نتایج جستجو برای: gelatin sponge

تعداد نتایج: 18236  

Journal: :Annals of the rheumatic diseases 1982
T Honma Y Nakayama

Intraperitoneal gelatin sponge implants were used in guinea-pigs to examine the effect of D-penicillamine on the delayed hypersensitivity reaction in vivo. When it was administered daily in a dose of 200 mg/kg for 14 days before sensitisation or for 14 or 30 days before challenge, D-penicillamine increased the number of exudate cells during the onset of the delayed hypersensitivity reaction. Ab...

Journal: :Cancer research 1985
E T Akporiaye S J Stewart A P Stevenson C C Stewart

This study examined the recruitment of host cells into a progressing EMT6 tumor following the inoculation of tumorigenic cells into a preimplanted gelatin sponge. Tumor cell proliferation occurred to a greater extent in sponge tumors than in tumors obtained by direct subcutaneous injection of tumor cells. Blank sponges, lacking tumorigenic cells and used as controls, elicited an inflammatory re...

2016
Chizuru Jinno Naoki Morimoto Ran Ito Michiharu Sakamoto Shuichi Ogino Tsuguyoshi Taira Shigehiko Suzuki

The objective of this study was to compare the effectiveness of the collagen-gelatin sponge (CGS) with that of the collagen sponge (CS) in dermis-like tissue regeneration. CGS, which achieves the sustained release of basic fibroblast growth factor (bFGF), is a promising material in wound healing. In the present study, we evaluated and compared CGSs and conventional CSs. We prepared 8 mm full-th...

2017
Guang Sheng Zhao Chuang Li Ying Liu Zhi Zhong Ren Xiao Lin Yuan Jun Zhou Yue Wei Zhang Ming Zhang

To retrospectively analyze the safety and efficacy of 350-560 μm gelatin sponge particles combined with single-chemotherapy drug transcatheter arterial chemoembolization (Gs-TACE) for the treatment of elderly hepatocellular carcinoma without surgical resection.Thirty elderly hepatocellular carcinoma patients without surgical resection, who received Gs-TACE in our hospital, were selected. Slowly...

2017
Anthony Atala

Numerous urologic tissue substitutes have been attempted with both synthetic and organic materials (1). The first application of a free-tissue graft for bladder replacement was reported by Neuhoff in 1917, when fascia was used to augment bladders in dogs (2). Since that first report, multiple other free-graft materials have been used experimentally and clinically, including skin, bladder submuc...

Journal: :JOURNAL OF CLINICAL AND DIAGNOSTIC RESEARCH 2020

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