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Characterizing Glomerular Barrier Dysfunction with Patient-Derived Serum in Glomerulus-on-a-Chip Models: Unveiling New Insights into Glomerulonephritis.
Kim, Shin Young; Choi, Yun Yeong; Kwon, Eun Jeong; Seo, Seungwan; Kim, Wan Young; Park, Sung Hyuk; Park, Seokwoo; Chin, Ho Jun; Na, Ki Young; Kim, Sejoong.
Afiliación
  • Kim SY; Department of Internal Medicine, Seoul National University Bundang Hospital, Seongnam-si 13620, Republic of Korea.
  • Choi YY; Department of Internal Medicine, Seoul National University Bundang Hospital, Seongnam-si 13620, Republic of Korea.
  • Kwon EJ; Department of Internal Medicine, Seoul National University College of Medicine, Seoul 03080, Republic of Korea.
  • Seo S; Osong Medical Innovation Foundation, Cheongju-si 28161, Republic of Korea.
  • Kim WY; Department of Internal Medicine, Seoul National University Bundang Hospital, Seongnam-si 13620, Republic of Korea.
  • Park SH; Department of Internal Medicine, Seoul National University Bundang Hospital, Seongnam-si 13620, Republic of Korea.
  • Park S; Department of Internal Medicine, Seoul National University College of Medicine, Seoul 03080, Republic of Korea.
  • Chin HJ; Osong Medical Innovation Foundation, Cheongju-si 28161, Republic of Korea.
  • Na KY; Department of Internal Medicine, Seoul National University College of Medicine, Seoul 03080, Republic of Korea.
  • Kim S; Department of Internal Medicine, Seoul National University Bundang Hospital, Seongnam-si 13620, Republic of Korea.
Int J Mol Sci ; 25(10)2024 May 08.
Article en En | MEDLINE | ID: mdl-38791159
ABSTRACT
Glomerulonephritis (GN) is characterized by podocyte injury or glomerular filtration dysfunction, which results in proteinuria and eventual loss of kidney function. Progress in studying the mechanism of GN, and developing an effective therapy, has been limited by the absence of suitable in vitro models that can closely recapitulate human physiological responses. We developed a microfluidic glomerulus-on-a-chip device that can recapitulate the physiological environment to construct a functional filtration barrier, with which we investigated biological changes in podocytes and dynamic alterations in the permeability of the glomerular filtration barrier (GFB) on a chip. We also evaluated the potential of GN-mimicking devices as a model for predicting responses to human GN. Glomerular endothelial cells and podocytes successfully formed intact monolayers on opposite sides of the membrane in our chip device. Permselectivity analysis confirmed that the chip was constituted by a functional GFB that could accurately perform differential clearance of albumin and dextran. Reduction in cell viability resulting from damage was observed in all serum-induced GN models. The expression of podocyte-specific marker WT1 was also decreased. Albumin permeability was increased in most models of serum-induced IgA nephropathy (IgAN) and membranous nephropathy (MN). However, sera from patients with minimal change disease (MCD) or lupus nephritis (LN) did not induce a loss of permeability. This glomerulus-on-a-chip system may provide a platform of glomerular cell culture for in vitro GFB in formation of a functional three-dimensional glomerular structure. Establishing a disease model of GN on a chip could accelerate our understanding of pathophysiological mechanisms of glomerulopathy.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Podocitos / Dispositivos Laboratorio en un Chip / Glomerulonefritis / Glomérulos Renales Límite: Humans Idioma: En Revista: Int J Mol Sci Año: 2024 Tipo del documento: Article

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Podocitos / Dispositivos Laboratorio en un Chip / Glomerulonefritis / Glomérulos Renales Límite: Humans Idioma: En Revista: Int J Mol Sci Año: 2024 Tipo del documento: Article