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In vitro studies on tumor-specific immunity by using C3H mammary cancer-A cells. II. Specificity in growth-inhibition effect of lymph-node cells from sensitized animal on target cells.

Katuaki Satoh

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Abstract

For purpose to study specificity in the growth inhibition effect of sensitized lymph-node cells on target cells, the regional lymph-node cells obtained from the truly isologous mouse previously inoculated with A strain cells (derived from C3H mouse mammary cancer) were cultured with A cells in various ways, and obtained the following results. 1. Those regional lymph-node cells from the isologous mice transplanted with the skin of C3H mouse or MC-induced sarcoma do not inhibit the growth of A cells in tissue culture. 2. The regional lymph-node cells from the mice positive to tuberculin test also do not inhibit the growth of A cells in tissue culture. 3. The regional axillary lymph-node cells (C3H anti-A strain cells) inhibit the proliferation of M cells from Cb mouse mammasy cancer and JTC-ll cells from Ehrlich ascites tumor as well as A cells. However, these axillary lymphnode cells do not inhibit the growth of AH-66F cells from rat DAB hepatoma, Hela-S3 cells from human uterine cancer and L cells from subcutaneous connective tissue of C3H mouse. From these results it is assumed that the sensitized regional lymph- node cells act specifically on cancer antigen.

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For purpose to study specificity in the growth inhibition effect of sensitized lymph-node cells on target cells, the regional lymph-node cells obtained from the truly isologous mouse previously inoculated with A strain cells (derived from C3H mouse mammary cancer) were cultured with A cells in various ways, and obtained the following results. 1. Those regional lymph-node cells from the isologous mice transplanted with the skin of C3H mouse or MC-induced sarcoma do not inhibit the growth of A cells in tissue culture. 2. The regional lymph-node cells from the mice positive to tuberculin test also do not inhibit the growth of A cells in tissue culture. 3. The regional axillary lymph-node cells (C3H anti-A strain cells) inhibit the proliferation of M cells from Cb mouse mammasy cancer and JTC-ll cells from Ehrlich ascites tumor as well as A cells. However, these axillary lymphnode cells do not inhibit the growth of AH-66F cells from rat DAB hepatoma, Hela-S3 cells from human uterine cancer and L cells from subcutaneous connective tissue of C3H mouse. From these results it is assumed that the sensitized regional lymph- node cells act specifically on cancer antigen.

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Available abstract

For purpose to study specificity in the growth inhibition effect of sensitized lymph-node cells on target cells, the regional lymph-node cells obtained from the truly isologous mouse previously inoculated with A strain cells (derived from C3H mouse mammary cancer) were cultured with A cells in various ways, and obtained the following results. 1. Those regional lymph-node cells from the isologous mice transplanted with the skin of C3H mouse or MC-induced sarcoma do not inhibit the growth of A cells in tissue culture. 2. The regional lymph-node cells from the mice positive to tuberculin test also do not inhibit the growth of A cells in tissue culture. 3. The regional axillary lymph-node cells (C3H anti-A strain cells) inhibit the proliferation of M cells from Cb mouse mammasy cancer and JTC-ll cells from Ehrlich ascites tumor as well as A cells. However, these axillary lymphnode cells do not inhibit the growth of AH-66F cells from rat DAB hepatoma, Hela-S3 cells from human uterine cancer and L cells from subcutaneous connective tissue of C3H mouse. From these results it is assumed that the sensitized regional lymph- node cells act specifically on cancer antigen.

Key concepts: Lymph node, Lymph node stromal cell, Cancer cell, Biology, In vitro, Lymph, Cancer research, Immunology

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In vitro studies on tumor-specific immunity by using C3H mammary cancer-A cells. II. Specificity in growth-inhibition effect of lymph-node cells from sensitized animal on target cells. — Research Paper | ScholarLens