prognostic factors are not well understood. METHODS: We reviewed histopathologically the resected parametria from 269 patients with endometrial carcinoma who underwent radical or modified radical hysterectomy with pelvic lymphadenectomy. The relationship between parametrial spread and other histopathological features, including histological type, tumor grade, depth of myometrial invasion, lymph vascular space invasion (LVSI) of the myometrium, cervical invasion, adnexal metastasis, lymph node metastasis and peritoneal cytology was studied. Clinical outcomes of the patients with parametrial spread were also evaluated. RESULTS: Parametrial spread was demonstrated in 16 patients (5.9%). Direct invasion of cancer cells to connective tissue, LVSI and lymph-node metastasis in the parametrium were seen in 13, seven and three cases, respectively. Three patients had all three spread patterns. According to the FIGO surgical stage, parametrial spread was found in none of the 164 patients in Stage I, two (6.3%) of 32 in Stage II, 12 (16.9%) of 71 in Stage III, and two (100%) of two in Stage IV. The presence of parametrial involvement was significantly correlated with depth of myometrial invasion, cervical involvement, lymph-node metastasis, adnexal metastasis. LVSI in the myometrium and peritoneal cytology (each, p < 0.01). With a median follow-up of 68.3 months, six (37.5%) of 16 patients with parametrial involvement developed recurrence and died. CONCLUSION: Direct parametrial extension or lymphatic involvement within the parametrium can occur in endometrial carcinoma. Patients with parametrial spread have a poor prognosis.

Adult↗

Spreading depression-like depolarization and selective vulnerability of neurons. A brief review.

If oxygen is withdrawn from rat hippocampal slices, a spreading depression-like response occurs earlier and is of larger amplitude in the CA1 area than in the dentate gyrus. After reoxygenation, recovery of synaptic transmission correlates inversely with the time spent in spreading depression. Recovery occurs more frequently in dentate gyrus than in CA1. Chlorpromazine and the gangliosides GM1 and AGF2 promote recovery from hypoxic depression of synaptic transmission in CA1. Prevention of irreversible loss of function correlates closely with a shortening of the time spent in spreading depression. If Ca2+ is withdrawn before hypoxia, then synaptic function recovers upon restoration of oxygen and [Ca2+]o, despite prolonged spreading depression. When spreading depression lasting more than 6-9 minutes is induced in fully oxygenated slices by superfusion with high-K+ solution, then transient recovery is followed by long-lasting loss of synaptic function. In intact brain of anesthetized rats, synaptic transmission in CA1 recovers after spreading depression-like depolarization lasting more than 30 minutes, but is lost irreversibly after 60 minutes. We conclude that entry of Ca2+ into neurons caused by spreading depression-like depolarization is important in the selective vulnerability of neurons; the duration of depolarization is critical to cell survival; and in the presence of a normal blood supply, neurons resist protracted spreading depression-like depolarization.

Animals↗

Spreading of platelets on fibrin is mediated by the amino terminus of the beta chain including peptide beta 15-42.

We have investigated the adhesion and spreading of platelets on polymerized fibrin of varying structure to identify sites that mediate these interactions. Fibrin was prepared with thrombin to remove both fibrinopeptide A (FPA) and fibrinopeptide B (FPB) and with reptilase or Agkistrodon contortrix thrombin-like enzyme (ACTE) to selectively remove FPA or FPB, respectively. Residual fibrin-bound enzymes were inhibited with D-phenylalanyl-L-prolyl-L-arginyl chloromethyl ketone (PPACK). Platelet adhesion was independent of fibrinopeptide cleavage and was equal on fibrin prepared with each of the three enzymes. In contrast, FPB cleavage increased spreading as quantitated by fluorescence microscopy of platelets stained for glycoprotein IIb-IIIa. The 24% +/- 4% spreading on reptilase-fibrin was significantly less than the 70% +/- 8% on thrombin-fibrin or 65% +/- 9% on ACTE-fibrin (P < .0005 for both). Protease III from Crotalus atrox venom was used to specifically cleave residues B beta 1-42 from fibrinogen to further investigate the role of the beta chain N-terminus in promoting platelet spreading. After clotting with thrombin, this fibrin derivative lacked beta 15-42 and supported significantly less spreading. A monoclonal antibody (MoAb) reactive with beta 15-21 inhibited spreading on thrombin-fibrin as did peptide beta 15-42, while control MoAbs and peptides had no significant effect. These results indicate that adhesion and spreading of platelets on fibrin are mediated by different interactions, and that spreading can be mediated by FPB cleavage and the amino terminus of the beta chain including residues beta 15-42.

Amino Acid Chloromethyl Ketones↗

TNF-alpha bifunctionally induces proliferation in primary hepatocytes: role of cell anchorage and spreading.

In the absence of a growth factor or an appropriate extracellular matrix (ECM), cells are arrested in the G0/G1 phase. In this report, we demonstrate the evidence that TNF-alpha induced DNA synthesis of primary mouse hepatocytes in vitro by activating two distinct pathways. TNF-alpha induced drastic spreading of hepatocytes on hydrophobic plastic, while the adhesion was not influenced. The effect was time and dose dependent. The cell spreading was accompanied by the phosphorylation of paxillin, indicating the stimulation of focal adhesion molecules. TNF-alpha-induced spreading of hepatocytes was not transient, and kinetic analysis and morphologic observation suggest that the effect was different from epidermal growth factor- or hepatocyte growth factor-induced transient hepatocyte spreading. TNF-alpha-induced hepatocyte spreading was blocked by cytochalasin D, Arg-Gly-Asp peptides, cycloheximide, or anti-integrin beta1 Ab. Results of competitive PCR for ECM proteins demonstrated that TNF-alpha increased the expression of laminin alpha3 and gamma1 chains in hepatocytes. These data suggested that TNF-alpha induced cell anchorage for hepatocytes by up-regulating ECM production. More importantly, TNF-alpha, but neither epidermal growth factor nor hepatocyte growth factor, induced DNA synthesis following the spreading in primary hepatocytes on hydrophobic plastic, while mere cell spreading on collagen did not induce DNA synthesis. The DNA synthesis was blocked by the inhibition of either cell spreading or DNA polymerase, demonstrating that TNF-alpha induced DNA synthesis in primary hepatocytes by activating two distinct pathways, i.e., forming the scaffold and inducing growth signals. Taken together, TNF-alpha bifunctionally regulates the proliferation of primary hepatocytes, serving as both an ECM inducer and a growth factor.

Animals↗

Syk activation is required for spreading and H2O2 release in adherent human neutrophils.

Chemoattractant-stimulated polymorphonuclear leukocytes (PMNs) that are adherent to extracellular matrix proteins exhibit a massive, sustained respiratory burst that requires cell spreading. However, the signaling pathways culminating in PMN spreading are not well characterized. Studies showing that protein tyrosine phosphorylation increases with PMN spreading suggest that phosphorylation is critical for this process. In the present study, we observed increased tyrosine phosphorylation of both focal adhesion kinase and Syk in FMLP-activated PMNs that had been plated onto fibrinogen; an increase in Syk activity, but not focal adhesion kinase activity, was apparent. The time course of Syk phosphorylation correlated with the initiation of cell spreading and H2O2 release. Pretreatment of PMNs with piceatannol, a Syk-selective inhibitor, blocked Syk activity, cell spreading, and H2O2 release, indicating that Syk activity was required for the activation of adherent PMNs. Paxillin is a cytoskeletally associated protein that is also tyrosine phosphorylated during PMN spreading and H2O2 release. Paxillin phosphorylation is kinetically slower than Syk phosphorylation and is inhibited with piceatannol, suggesting that paxillin is a substrate for Syk. An analysis of Syk immunoprecipitates indicated that Syk and paxillin associate during PMN spreading. This interaction is not mediated by the src kinases Lyn and Fgr, since neither kinase coprecipitated with Syk. Syk from FMLP-activated, adherent PMNs phosphorylated paxillin-glutathione S-transferase, suggesting that paxillin is a substrate for Syk in vivo. These results indicate that PMN spreading and H2O2 release require a Syk-dependent signaling pathway leading to paxillin phosphorylation.

Cell Adhesion Molecules↗

Pavlovian conditioning of eating induced by spreading depression in cortex, striatum and hippocampus of rats.

A single wave of unilateral spreading depression in the cortex, hippocampus or caudate nucleus of rats elicits eating after 2-6 min. The present experiments provide evidence that such spreading depression-induced eating can be classically conditioned to a complex conditioned stimulus. A wave of spreading depression was triggered by injection of 0.5-2.0 mul of 25 percent KCl solution. In a first experiment successful conditioning was demonstrated in 20 rats, involving 7 cortical, 5 caudate and 8 hippocampal spreading depression sites. Four animals failed to show any conditioned eating. A control group of 8 animals, in which cortical spreading depression did not induce eating, showed no increase in eating in the presence of the CS after conditioning trials. A second experiment, which included pseudoconditioning and NaCl control groups, confirmed the results obtained in Experiment 1. Classical conditioning was successful in 11 animals, involving 6 cortical and 5 caudate spreading depression sites. Neither the pseudoconditioning (14 animals, involving 8 cortical and 6 caudate spreading depression sites) not the NaCl control group (8 animals, all with cortical sites), showed eating in the presence of the CS. In both experiments the conditioned eating underwent gradual extinction.

Animals↗

Characterization of cortical spreading depression in adult well-nourished and malnourished rats submitted to the association of pilocarpine-induced epilepsy plus streptozotocin-induced hyperglycemia.

Spreading depression was characterized in adult rats rendered epileptic by pilocarpine (350 mg/kg, i.p.) and thereafter made hyperglycemic with (i.p.) 60 mg/kg streptozotocin. Groups treated with only one of the above drugs, as well as control groups treated with their vehicles (saline and citrate buffer, respectively) were also studied. The animals treated with pilocarpine or streptozotocin presented, as a common feature, a reduction in the spreading depression propagation rate. However, they differed by the fact that pilocarpine, in some cases, blocked spreading depression propagation, whereas streptozotocin did not block it at all. In early-malnourished animals, streptozotocin-effects, but not pilocarpine-effects on spreading depression were attenuated. The treatment with both drugs did not potentiate their individual reducing effects on spreading depression propagation, irrespective of the animals' early nutritional status. These results extend previous observations on rats treated with both drugs separately, confirming their impairing action on spreading depression propagation. They also indicate that early malnutrition is more effective in changing the streptozotocin effects on spreading depression, as compared to the pilocarpine-effects. Since such effects were observed at adulthood, they indicate that the early malnutrition-induced cortical changes responsible for the here-described effects are long-lasting.

Animals↗

Expression of c-fos, junB, c-jun, MKP-1 and hsp72 following traumatic neocortical lesions in rats--relation to spreading depression.

The effects of a traumatic neocortical lesion on c-fos, junB, c-jun, MKP-1 and hsp72 expression were examined by in situ hybridization and immunocytochemistry 1-6 h following transcranial cold injury. The direct current potential was recorded in the injury-remote cortex to evaluate the role of transient direct current shifts, i.e. spreading depressions, in gene expression. In 14 out of 21 injured rats, spreading depression-like depolarizations of the direct current potential were noticed, which were accompanied by a transient decrease in electroencephalographic activity and increase in laser Doppler flow. In seven injured animals, no spontaneous spreading depressions were seen. In animals without spreading depressions, only a short-lasting response of c-fos, junB, c-jun and MKP-1 messenger RNAs as well as c-Fos protein was bilaterally found in the piriform cortex, and--with ipsilateral dominance--the dentate gyrus and hippocampal CA3/4 fields at 1 h after lesioning. In injured animals with spreading depressions however, a strong elevation was seen in layers II-IV and VI of the injury-remote ipsilateral cerebral cortex, which persisted over as long as 6 h. Messenger RNA levels for c-fos, junB and MKP-1 were closely related to the time interval between the last depolarization and the end of experiment. Levels were highest shortly after transient direct current shifts, and decreased thereafter mono-exponentially with half-lives of 48, 75 and 58 min for c-fos, junB and MKP-1 messenger RNAs, respectively. In 6 h animals with spreading depressions, hsp72 messenger RNA was slightly elevated in layer II of the injury-remote cortex, but heat shock protein 72 was not increased. The present results demonstrate that spreading depression is the most prominent factor influencing the trauma-related gene response in the lesion-remote cortical tissue.

Animals↗

Long-lasting reduction of cortical blood flow of the brain after spreading depression with preserved autoregulation and impaired CO2 response.

The purpose of the present study was to examine the cerebral perfusion after spreading depression with special emphasis on its relation to the perfusion changes in migraine. The cerebrovascular reactivity to changes of arterial PCO2 tension in the range of 24-70 mm Hg and to changes of MABP in the range of 55-150 mm Hg was studied in the rat brain after one episode of cortical spreading depression. Regional CBF (rCBF) was measured in the frontal, parietal, and occipital cortex, the basal ganglia, and the cerebellum of both hemispheres after the intravenous bolus injection of [14C]iodoantipyrine. rCBF decreased in the cortical regions to 69-73% of control values for 1 h after spreading depression in every single rat, but remained unchanged in the basal ganglia and cerebellum. CBF changed with alterations of arterial carbon dioxide tension in all brain regions. In control regions, CBF changed by 2.8-3.9% per mm Hg PaCO2 change, whereas in the spreading depression cortex, CBF changed by only 1.3-1.5%. The difference between control and spreading depression cortex was significant at p less than 0.001, indicating a reduced CO2 sensitivity of the cortical regions invaded by spreading depression. rCBF remained unchanged in all brain regions in the MABP range of 80-150 mm Hg, reflecting the intact autoregulatory function of the two sides, and at a MABP of less than 80 mm Hg, rCBF decreased in parallel in symmetrical regions. It is concluded that the hypoperfusion after spreading depression is due to a vasoconstrictor stimulus overriding the vasodilatory effect of acid pH.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Temporal relationship between neurotransmitter release and ion flux during spreading depression and anoxia.

Brain ion homeostasis is severely perturbed during spreading depression of Leao and during anoxia. The ionic composition of the extracellular space changes abruptly and approaches the intracellular concentrations owing to an increase in cell permeability. In spreading depression, synchronous transmitter efflux caused by a depolarization of the presynaptic terminals has been implicated as a possible mechanism that would explain the concomitant movement of ions. Anoxia, having many features in common with spreading depression, may follow the same mechanism. We have measured the concentrations of extracellular potassium with ion-selective microelectrodes and dopamine by in vivo voltammetry with carbon fiber microelectrodes during spreading depression and anoxia to compare the temporal relationship between the release of dopamine and ion movements in the striatum. There is a pronounced release of dopamine during both spreading depression and anoxia. In spreading depression, the sharp increase of potassium concentration that follows an initial smaller and slower increase of potassium is accompanied by the release of dopamine. In anoxia, the dopamine release clearly precedes the fast rise of extracellular potassium concentration. We conclude that in striatum, there is a pronounced dopamine release during spreading depression and anoxia, but that the relationships between ionic changes and transmitter release for these two phenomena are different and probably reflect different mechanisms.

Animals↗

Induced spreading depression activates persistent neurogenesis in the subventricular zone, generating cells with markers for divided and early committed neurons in the caudate putamen and cortex.

BACKGROUND AND PURPOSE: Status epilepticus and cerebral ischemia stimulate persistent neurogenesis in the adult brain, but both conditions cause neuronal damage. We determined whether spreading depression, a common epiphenomenon of these conditions, stimulates persistent neurogenesis. METHODS: We analyzed the effect of KCl-induced spreading depression on persistent neurogenesis and the spatio-temporal distribution of cells exhibiting immunohistochemical markers for divided and early committed neurons (new neurons) in the adult rat brain. RESULTS: After induction of spreading depression for 48 hours, the density of mitotic cells, divided cells, and new neurons in the subventricular zone increased at days 1 to 3, days 3 to 6, and day 6, respectively (P<0.05). The divided cell density in the rostral migratory stream and the stream size increased at day 12 (P<0.001). Vehicle (saline) infusion or induction of spreading depression for 4 hours only did not increase the divided cell density, but the latter increased new neuron density in the subventricular zone (P<0.001). Double-labeled new neuron-like cells also appeared in the caudate putamen or cortex in ectopic fashion at day 3, with dramatic increases at days 6 and 12. Administration of the NMDA receptor antagonist, MK-801, which inhibits the propagation of spreading depression, abolished the increase in new neurons in the subventricular zone and the appearance of ectopic new neuron-like cells after 48-hour KCl infusion. There was no neuronal damage, as evidenced by mature neuron density, neurite density, and apoptotic cell appearance after spreading depression for 48 hours. CONCLUSIONS: Spreading depression has the potential to stimulate persistent neurogenesis or to produce ectopic new neuron-like cells.

Animals↗

Prediction of recurrence and extratumor spread of hepatocellular carcinoma following resection.

BACKGROUND AND OBJECTIVES: The prognosis of patients with hepatocellular carcinoma (HCC) undergoing hepatectomy depends mostly on tumor recurrence. Portal vein invasion (Vp) and intrahepatic metastasis (IM) might strongly reflect the invasiveness of HCC, but the number of patients in the present series in whom either of these factors were detected was small. In this study, we defined Vp and IM as the extratumor spread, and we focused on the relationship between recurrence in patients after hepatectomy and the extratumor spread and the mitotic activities of cancer cells, in the hope that careful monitoring of recurrence might be possible by simply analyzing histology of the resected specimens. METHODS: Univariate and multivariate analyses were used to determine the factors potentially related to recurrence in 50 patients who underwent hepatectomy for HCC. RESULTS: The cumulative recurrence rate at 5 years was 81.0%. In univariate analysis, absence of the extratumor spread, mitotic index of four or less, and curative resection were significantly correlated with low incidence of recurrence. In multivariate analysis, the extratumor spread was the only significant variable influencing recurrence. The mitotic index in HCCs with the extratumor spread was significantly higher than the mitotic index in HCCs without the extratumor spread. CONCLUSIONS: As a predictive factor for recurrence after resection of HCC, the extratumor spread that reflects the malignant potential of cancer cells was found to be more accurate than is any single invasiveness parameter such as Vp or IM.

Analysis of Variance↗

Distal spread of rectal cancer and optimal distal margin of resection for sphincter-preserving surgery.

BACKGROUND: Ascertaining the optimal distal margin of resection in sphincter-preserving surgery has become an important problem. This study was designed to examine distal rectal spread of rectal carcinoma and to determine the optimal distal margin of resection for sphincter-preserving surgery. METHODS: Six hundred ten consecutive specimens of resected rectal carcinomas were analyzed retrospectively and pathologically. RESULTS: Sixty-one patients (10%) had distal spread. In patients who underwent curative surgery, distal spread was observed in only 3.8% (19/505). Distal spread was not found in patients with Stage I disease (0/150), according to the International Union Against Cancer stage. Only 1.2% (2/162) of patients with Stage II disease and 5.1% (10/195) with Stage III disease had slight spread but this was confined within a 1 cm length. Most patients with distal spread had a lower survival rate and died of distant metastasis rather than local recurrence, even after curative surgery. CONCLUSIONS: Distal spread seems to be an important risk factor for distant metastasis. Distal margin of resection of 1 cm may be appropriate clearance for most rectal cancers.

Female↗

A quantitative study of the lateral spread of Müller cell responses to retinal lesions in the rabbit.

A wide variety of retinal pathology is associated with an increase in Müller glial cell expression of glial fibrillary acidic protein (GFAP). In this study the time course and spatial spread of the Müller cell GFAP response following argon laser photocoagulation lesions was examined in wholemounted rabbit retina. At 24 hours single focal lesions were surrounded by GFAP positive Müller cell end feet which declined in density with distance but extended as far as 2-3 mm from the lesion. The Müller cell reaction reached a maximal spread of 4-5 mm at 14 to 21 days and had started to contract by 30 days, leaving a core of GFAP positive processes immediately around the lesion site at 60 days. This zone of spread was much larger than the area of disrupted pigment epithelium. Isodensity plots did not reveal any correlation with the trajectory of retinal ganglion cell axons. The spread of reaction was more confined for lesions within the visual streak than in the dorsal or ventral retinal periphery. Multiple lesions within a focal region of retina resulted in a greater density of GFAP reactive end feet with a corresponding greater spread. However, when five to ten lesions were made in a horizontal row, the Müller cells over the entire retina became GFAP immunoreactive. This pan-retinal reaction took several days to spread, peaked at 7-14 days, and contracted back to the primary lesion sites by 2 months. This spread of Müller cell reactivity may be triggered by the diffusion of substances released by injury or it may be due to direct cellular communication. The extensive indirect effect on Müller cells of laser irradiation might be an important component of the clinical effect of laser photocoagulation and indicates a long distance communication mechanism between retinal glia which is poorly understood. This study also shows the importance of the time at which the Müller cell response is assessed.

Animals↗