textabstractThe retention of crystals in the kidney is considered to be a crucial step in the development of a renal stone. This study demonstrates the time-dependent alterations in the extent of calcium oxalate (CaOx) monohydrate (COM) crystal binding to Madin-Darby canine kidney (MDCK) cells during their growth to confluence and during the healing of wounds made in confluent monolayers. As determined by radiolabeled COM crystal binding studies and confirmed by confocal-scanning laser microscopy, relatively large amounts of crystals (10.4 +/- 0.4 micrograms/cm2) bound to subconfluent cultures that still exhibited a low transepithelial electrical resis...
Calcium phosphate–induced renal epithelial injury and stone formation: Involvement of reactive oxyge...
Internalization of calcium oxalate crystals by renal tubular cells: A nephron segment–specific proce...
Mechanisms of calcium oxalate crystal attachment to injured renal collecting duct cells.BackgroundRe...
Association of calcium oxalate monohydrate crystals with MDCK cells. Many factors are presently know...
Association of calcium oxalate monohydrate crystals with MDCK cells. Many factors are presently know...
Adhesion, internalization and metabolism of calcium oxalate monohydrate crystals by renal epithelial...
Adhesion, internalization and metabolism of calcium oxalate monohydrate crystals by renal epithelial...
textabstractRetention of crystals in the kidney is an essential early step in renal stone form...
Identification of hyaluronan as a crystal-binding molecule at the surface of migrating and prolifera...
Identification of hyaluronan as a crystal-binding molecule at the surface of migrating and prolifera...
Qiong-Zhi Gan,1,2 Xin-Yuan Sun,1,2 Poonam Bhadja,1,2 Xiu-Qiong Yao,1,2 Jian-Ming Ouyang1,2 1Departm...
Cell type-specific acquired protection from crystal adherence by renal tubule cells in culture.Backg...
Mechanisms of calcium oxalate crystal attachment to injured renal collecting duct cells.BackgroundRe...
Internalization of calcium oxalate crystals by renal tubular cells: A nephron segment–specific proce...
Cell type-specific acquired protection from crystal adherence by renal tubule cells in culture.Backg...
Calcium phosphate–induced renal epithelial injury and stone formation: Involvement of reactive oxyge...
Internalization of calcium oxalate crystals by renal tubular cells: A nephron segment–specific proce...
Mechanisms of calcium oxalate crystal attachment to injured renal collecting duct cells.BackgroundRe...
Association of calcium oxalate monohydrate crystals with MDCK cells. Many factors are presently know...
Association of calcium oxalate monohydrate crystals with MDCK cells. Many factors are presently know...
Adhesion, internalization and metabolism of calcium oxalate monohydrate crystals by renal epithelial...
Adhesion, internalization and metabolism of calcium oxalate monohydrate crystals by renal epithelial...
textabstractRetention of crystals in the kidney is an essential early step in renal stone form...
Identification of hyaluronan as a crystal-binding molecule at the surface of migrating and prolifera...
Identification of hyaluronan as a crystal-binding molecule at the surface of migrating and prolifera...
Qiong-Zhi Gan,1,2 Xin-Yuan Sun,1,2 Poonam Bhadja,1,2 Xiu-Qiong Yao,1,2 Jian-Ming Ouyang1,2 1Departm...
Cell type-specific acquired protection from crystal adherence by renal tubule cells in culture.Backg...
Mechanisms of calcium oxalate crystal attachment to injured renal collecting duct cells.BackgroundRe...
Internalization of calcium oxalate crystals by renal tubular cells: A nephron segment–specific proce...
Cell type-specific acquired protection from crystal adherence by renal tubule cells in culture.Backg...
Calcium phosphate–induced renal epithelial injury and stone formation: Involvement of reactive oxyge...
Internalization of calcium oxalate crystals by renal tubular cells: A nephron segment–specific proce...
Mechanisms of calcium oxalate crystal attachment to injured renal collecting duct cells.BackgroundRe...