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R Branche

Publications and source records attributed to R Branche.

11 recordsLinked to original sources

Thymidine dinucleotides induce S phase cell cycle arrest in addition to increased melanogenesis in human melanocytes.

Although the induction of pigmentation following exposure of melanocytes to ultraviolet light in vivo and in vitro is well documented, the intracellular mechanisms involved in this response are not yet fully understood. Exposure to UV-B radiation leads to the production of DNA damage, mainly cyclobutane pyrimidine dimers, and it was recently suggested that the thymidine dinucleotide pTpT, mimicking small DNA fragments released in the course of excision repair mechanisms, could trigger melanin synthesis. We now report that the thymidine dinucleotide pTpT induces melanogenesis both in human normal adult melanocytes and in human melanoma cells. Thus, the SOS-like response suggested by Gilchrest's work to be evolutionary conserved, based primarily on work in murine cells and guinea pigs, is also apparently present in the human. Thymidine dinucleotide is nontoxic to melanoma cells and does not induce apoptosis in these cells, but induces S phase cell cycle arrest and a proliferation slow down. Because thymidine excess in culture medium leads to the synchronization of cells in S phase, we investigated whether this phenomenon was involved in the increase in melanin synthesis. We show that melanin synthesis is specifically triggered by the dimeric form of the thymidine and not by the monomeric form pT. Thus, our data strongly support that thymidine dinucleotides pTpT mimic at least part of the effects of ultraviolet irradiation, and may hence represent an invaluable model in the study of the molecular events involved in melanogenesis induction triggered through DNA damage.

Cell Division↗

Production of inactivated rabies vaccine for human use on WI38 diploid cells. Results of potency tests. Stability of the vaccine in liquid and freeze-dried forms.

The purpose of the article is to give the experience gained with the manufacture of the vaccine for five years and to dicuss the potency results obtained. Sixty ampoules of WI38 cells were used. The processing of twelve of them was stopped for accidental reasons. Forty-eight lots were freeze-dried, four were rejected as final product, three lots because of low potency, one following some febrile reactions in children due to an unexpectedly high content in endotoxin. The activity level of each lot was determined: (1) by titration of the viral suspension before concentration in young mice by the intracerebral route or by the plaquing technique in monolayers of BHK 21 cells. The mean titer in mice is 10(6.5) per ml; on cells the titer is lower, mean 10(5.8) per ml, but more homogeneous, and (2) by the NIH potency test in mice: 90% of the lots have an antigenic value compared to the International Reference Vaccine above 2. There is not a good agreement between the results of the NIH potency test and the titer of the viral suspension. The antigenic values obtained on the freeze-dried vaccine after storage one month at 37 degrees C are the same as those for the vaccine stored at + 4 degrees C. The activity is not modified after storage for two years at + 4 degrees C in the freeze-dried or in the liquid state. The main drawback of the vaccine is its high cost. Some suggestions are proposed to try to lower it and to find a sound compromise between high quality and price.

Culture Techniques↗

Stimulation of rabies vaccine in mice by low doses of polyadenylic:polyuridylic complex.

Addition of 100 mug of polyadenylic: polyuridylic (poly A:U) complex to each dose of inactivated rabies vaccine increased immunity to rabies challenge in mice. Stimulation was also observed after addition of 10 mug of poly A:U to the vaccines. Mixtures of rabies vaccine and poly A:U lost their stimulatory properties after storage at 37 or 4 C for 1 month. However, these data are encouraging for practical use of poly A:U as an adjuvant to viral vaccines.

Adjuvants, Immunologic↗

Stimulation of antibacterial vaccination in mice by polyadenylic acid: polyuridylic acid complex.

The effect of polyadenylic acid:polyuridylic acid complex (poly A:U) on immunization was investigated in mice vaccinated by killed Brucella melitensis cells suspended in incomplete adjuvant or in saline. Addition of 300 mug of poly A:U to vaccines rendered 3 x 10(8)B. melitensis cells in saline as immunogenic as 3 x 10(11) cells in oil adjuvant against a severe B. abortus challenge. In the mouse and Brucella system, poly A:U exerts an adjuvant effect on immunity but does not stimulate production of circulating antibodies that could be demonstrated at the time of autopsy.

Adjuvants, Immunologic↗