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L C Solal

Publications and source records attributed to L C Solal.

3 recordsLinked to original sources

Diffuse leiomyomatosis associated with X-linked Alport syndrome: extracellular matrix study using immunohistochemistry and in situ hybridization.

Inherited diffuse esophageal leiomyomatosis a benign tumor involving smooth muscle cells of the whole esophagus, is frequently associated with X-linked Alport syndrome, a hereditary disease of type IV collagen. Families with this condition are consistently found to have deletions encompassing the 5' ends of both the alpha 5 chain of type IV collagen (COL4A5) and the alpha 6 chain of type IV collagen (COL4A6) genes, always limited in COL4A6 to exons 1', 1, and 2. On the contrary, patients with COL4A5/COL4A6 deletions extending further into COL4A6 display no such tumors. Despite the deletion, a COL4A6 transcript including exon 4, but not exon 3, was found in a tumor sample, raising the possibility of the involvement of a truncated alpha 6(IV) chain in the tumorous process. Using immunohistochemistry and in situ hybridization methods, we analyzed the expression and distribution of the alpha 6 chain of type IV collagen in tumors in comparison with that of normal, fetal, and mature esophagus. We also studied associated changes in tumor basement membrane composition and in tumor-cell integrin subunit distribution. No labeling with alpha 6(IV) antibodies was detected in tumors, ruling out the hypothesis of a stably integrated truncated alpha 6(IV) chain in tumor basement membranes. In contrast, despite the deletions of the first two exons of the gene and its 5' end, a COL4A6 transcript is clearly expressed by tumor cells. This finding raises the question of a potential role for this RNA in the tumor process. The absence of the alpha 6(IV) chain is associated with the absence of the alpha 5(IV) chain, as was suggested by the COL4A5 deletion. An additional striking feature is the absence of the beta 1 chain of laminin in tumor basement membranes and the lack of or uneven expression of the alpha 5 integrin subunit. These findings show that dramatic changes in the composition of the matrix and the expression of integrin receptors also occur in this benign tumorous process.

Basement Membrane↗

C1 and human platelets. III. Role of C1 subcomponents in platelet aggregation induced by aggregated IgG.

Studies have been performed with platelets using C1 haemolytic assays and platelet aggregation induced by anti-C1q, anti-C1s and aggregated IgG in the presence of C1 subcomponents C1q, C1r and C1s. C1q was removed by EDTA or modified by collagenase from human platelets while after the same treatment C1s remained bound to the platelets. EDTA treated platelets were no longer aggregated by aggregated IgG. The addition of C1q restored the reactivity of the platelets to aggregated IgG while the addition of C1r or C1s was without effect. Furthermore, the addition of C1r or C1s to C1q inhibited the action of C1q in platelet aggregation induced by IgG.The possible association between the different C1 subcomponents and human platelets is discussed.

Complement C1↗

[Direct reaction between complement system and cell nuclei (author's transl)].

A direct in vitro reaction between complement system and cell nuclei of human leucocytes and of cryostat sections of rat liver or kidney, has been demonstrated by an indirect immunofluorescence technique. The first step of this reaction involves a fixation of C1q to the nuclear DNA as shown by the peripheral distribution of the fluorescence and by the extinction of the fluorescence when the tissue-slices are pretreated by DNase but not by RNase or trypsin. This fixation gives rise to an activation of C1 which can be demonstrated by the capacity of the fixed C1 to induce a fixation of C4 of the same distribution. Although the sequential fixation experiments have not allowed to establish directly the fixation of the following components of the complement system (C2 and C3), the positive results obtained using whole fresh normal human serum as a source of complement and a fluorescent anti-human C3 serum clearly indicate that the activation of the classical pathway by whole cells DNA can go as far as the C3 step. All these results were obtained at physiological pH and molarity: this can suggest a physiopathological meaning for this reaction.

Animals↗