Concentric multilamellar microvesicles, named spherulites(TM), were evaluated as an oligonucleotide carrier. Up to 80% oligonucleotide was encapsulated in these vesicles. The study was carried out on two different spherulite(TM) formulations. The spherulite(TM) size and stability characteristics are presented. Delivery of encapsulated oligonucleotide was performed on a rat hepatocarcinoma and on a lymphoblastoid T cell line, both expressing the luciferase gene. We showed that spherulites(TM) were able to transfect both adherent and suspension cell lines and deliver the oligonucleotide to the nucleus. Moreover, 48-62% luciferase inhibition was obtained in the rat hepatocarcinoma cell line when the antisense oligonucleotide targeted to the luciferase coding region was encapsulated at 500 nM concentration in spherulites(TM) of different compositions.
Cystic lymphoepithelial lesions of salivary glands (CLLSG) are nodular or diffuse salivary gland enlargements that are observed in patients who tested positive for human immunodeficiency virus type 1 (HIV-1). Two cases of CLLSG are reported. Particular emphasis is placed on the presence of HIV-1 major-core protein (P24), HIV-1 RNA sequences, Epstein-Barr virus (EBV) DNA sequences, and lymphocyte receptor gene rearrangement. Lymphoid alterations consisted of explosive hyperplasia with a prominent follicular reticular dendritic cell (DRC) network and numerous intrafollicular CD8+ lymphocytes. Intrafollicular DRC strongly expressed HIV-1 major-core protein and HIV-1 RNA, indicating that most DRCs actively replicated the HIV-1 virus. The presence of active HIV-1 replication within DRC and the absence of clonal EBV infected lymphoid population strongly suggest that CLLSG pathogenesis is primarily induced by HIV-1. The presence of oligoclonal immunoglobulin gene rearrangements in our cases, however, suggest the need of long-term follow-up of such patients to determine whether CLLSG could be a benign prelymphomatous disease.
Spherulites are multilamellar vesicles consisting of concentric shells that can encapsulate small organic molecules or macromolecules. We investigate the possibility of targeting neutral spherulites to adherent culture cells by functionalizing their surface with RGD-containing ligands. The strength and specificity of association of RGD spherulites with several cell lines (EAhy 926 endothelial cell line, human umbilical vein endothelial cell (HUVEC) and human osteoprogenitor (HOP) primary cells) was studied, and the molecular interaction of RGD spherulites with the EAhy 926 cell surface was investigated. We show that, after binding to cells, spherulites are internalized.
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