Sassi M, Jukkola A, Riekki R, Höyhtyä M, Risteli L, Oikarinen A, Risteli J
Department of Clinical Chemistry, University of Oulu, POB 5000, 90014 Oulu, Finland.
Radiother Oncol. 2001 Mar;58(3):317-23. doi: 10.1016/s0167-8140(00)00253-x.
The effects of radiation therapy on the turnover and structure of type I collagen were studied in irradiated and contralateral skin of 18 breast cancer patients without clinically evident fibrosis.
The rates of on-going type I collagen synthesis and degradation were assessed by the aminoterminal propeptide of type I procollagen (PINP) and by two different assays (ICTP and SP4) for the carboxyterminal telopeptide of type I collagen in the soluble tissue extracts, respectively. Also, TIMP-1, TIMP-2 and the MMP-2/TIMP-2 complex were measured in the tissue extracts. Insoluble skin matrices, containing the cross-linked type I collagen fibres, were heat-denatured and digested with trypsin. Then, the variants of the carboxyterminal telopeptide of type I collagen were separated by high performance liquid chromatography (HPLC). The major histidinohydroxylysinonorleucine (HHL)-cross-linked variant was quantified by the SP4 assay, and the minor pyridinoline analogue (PA)-cross-linked telopeptide was quantified by the ICTP assay.
Both the synthesis and degradation of type I collagen were increased (r=0.906; P<0.001) on the irradiated side, whereas the concentration of the MMP-2/TIMP-2 complex was decreased. In the insoluble tissue digests, the HHL-cross-linked telopeptides of type I collagen, also, when expressed/tissue hydroxyproline, were increased in the irradiated skin. TIMP-1, TIMP-2 or PA-cross-linked telopeptides of type I collagen showed no differences between the two sides.
Radiotherapy induces a long-term increase in the turnover of type I collagen and leads to the accumulation of cross-linked type I collagen in skin.
在18例无临床明显纤维化的乳腺癌患者的放疗皮肤及对侧皮肤中,研究放射治疗对I型胶原周转和结构的影响。
分别通过I型前胶原氨基端前肽(PINP)以及可溶性组织提取物中I型胶原羧基末端肽的两种不同检测方法(ICTP和SP4)评估I型胶原的合成与降解速率。此外,还对组织提取物中的TIMP-1、TIMP-2以及MMP-2/TIMP-2复合物进行了检测。含有交联I型胶原纤维的不溶性皮肤基质经热变性后用胰蛋白酶消化。然后,通过高效液相色谱(HPLC)分离I型胶原羧基末端肽的变体。主要的组氨酸羟基赖氨酰正亮氨酸(HHL)交联变体通过SP4检测进行定量,次要的吡啶啉类似物(PA)交联肽通过ICTP检测进行定量。
放疗侧I型胶原的合成与降解均增加(r = 0.906;P < 0.001),而MMP-2/TIMP-2复合物的浓度降低。在不溶性组织消化物中,放疗皮肤中I型胶原的HHL交联肽,以组织羟脯氨酸表示时也增加。I型胶原的TIMP-1、TIMP-2或PA交联肽在两侧无差异。
放射治疗导致I型胶原周转长期增加,并致使皮肤中交联I型胶原积累。