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Inhibition of Prostate Tumor Cell Hyaluronan Synthesis Impairs Subcutaneous Growth and Vascularization in Immunocompromised Mice

机译:抑制前列腺肿瘤细胞透明质酸合成会损害免疫受损小鼠的皮下生长和血管化。

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摘要

Hyaluronan (HA), a secreted glycosaminoglycan component of extracellular matrices, is critical for cellular proliferation and motility during development. However, elevated circulating and cell-associated levels correlate with various types of cancer, including prostate. We have previously shown that aggressive PC3M-LN4 prostate tumor cells synthesize excessive HA relative to less aggressive cells, and express correspondingly higher levels of the HA biosynthetic enzymes HAS2 and HAS3. Inhibition of these enzymes by stable transfection of PC3M-LN4 cells with anti-sense HAS2 or HAS3 expression constructs diminishes HA synthesis and surface retention. In this report, we used these HA-deficient cell lines to examine the role of HA in tumorigenicity. Subcutaneous injection of SCID mice with hyaluronan synthase (HAS) antisense-transfected cells produced tumors threefold to fourfold smaller than control transfectants. Tumors from HAS antisense transfectants were histologically HA-deficient relative to controls. HA deficiency corresponded to threefold reduced cell numbers per tumor, but comparable numbers of apoptotic and proliferative cells. Percentages of apoptotic cells in cultured transfectants were identical to those of control cells, but antisense inhibition of HA synthesis effected slower growth rate of cells in culture. Quantification of blood vessel density within tumor sections revealed 70 to 80% diminished vascularity of HAS antisense tumors. Collectively, the results suggest HAS overexpression by prostate tumor cells may facilitate their growth and proliferation in a complex environment by enhancing intrinsic cell growth rates and promoting angiogenesis. Furthermore, this is the first report of a role for inhibition of HA synthesis in reducing tumor growth kinetics.
机译:透明质酸(HA)是细胞外基质的一种分泌型糖胺聚糖成分,对于发育过程中的细胞增殖和运动至关重要。但是,循环和细胞相关水平升高与各种类型的癌症(包括前列腺癌)相关。先前我们已经表明,侵袭性PC3M-LN4前列腺肿瘤细胞相对于侵袭性较低的细胞合成过量的HA,并相应表达更高水平的HA生物合成酶HAS2和HAS3。通过用反义HAS2或HAS3表达构建体稳定转染PC3M-LN4细胞来抑制这些酶会减少HA的合成和表面保留。在本报告中,我们使用了这些HA缺陷型细胞系来检查HA在致瘤性中的作用。用透明质酸合酶(HAS)反义转染的细胞皮下注射SCID小鼠产生的肿瘤比对照转染子小三到四倍。与对照相比,HAS反义转染子的肿瘤在组织学上缺乏HA。 HA缺乏症对应于每个肿瘤减少三倍的细胞数量,但凋亡和增殖细胞的数量却相当。培养的转染子中凋亡细胞的百分比与对照细胞相同,但是对HA合成的反义抑制会影响培养中细胞的生长速度。肿瘤切片内血管密度的定量显示,HAS反义肿瘤的血管减少了70%至80%。总体而言,结果表明前列腺肿瘤细胞的HAS过表达可能会通过增强内在的细胞生长速率和促进血管生成来促进其在复杂环境中的生长和增殖。此外,这是关于抑制HA合成降低肿瘤生长动力学的作用的首次报道。

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