Kjellman M, Enberg U, Höög A, Larsson C, Holst M, Farnebo L O, Sato H, Bäckdahl M
Department of Surgery, P9:03, Karolinska Hospital, S-171 76 Stockholm, Sweden.
World J Surg. 1999 Mar;23(3):237-42. doi: 10.1007/pl00013183.
In an attempt to understand the mechanism behind the invasion and metastasis in adrenocortical cancer we performed mRNA in situ hybridization on 30 tumors for three matrix metalloproteinases (MMPs): gelatinase A, membrane type 1 matrix metalloproteinase (MT1-MMP), and collagenase-3. All are known to participate in the invasion and metastasis of other tumor forms by degrading the extracellular matrix. Thirteen of sixteen cancers, but only one of fourteen benign lesions showed expression of gelatinase A, which was localized in stromal cells. MT1-MMP is thought to assist in tumor invasion and metastasis by activating the zymogen gelatinase A. Of 14 malignant tumors analyzed, 12 showed MT1-MMP mRNA expression, which in 7 cases was detected in both neoplastic and stromal cells. The benign tumors showed MT1-MMP expression in only 3 of 11 cases, and it was restricted to tumor cells. Fourteen tumors (11 cancers, 3 adenomas) were also analyzed for collagenase-3 mRNA, but no expression was detected. In conclusion, our data show that gelatinase A mRNA is expressed in most malignant adrenocortical tumors but not in the benign tumors. Gelatinase A mRNA expression is restricted to stromal cells, whereas its activator, MT1-MMP, is expressed in both stromal and neoplastic cells. Inhibition of gelatinase A and other proteinases may in the future become important as a form of cancer treatment.
为了了解肾上腺皮质癌侵袭和转移背后的机制,我们对30个肿瘤进行了三种基质金属蛋白酶(MMP)的mRNA原位杂交检测,这三种酶分别是明胶酶A、膜型1基质金属蛋白酶(MT1-MMP)和胶原酶-3。众所周知,所有这些酶都通过降解细胞外基质参与其他肿瘤形式的侵袭和转移。16例癌症中有13例,但14例良性病变中只有1例显示明胶酶A表达,其定位于基质细胞。MT1-MMP被认为通过激活酶原明胶酶A来协助肿瘤侵袭和转移。在分析的14例恶性肿瘤中,12例显示MT1-MMP mRNA表达,其中7例在肿瘤细胞和基质细胞中均检测到。良性肿瘤中,11例仅有3例显示MT1-MMP表达,且仅限于肿瘤细胞。我们还对14个肿瘤(11例癌症,3例腺瘤)进行了胶原酶-3 mRNA分析,但未检测到表达。总之,我们的数据表明,明胶酶A mRNA在大多数恶性肾上腺皮质肿瘤中表达,但在良性肿瘤中不表达。明胶酶A mRNA表达仅限于基质细胞,而其激活剂MT1-MMP在基质细胞和肿瘤细胞中均有表达。未来,抑制明胶酶A和其他蛋白酶可能成为一种重要的癌症治疗形式。