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renal epithelial growth medium lonza cc-3191  (Lonza)


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    Structured Review

    Lonza renal epithelial growth medium lonza cc-3191
    Transport protein in U-iIOs had the functions of intestinal <t>epithelial</t> transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.
    Renal Epithelial Growth Medium Lonza Cc 3191, supplied by Lonza, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/renal epithelial growth medium lonza cc-3191/product/Lonza
    Average 90 stars, based on 1 article reviews
    renal epithelial growth medium lonza cc-3191 - by Bioz Stars, 2026-03
    90/100 stars

    Images

    1) Product Images from "Reprogramming human urine cells into intestinal organoids with long-term expansion ability and barrier function"

    Article Title: Reprogramming human urine cells into intestinal organoids with long-term expansion ability and barrier function

    Journal: Heliyon

    doi: 10.1016/j.heliyon.2024.e33736

    Transport protein in U-iIOs had the functions of intestinal epithelial transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.
    Figure Legend Snippet: Transport protein in U-iIOs had the functions of intestinal epithelial transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.

    Techniques Used: Expressing



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    Transport protein in U-iIOs had the functions of intestinal <t>epithelial</t> transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.
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    Transport protein in U-iIOs had the functions of intestinal <t>epithelial</t> transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.
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    Transport protein in U-iIOs had the functions of intestinal <t>epithelial</t> transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.
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    Transport protein in U-iIOs had the functions of intestinal <t>epithelial</t> transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.
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    Transport protein in U-iIOs had the functions of intestinal <t>epithelial</t> transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.
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    Transport protein in U-iIOs had the functions of intestinal <t>epithelial</t> transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.
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    https://www.bioz.com/result/cc-3191/product/Lonza
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    Lonza renal epithelial cell basal medium regm cc-3191
    Transport protein in U-iIOs had the functions of intestinal <t>epithelial</t> transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.
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    Lonza renal epithelial growth medium regm cc-3191
    Transport protein in U-iIOs had the functions of intestinal <t>epithelial</t> transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.
    Renal Epithelial Growth Medium Regm Cc 3191, supplied by Lonza, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/renal epithelial growth medium regm cc-3191/product/Lonza
    Average 90 stars, based on 1 article reviews
    renal epithelial growth medium regm cc-3191 - by Bioz Stars, 2026-03
    90/100 stars
      Buy from Supplier

    Image Search Results


    Transport protein in U-iIOs had the functions of intestinal epithelial transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.

    Journal: Heliyon

    Article Title: Reprogramming human urine cells into intestinal organoids with long-term expansion ability and barrier function

    doi: 10.1016/j.heliyon.2024.e33736

    Figure Lengend Snippet: Transport protein in U-iIOs had the functions of intestinal epithelial transporter. (A) The Bar graph shows the expression of transepithelial transport-related genes between the U-iIOs and the maintenance passage of U-iIOs as well as published small intestine samples. (TPM, transcripts per million). (B) Umap projection of transepithelial transport-related genes in three different morphologic regions of the small intestine: duodenum, jejunum, and ileum (data from Ref. ). (C) The pattern of annular intestinal organoid transporters. (D) FITC-dextran was not a substrate of any transporter and will not be transported into the apical side by the transporter. Rh123 will be transported into the internal organoid by the P-gp transporter. (E) Rh123 was gradually transported into the internal cavity of U-iIOs through P-gp transporters. All bars scale 50 μm.

    Article Snippet: The basic urine cell culture medium (UCCM) we used was a one-to-one mixture of Renal Epithelial Growth Medium (REGM, LONZA, CC-3191) and DMEM High Glucose (Hyclone, SH30022.01) containing 10 % FBS, 1 × L-GlutaMAX (GIBCO, 35050-061), and 1 × non-essential amino acids (NEAA; GIBCO, 11140-050).

    Techniques: Expressing