Davidson Shawn M, Jonas Oliver, Keibler Mark A, Hou Han Wei, Luengo Alba, Mayers Jared R, Wyckoff Jeffrey, Del Rosario Amanda M, Whitman Matthew, Chin Christopher R, Condon Kendall J, Lammers Alex, Kellersberger Katherine A, Stall Brian K, Stephanopoulos Gregory, Bar-Sagi Dafna, Han Jongyoon, Rabinowitz Joshua D, Cima Michael J, Langer Robert, Vander Heiden Matthew G
Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.
Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.
Nat Med. 2017 Feb;23(2):235-241. doi: 10.1038/nm.4256. Epub 2016 Dec 26.
Mammalian tissues rely on a variety of nutrients to support their physiological functions. It is known that altered metabolism is involved in the pathogenesis of cancer, but which nutrients support the inappropriate growth of intact malignant tumors is incompletely understood. Amino acids are essential nutrients for many cancer cells that can be obtained through the scavenging and catabolism of extracellular protein via macropinocytosis. In particular, macropinocytosis can be a nutrient source for pancreatic cancer cells, but it is not fully understood how the tumor environment influences metabolic phenotypes and whether macropinocytosis supports the maintenance of amino acid levels within pancreatic tumors. Here we utilize miniaturized plasma exchange to deliver labeled albumin to tissues in live mice, and we demonstrate that breakdown of albumin contributes to the supply of free amino acids in pancreatic tumors. We also deliver albumin directly into tumors using an implantable microdevice, which was adapted and modified from ref. 9. Following implantation, we directly observe protein catabolism and macropinocytosis in situ by pancreatic cancer cells, but not by adjacent, non-cancerous pancreatic tissue. In addition, we find that intratumoral inhibition of macropinocytosis decreases amino acid levels. Taken together, these data suggest that pancreatic cancer cells consume extracellular protein, including albumin, and that this consumption serves as an important source of amino acids for pancreatic cancer cells in vivo.
哺乳动物组织依靠多种营养物质来维持其生理功能。已知代谢改变参与癌症的发病机制,但哪些营养物质支持完整恶性肿瘤的异常生长尚不完全清楚。氨基酸是许多癌细胞必需的营养物质,可通过巨胞饮作用清除和分解细胞外蛋白质来获取。特别是,巨胞饮作用可以成为胰腺癌细胞的营养来源,但肿瘤环境如何影响代谢表型以及巨胞饮作用是否支持胰腺肿瘤内氨基酸水平的维持尚不完全清楚。在这里,我们利用小型化血浆置换将标记的白蛋白输送到活体小鼠的组织中,并且我们证明白蛋白的分解有助于胰腺肿瘤中游离氨基酸的供应。我们还使用一种可植入的微型装置将白蛋白直接输送到肿瘤中,该装置是根据参考文献9进行改造和修改的。植入后,我们直接观察到胰腺癌细胞原位的蛋白质分解代谢和巨胞饮作用,而相邻的非癌性胰腺组织则没有。此外,我们发现肿瘤内巨胞饮作用的抑制会降低氨基酸水平。综上所述,这些数据表明胰腺癌细胞消耗包括白蛋白在内的细胞外蛋白质,并且这种消耗是体内胰腺癌细胞重要的氨基酸来源。