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Biomedical subjects

S Rafii

Publications and source records attributed to S Rafii.

5 recordsLinked to original sources

Perforin gene expression in stimulated human peripheral blood T cells studied by in situ hybridization and northern blotting analysis.

In situ hybridization was used here to monitor the mRNA level of the pore-forming protein perforin in mitogen-stimulated primary peripheral blood human T cells. In situ hybridization was performed using sense and antisense ribonucleotide probes specific for this granule mediator. After IL-2 treatment, an increase in perforin mRNA could be detected by 4 h; they peaked at 12 h, and decreased after 24 h. The perforin mRNA was also induced in T cells treated with a combination of phorbol ester PMA plus lectin or OKT3 mAb. This latter induction followed slower kinetics, peaking at 48 h. For all three mitogens used, even at peak induction times less than 10% of T cells were labeled with perforin probe. Similar patterns of mRNA expression were observed for both unprimed T cells and lectin-primed T blasts. The induction response of mRNA due to IL-2 stimulation is probably mediated by the IL-2 receptor p75 chain since its mRNA was upregulated by IL-2 with a kinetics comparable to that associated with an increase of perforin mRNA. The p55 IL-2 receptor chain increased much more slowly than p75.

Blotting, Northern

How lymphocytes kill.

Cytotoxic T lymphocytes and natural killer cells are potent killers of target cells. These lymphocytes have large cytoplasmic granules containing cytotoxic peptides and other factors. Several of these molecules have been isolated and their functions elucidated. These molecules may be directly involved in the killing of virus-infected and transformed cells as well as in the development of cell-mediated autoimmune disorders.

Animals

Perforin and serine esterase gene expression in stimulated human T cells. Kinetics, mitogen requirements, and effects of cyclosporin A.

A pore-forming protein (PFP; perforin) and various serine esterases (SE) have been identified in the cytoplasmic granules of CTL and NK cells. Perforin and several SE have recently been cloned. Northern blotting analysis was performed here using cDNA probes specific for human perforin and two SE (SE 1/HS and SE 2/GB) to monitor the levels of specific mRNAs in mitogen-stimulated primary human T cells. These mRNAs were rapidly induced by IL-2 with optimal responses at 300 U/ml. After IL-2 treatment, mRNAs for perforin, SE 1, and SE 2 peaked at 12-24 h and decreased after 48 h. The three mRNAs were also induced in T cells treated with a combination of PMA plus lectin, OKT3 mAb, or plastic-adherent accessory cells. However, the induction induced by PMA/mitogen followed a slower kinetics, peaking at 48 h. In general, we found that SE 1 mRNA was more readily induced by IL-2, while SE 2 responded better to PMA/mitogen. Similar patterns of mRNA expression were observed for both unprimed T cells and PHA-primed T blasts. After stimulation with IL-2 and PMA/mitogen, the T8+ subset was shown to be the main producer of perforin, SE 1, and SE 2. Low levels of all three mRNAs, however, were also detected in the T4+ subset. The induction of all three mRNAs by either IL-2 or PMA/mitogen was partially blocked by the immunosuppressive drug cyclosporin A (CsA), but not by the biologically inactive analogue cyclosporin H. Together, these results point to some similarities and differences with upregulation of granule mediator mRNAs relative to lymphokine mRNAs. Both sets of genes require two signals for their induction by mitogens. In contrast to lymphokines, there is a strong response of granule mRNAs to IL-2, and the induction of these transcripts is only partially blocked by CsA.

Cyclosporins

Iodine-131 MIBG scintigraphy in small cell lung cancer.

There is a well documented relationship between small cell carcinoma of the lung and the amine precursor uptake and decarboxylation system of endocrine cells (APUD). We attempted to exploit this association by employing the unique radiopharmaceutical, 131I-MIBG, which is recognized and taken up by the APUD system to monitor disease activity in patients with small cell carcinoma of the lung. A total of eight patients with biopsy proven, metastatic small cell carcinoma of the lung were studied. 131I-MIBG was synthesized in our laboratory by reacting metaiodobenzylamine hydrochloride with cyanamide with subsequent solid phase radioiodination. A dose of 0.5 mCi radiopharmaceutical was injected and images obtained on a large field of view gamma camera with a high energy parallel hole collimator at 2, 24, and either 48 or 72 h. Images were compared with known focal areas of metastatic disease demonstrable on computed tomographic scan, chest roentgenogram or bone scan. We were unable to detect reproducible correlations between the images produced by conventional radiographic techniques and the images produced by our radiopharmaceutical. We conclude that this agent will probably not be useful for localization of metastatic small cell lung carcinoma.

3-Iodobenzylguanidine