Ota Shigenori, Nishimura Miyuki, Murakami Yuya, Birukawa Naoko Kubo, Yoneda Akihiro, Nishita Hiroki, Fujita Ryosuke, Sato Yasushi, Minomi Kenjiro, Kajiwara Keiko, Miyazaki Miyono, Uchiumi Maki, Mikuni Shintaro, Tamura Yasuaki, Mizuguchi Toru, Imamura Masafumi, Meguro Makoto, Kimura Yasutoshi, Hirata Koichi, Niitsu Yoshiro
Department of Molecular Target Exploration, Sapporo Medical University, Sapporo, Japan.
Department of Surgery, Surgical Oncology & Science, Sapporo Medical University, Sapporo, Japan.
PLoS One. 2016 Dec 9;11(12):e0165747. doi: 10.1371/journal.pone.0165747. eCollection 2016.
Mechanism of regeneration of remnant pancreas after partial pancreatectomy (PX) is still unknown. In this study, effect of siRNA against the collagen specific chaperone, HSP47, which inhibits collagen secretion from activated pancreas stellate cells (aPSCs), and induces their apoptosis, on regeneration of remnant pancreas was determined.
Pancreatectomy was performed according to established methods. Proliferation of cells was assessed by BrdU incorporation. Immunostaining of HSP47 was employed to identify PSCs. Progenitor cells were identified by SOX9 staining. Acinar cells were immunostained for amylase. Co-culture of acinar cells with aPSCs were carried out in a double chamber with a cell culture insert. siRNA HSP47 encapsulated in vitamin A-coupled liposome (VA-lip siRNA HSP47) was delivered to aPSCs by iv injection.
In remnant pancreas of 90% PX rat, new areas of foci were located separately from duodenal areas with normal pancreatic features. After PX, BrdU uptake of acinar cells and islet cells significantly increased, but was suppressed by treatment with VA-lip siRNA HSP47. BrdU uptake by acinar cells was augmented by co-culturing with aPSCs and the augmentation was nullified by siRNA HSP47. BrdU uptake by progenitor cells in foci area was slightly enhanced by the same treatment. New area which exhibited intermediate features between those of duodenal and area of foci, emerged after the treatment.
aPSCs play a crucial role in regeneration of remnant pancreas, proliferation of acinar and islet cells after PX through the activity of secreted collagen. Characterization of new area emerged by siRNA HSP47 treatment as to its origin is a future task.
部分胰腺切除术后残余胰腺的再生机制尚不清楚。在本研究中,确定了针对胶原蛋白特异性伴侣蛋白HSP47的小干扰RNA(siRNA)对残余胰腺再生的影响,该蛋白可抑制活化的胰腺星状细胞(aPSC)分泌胶原蛋白并诱导其凋亡。
按照既定方法进行胰腺切除术。通过掺入BrdU评估细胞增殖。采用HSP47免疫染色鉴定PSC。通过SOX9染色鉴定祖细胞。用淀粉酶对腺泡细胞进行免疫染色。腺泡细胞与aPSC在带有细胞培养插入物的双室中进行共培养。通过静脉注射将包裹在维生素A偶联脂质体(VA-lip siRNA HSP47)中的siRNA HSP47递送至aPSC。
在90%胰腺切除大鼠的残余胰腺中,新的病灶区域与具有正常胰腺特征的十二指肠区域分开。胰腺切除术后,腺泡细胞和胰岛细胞的BrdU摄取显著增加,但用VA-lip siRNA HSP47处理后受到抑制。与aPSC共培养可增加腺泡细胞的BrdU摄取,而siRNA HSP47可消除这种增加。相同处理可使病灶区域祖细胞的BrdU摄取略有增强。处理后出现了具有十二指肠和病灶区域中间特征的新区域。
aPSC在残余胰腺再生、胰腺切除术后腺泡细胞和胰岛细胞增殖中通过分泌胶原蛋白发挥关键作用。对siRNA HSP47处理后出现的新区域的起源进行表征是未来的任务。