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conotoxin ctx giiib  (Alomone Labs)


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    Alomone Labs conotoxin ctx giiib
    Conotoxin Ctx Giiib, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 93/100, based on 13 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rtc-450/10__1523_slash_jneurosci__0707___25__2025-73-15-18?v=Alomone+Labs
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    conotoxin ctx giiib - by Bioz Stars, 2026-07
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    Alomone Labs conotoxin ctx giiib
    Conotoxin Ctx Giiib, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Alomone Labs chlorotoxin cltx peptide
    Study overview (A) Schematic of patient treatment. Days shown are approximate. #, final imaging occurred between days 21 and 35. (B) Schema of the dose schedule, in which optional dosing cycles (four or more) were allowed after the initial three cycles of the DLT period. To be evaluable for dose escalation, disease response, and survival, patients had to receive at least 80% of the intended <t>CLTX-CAR</t> T cell dose in each cycle 1–3. (C) Tumor MMP-2 immunoreactivity on GBM cells as well as on tumor vasculature, and overlap of MMP-2 immunoreactivity with CLTX:biotin binding, for tissue specimens from treated patients. Left, immunohistochemistry (IHC) on archival tissue used for enrollment, and surgical tissue taken at time of catheter placement (pre-treatment). Right, immunofluorescence (IF) images at pre-treatment. MMP-2 H-scores as evaluated by a neuropathologist are indicated in the IHC images. Scale bars = 100 μm except for UPN 522 IF images (scale bar = 50 μm). See also . (D) CONSORT diagram of patient enrollment and treatment. ∗, UPN 479 CLTX-CAR T cell product failed the QC transgene copy-number test (woodchuck hepatitis virus posttranscriptional regulatory element [WPRE] analysis by qPCR); ∧, ineligibility due to complications from surgery. CAR, chimeric antigen receptor; CLTX, <t>chlorotoxin;</t> DLT, dose-limiting toxicity; ICT, intracavity/intratumoral; MRI, magnetic resonance imaging; PB, peripheral blood; PET, fluorodeoxyglucose-positron emission tomography; QC, quality control; TCF, tumor cavity fluid; UPN, unique patient number.
    Chlorotoxin Cltx Peptide, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Alomone Labs tumor specific peptide ligand chlorotoxin ctx
    Study overview (A) Schematic of patient treatment. Days shown are approximate. #, final imaging occurred between days 21 and 35. (B) Schema of the dose schedule, in which optional dosing cycles (four or more) were allowed after the initial three cycles of the DLT period. To be evaluable for dose escalation, disease response, and survival, patients had to receive at least 80% of the intended <t>CLTX-CAR</t> T cell dose in each cycle 1–3. (C) Tumor MMP-2 immunoreactivity on GBM cells as well as on tumor vasculature, and overlap of MMP-2 immunoreactivity with CLTX:biotin binding, for tissue specimens from treated patients. Left, immunohistochemistry (IHC) on archival tissue used for enrollment, and surgical tissue taken at time of catheter placement (pre-treatment). Right, immunofluorescence (IF) images at pre-treatment. MMP-2 H-scores as evaluated by a neuropathologist are indicated in the IHC images. Scale bars = 100 μm except for UPN 522 IF images (scale bar = 50 μm). See also . (D) CONSORT diagram of patient enrollment and treatment. ∗, UPN 479 CLTX-CAR T cell product failed the QC transgene copy-number test (woodchuck hepatitis virus posttranscriptional regulatory element [WPRE] analysis by qPCR); ∧, ineligibility due to complications from surgery. CAR, chimeric antigen receptor; CLTX, <t>chlorotoxin;</t> DLT, dose-limiting toxicity; ICT, intracavity/intratumoral; MRI, magnetic resonance imaging; PB, peripheral blood; PET, fluorodeoxyglucose-positron emission tomography; QC, quality control; TCF, tumor cavity fluid; UPN, unique patient number.
    Tumor Specific Peptide Ligand Chlorotoxin Ctx, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Alomone Labs chlorotoxin
    Study overview (A) Schematic of patient treatment. Days shown are approximate. #, final imaging occurred between days 21 and 35. (B) Schema of the dose schedule, in which optional dosing cycles (four or more) were allowed after the initial three cycles of the DLT period. To be evaluable for dose escalation, disease response, and survival, patients had to receive at least 80% of the intended <t>CLTX-CAR</t> T cell dose in each cycle 1–3. (C) Tumor MMP-2 immunoreactivity on GBM cells as well as on tumor vasculature, and overlap of MMP-2 immunoreactivity with CLTX:biotin binding, for tissue specimens from treated patients. Left, immunohistochemistry (IHC) on archival tissue used for enrollment, and surgical tissue taken at time of catheter placement (pre-treatment). Right, immunofluorescence (IF) images at pre-treatment. MMP-2 H-scores as evaluated by a neuropathologist are indicated in the IHC images. Scale bars = 100 μm except for UPN 522 IF images (scale bar = 50 μm). See also . (D) CONSORT diagram of patient enrollment and treatment. ∗, UPN 479 CLTX-CAR T cell product failed the QC transgene copy-number test (woodchuck hepatitis virus posttranscriptional regulatory element [WPRE] analysis by qPCR); ∧, ineligibility due to complications from surgery. CAR, chimeric antigen receptor; CLTX, <t>chlorotoxin;</t> DLT, dose-limiting toxicity; ICT, intracavity/intratumoral; MRI, magnetic resonance imaging; PB, peripheral blood; PET, fluorodeoxyglucose-positron emission tomography; QC, quality control; TCF, tumor cavity fluid; UPN, unique patient number.
    Chlorotoxin, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Alomone Labs ω conotoxin giva
    Figure 7. Pharmacological inhibition of Ca2+-associated ion channels. a) Schematic of neuronal mechanosensitive receptors, hypothesized interactions activated by iNMF, and strategies to block them. (b–i) Pharmacological inhibition of 24 h afMNP exposed 14 DIV cortical networks. Blockers were added 20 min before iNMF. Line plot refers to resting Ca2+, while line and symbol are the measured asynchronous activity index (AI). b iNMF controls with DMSO. c) Stretch-activated channel non-specific inhibitor gadolinium chloride (Gd3+, 50 μм) d) N-type voltage-gated Ca2+ channel inhibitor 𝜔-conotoxin <t>GIVA</t> (CTX, 100 nм). e) P/Q-type voltage-gated Ca2+ channel inhibitor 𝜔-agatoxin IVA (AGA, 100 nм). f) SERCA pump inhibitor Cyclopiazonic Acid (CPA, 4 μм). g) SK, Ca2+ activated K channel inhibitor Apamin (APA, 100 nм). h) BK, Ca2+ activated K channel inhibitor Paxilline (PAX, 40 nм). i) IK, Ca2+
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    Alomone Labs recombinant ctx
    Figure 7. Pharmacological inhibition of Ca2+-associated ion channels. a) Schematic of neuronal mechanosensitive receptors, hypothesized interactions activated by iNMF, and strategies to block them. (b–i) Pharmacological inhibition of 24 h afMNP exposed 14 DIV cortical networks. Blockers were added 20 min before iNMF. Line plot refers to resting Ca2+, while line and symbol are the measured asynchronous activity index (AI). b iNMF controls with DMSO. c) Stretch-activated channel non-specific inhibitor gadolinium chloride (Gd3+, 50 μм) d) N-type voltage-gated Ca2+ channel inhibitor 𝜔-conotoxin <t>GIVA</t> (CTX, 100 nм). e) P/Q-type voltage-gated Ca2+ channel inhibitor 𝜔-agatoxin IVA (AGA, 100 nм). f) SERCA pump inhibitor Cyclopiazonic Acid (CPA, 4 μм). g) SK, Ca2+ activated K channel inhibitor Apamin (APA, 100 nм). h) BK, Ca2+ activated K channel inhibitor Paxilline (PAX, 40 nм). i) IK, Ca2+
    Recombinant Ctx, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Alomone Labs recombinant chlorotoxin polypeptide
    Figure 7. Pharmacological inhibition of Ca2+-associated ion channels. a) Schematic of neuronal mechanosensitive receptors, hypothesized interactions activated by iNMF, and strategies to block them. (b–i) Pharmacological inhibition of 24 h afMNP exposed 14 DIV cortical networks. Blockers were added 20 min before iNMF. Line plot refers to resting Ca2+, while line and symbol are the measured asynchronous activity index (AI). b iNMF controls with DMSO. c) Stretch-activated channel non-specific inhibitor gadolinium chloride (Gd3+, 50 μм) d) N-type voltage-gated Ca2+ channel inhibitor 𝜔-conotoxin <t>GIVA</t> (CTX, 100 nм). e) P/Q-type voltage-gated Ca2+ channel inhibitor 𝜔-agatoxin IVA (AGA, 100 nм). f) SERCA pump inhibitor Cyclopiazonic Acid (CPA, 4 μм). g) SK, Ca2+ activated K channel inhibitor Apamin (APA, 100 nм). h) BK, Ca2+ activated K channel inhibitor Paxilline (PAX, 40 nм). i) IK, Ca2+
    Recombinant Chlorotoxin Polypeptide, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Alomone Labs arginine
    Figure 7. Pharmacological inhibition of Ca2+-associated ion channels. a) Schematic of neuronal mechanosensitive receptors, hypothesized interactions activated by iNMF, and strategies to block them. (b–i) Pharmacological inhibition of 24 h afMNP exposed 14 DIV cortical networks. Blockers were added 20 min before iNMF. Line plot refers to resting Ca2+, while line and symbol are the measured asynchronous activity index (AI). b iNMF controls with DMSO. c) Stretch-activated channel non-specific inhibitor gadolinium chloride (Gd3+, 50 μм) d) N-type voltage-gated Ca2+ channel inhibitor 𝜔-conotoxin <t>GIVA</t> (CTX, 100 nм). e) P/Q-type voltage-gated Ca2+ channel inhibitor 𝜔-agatoxin IVA (AGA, 100 nм). f) SERCA pump inhibitor Cyclopiazonic Acid (CPA, 4 μм). g) SK, Ca2+ activated K channel inhibitor Apamin (APA, 100 nм). h) BK, Ca2+ activated K channel inhibitor Paxilline (PAX, 40 nм). i) IK, Ca2+
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    Alomone Labs recombinant chlorotoxin
    Figure 7. Pharmacological inhibition of Ca2+-associated ion channels. a) Schematic of neuronal mechanosensitive receptors, hypothesized interactions activated by iNMF, and strategies to block them. (b–i) Pharmacological inhibition of 24 h afMNP exposed 14 DIV cortical networks. Blockers were added 20 min before iNMF. Line plot refers to resting Ca2+, while line and symbol are the measured asynchronous activity index (AI). b iNMF controls with DMSO. c) Stretch-activated channel non-specific inhibitor gadolinium chloride (Gd3+, 50 μм) d) N-type voltage-gated Ca2+ channel inhibitor 𝜔-conotoxin <t>GIVA</t> (CTX, 100 nм). e) P/Q-type voltage-gated Ca2+ channel inhibitor 𝜔-agatoxin IVA (AGA, 100 nм). f) SERCA pump inhibitor Cyclopiazonic Acid (CPA, 4 μм). g) SK, Ca2+ activated K channel inhibitor Apamin (APA, 100 nм). h) BK, Ca2+ activated K channel inhibitor Paxilline (PAX, 40 nм). i) IK, Ca2+
    Recombinant Chlorotoxin, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Image Search Results


    Study overview (A) Schematic of patient treatment. Days shown are approximate. #, final imaging occurred between days 21 and 35. (B) Schema of the dose schedule, in which optional dosing cycles (four or more) were allowed after the initial three cycles of the DLT period. To be evaluable for dose escalation, disease response, and survival, patients had to receive at least 80% of the intended CLTX-CAR T cell dose in each cycle 1–3. (C) Tumor MMP-2 immunoreactivity on GBM cells as well as on tumor vasculature, and overlap of MMP-2 immunoreactivity with CLTX:biotin binding, for tissue specimens from treated patients. Left, immunohistochemistry (IHC) on archival tissue used for enrollment, and surgical tissue taken at time of catheter placement (pre-treatment). Right, immunofluorescence (IF) images at pre-treatment. MMP-2 H-scores as evaluated by a neuropathologist are indicated in the IHC images. Scale bars = 100 μm except for UPN 522 IF images (scale bar = 50 μm). See also . (D) CONSORT diagram of patient enrollment and treatment. ∗, UPN 479 CLTX-CAR T cell product failed the QC transgene copy-number test (woodchuck hepatitis virus posttranscriptional regulatory element [WPRE] analysis by qPCR); ∧, ineligibility due to complications from surgery. CAR, chimeric antigen receptor; CLTX, chlorotoxin; DLT, dose-limiting toxicity; ICT, intracavity/intratumoral; MRI, magnetic resonance imaging; PB, peripheral blood; PET, fluorodeoxyglucose-positron emission tomography; QC, quality control; TCF, tumor cavity fluid; UPN, unique patient number.

    Journal: Cell Reports Medicine

    Article Title: Chlorotoxin-directed CAR T cell therapy for recurrent glioblastoma: Interim clinical experience demonstrating feasibility and safety

    doi: 10.1016/j.xcrm.2025.102302

    Figure Lengend Snippet: Study overview (A) Schematic of patient treatment. Days shown are approximate. #, final imaging occurred between days 21 and 35. (B) Schema of the dose schedule, in which optional dosing cycles (four or more) were allowed after the initial three cycles of the DLT period. To be evaluable for dose escalation, disease response, and survival, patients had to receive at least 80% of the intended CLTX-CAR T cell dose in each cycle 1–3. (C) Tumor MMP-2 immunoreactivity on GBM cells as well as on tumor vasculature, and overlap of MMP-2 immunoreactivity with CLTX:biotin binding, for tissue specimens from treated patients. Left, immunohistochemistry (IHC) on archival tissue used for enrollment, and surgical tissue taken at time of catheter placement (pre-treatment). Right, immunofluorescence (IF) images at pre-treatment. MMP-2 H-scores as evaluated by a neuropathologist are indicated in the IHC images. Scale bars = 100 μm except for UPN 522 IF images (scale bar = 50 μm). See also . (D) CONSORT diagram of patient enrollment and treatment. ∗, UPN 479 CLTX-CAR T cell product failed the QC transgene copy-number test (woodchuck hepatitis virus posttranscriptional regulatory element [WPRE] analysis by qPCR); ∧, ineligibility due to complications from surgery. CAR, chimeric antigen receptor; CLTX, chlorotoxin; DLT, dose-limiting toxicity; ICT, intracavity/intratumoral; MRI, magnetic resonance imaging; PB, peripheral blood; PET, fluorodeoxyglucose-positron emission tomography; QC, quality control; TCF, tumor cavity fluid; UPN, unique patient number.

    Article Snippet: Chlorotoxin (CLTX) peptide , Alomone , Cat#RTC-450; CAS: 163515-35-3.

    Techniques: Imaging, Binding Assay, Immunohistochemistry, Immunofluorescence, Virus, Magnetic Resonance Imaging, Positron Emission Tomography, Control

    Treatment response to CLTX-CAR T cell therapy (A) Swimmer plot of treated participants and their clinical outcomes. Black lines indicate administered CAR T cell cycles. (B) MRI of UPN 487 showed absence of tumor recurrence following CLTX-CAR T cell infusions into the tumor resection cavity (yellow arrow), whereas the temporal tumor distant from the infusion site progressed (red arrow).

    Journal: Cell Reports Medicine

    Article Title: Chlorotoxin-directed CAR T cell therapy for recurrent glioblastoma: Interim clinical experience demonstrating feasibility and safety

    doi: 10.1016/j.xcrm.2025.102302

    Figure Lengend Snippet: Treatment response to CLTX-CAR T cell therapy (A) Swimmer plot of treated participants and their clinical outcomes. Black lines indicate administered CAR T cell cycles. (B) MRI of UPN 487 showed absence of tumor recurrence following CLTX-CAR T cell infusions into the tumor resection cavity (yellow arrow), whereas the temporal tumor distant from the infusion site progressed (red arrow).

    Article Snippet: Chlorotoxin (CLTX) peptide , Alomone , Cat#RTC-450; CAS: 163515-35-3.

    Techniques:

    Persistence of CLTX-CAR T cells (A) Numbers of total CD3 + T cells and CD3 + CAR-expressing T cells in the TCF as determined by flow cytometry over all treatment cycles (C1–C8 as relevant; one sample per time point). Day 0 is immediately prior to the first CLTX-CAR T cell infusion. Representative histograms showing staining for CD19 (marking CAR positivity) and CD8 expression on the CD3-gated cells are depicted at the time when CLTX-CAR T cells reached their highest levels for each participant (i.e., C6, C4, and C2 for UPNs 479, 487, and 522, respectively). Percentages of immunoreactivity are indicated in each histogram. Note that TCF was not collected from UPN 502. (B) WPRE copy numbers per μg of whole-blood DNA over time. Averages of three technical replicates are depicted. Cycles of CAR T cell administration are indicated by dashed lines. UPN 487 had surgery at day 70 upon recurrence as indicated by the arrow and after the MRI shown in A.

    Journal: Cell Reports Medicine

    Article Title: Chlorotoxin-directed CAR T cell therapy for recurrent glioblastoma: Interim clinical experience demonstrating feasibility and safety

    doi: 10.1016/j.xcrm.2025.102302

    Figure Lengend Snippet: Persistence of CLTX-CAR T cells (A) Numbers of total CD3 + T cells and CD3 + CAR-expressing T cells in the TCF as determined by flow cytometry over all treatment cycles (C1–C8 as relevant; one sample per time point). Day 0 is immediately prior to the first CLTX-CAR T cell infusion. Representative histograms showing staining for CD19 (marking CAR positivity) and CD8 expression on the CD3-gated cells are depicted at the time when CLTX-CAR T cells reached their highest levels for each participant (i.e., C6, C4, and C2 for UPNs 479, 487, and 522, respectively). Percentages of immunoreactivity are indicated in each histogram. Note that TCF was not collected from UPN 502. (B) WPRE copy numbers per μg of whole-blood DNA over time. Averages of three technical replicates are depicted. Cycles of CAR T cell administration are indicated by dashed lines. UPN 487 had surgery at day 70 upon recurrence as indicated by the arrow and after the MRI shown in A.

    Article Snippet: Chlorotoxin (CLTX) peptide , Alomone , Cat#RTC-450; CAS: 163515-35-3.

    Techniques: Expressing, Flow Cytometry, Staining

    HACA assay suggests non-immunogenicity of CLTX-CAR T cells (A) HACA assay schema. The different domains of a CLTX(EQ)28ζ CAR protein expressed on the cell surface are identified on the left. Human IgG1 molecules from participant serum or TCF that might possibly bind the extracellular domains of the CAR are depicted in gray. The fluorochrome-conjugated secondary antibody used to detect bound human IgG1 is depicted in red. A schematic of how the HACA assay was validated is depicted on the right, with the CD19t transduction marker that is also expressed as a component of the CLTX(EQ)28Z-T2A-CD19t_epHIV7 vector, the biosimilar humanized anti-CD19 IgG1 reagent (light gray), and the fluorochrome-conjugated secondary antibody (red). (B) HACA assay sensitivity was determined by titrating a biosimilar, humanized anti-CD19 antibody. The indicated concentrations of anti-CD19 (IgG1) antibody, followed by fluorochrome-conjugated anti-IgG1 secondary antibody (20 μg/mL), was used to stain CLTX(EQ)28ζ/CD19t+ (red lines) or mock-transduced (blue lines) Jurkat cells. Isotype (IgG1) control (3 μg/mL) followed by secondary antibody staining of CLTX(EQ)28ζ/CD19t+ Jurkat cells (gray lines) was also performed as a negative control. (C) Graphic representation of MFI ratios (MFI of CLTX-CAR Jurkat cells/MFI of mock Jurkat cells) from (B). Values of 1.3 or higher indicate a positive HACA response. (D) Participants’ serum (top) or TCF (bottom) samples were evaluated for IgG1 bound to CLTX(EQ)28ζ/CD19t+ (red lines) or mock-transduced (blue lines) Jurkat cells. Isotype control followed by secondary antibody staining of CLTX(EQ)28ζ/CD19t+ Jurkat cells (black lines) was again performed as a negative control. MFI ratios are indicated in each histogram. Each histogram is representative of three technical replicates.

    Journal: Cell Reports Medicine

    Article Title: Chlorotoxin-directed CAR T cell therapy for recurrent glioblastoma: Interim clinical experience demonstrating feasibility and safety

    doi: 10.1016/j.xcrm.2025.102302

    Figure Lengend Snippet: HACA assay suggests non-immunogenicity of CLTX-CAR T cells (A) HACA assay schema. The different domains of a CLTX(EQ)28ζ CAR protein expressed on the cell surface are identified on the left. Human IgG1 molecules from participant serum or TCF that might possibly bind the extracellular domains of the CAR are depicted in gray. The fluorochrome-conjugated secondary antibody used to detect bound human IgG1 is depicted in red. A schematic of how the HACA assay was validated is depicted on the right, with the CD19t transduction marker that is also expressed as a component of the CLTX(EQ)28Z-T2A-CD19t_epHIV7 vector, the biosimilar humanized anti-CD19 IgG1 reagent (light gray), and the fluorochrome-conjugated secondary antibody (red). (B) HACA assay sensitivity was determined by titrating a biosimilar, humanized anti-CD19 antibody. The indicated concentrations of anti-CD19 (IgG1) antibody, followed by fluorochrome-conjugated anti-IgG1 secondary antibody (20 μg/mL), was used to stain CLTX(EQ)28ζ/CD19t+ (red lines) or mock-transduced (blue lines) Jurkat cells. Isotype (IgG1) control (3 μg/mL) followed by secondary antibody staining of CLTX(EQ)28ζ/CD19t+ Jurkat cells (gray lines) was also performed as a negative control. (C) Graphic representation of MFI ratios (MFI of CLTX-CAR Jurkat cells/MFI of mock Jurkat cells) from (B). Values of 1.3 or higher indicate a positive HACA response. (D) Participants’ serum (top) or TCF (bottom) samples were evaluated for IgG1 bound to CLTX(EQ)28ζ/CD19t+ (red lines) or mock-transduced (blue lines) Jurkat cells. Isotype control followed by secondary antibody staining of CLTX(EQ)28ζ/CD19t+ Jurkat cells (black lines) was again performed as a negative control. MFI ratios are indicated in each histogram. Each histogram is representative of three technical replicates.

    Article Snippet: Chlorotoxin (CLTX) peptide , Alomone , Cat#RTC-450; CAS: 163515-35-3.

    Techniques: Immunopeptidomics, Transduction, Marker, Plasmid Preparation, Staining, Control, Negative Control

    Figure 7. Pharmacological inhibition of Ca2+-associated ion channels. a) Schematic of neuronal mechanosensitive receptors, hypothesized interactions activated by iNMF, and strategies to block them. (b–i) Pharmacological inhibition of 24 h afMNP exposed 14 DIV cortical networks. Blockers were added 20 min before iNMF. Line plot refers to resting Ca2+, while line and symbol are the measured asynchronous activity index (AI). b iNMF controls with DMSO. c) Stretch-activated channel non-specific inhibitor gadolinium chloride (Gd3+, 50 μм) d) N-type voltage-gated Ca2+ channel inhibitor 𝜔-conotoxin GIVA (CTX, 100 nм). e) P/Q-type voltage-gated Ca2+ channel inhibitor 𝜔-agatoxin IVA (AGA, 100 nм). f) SERCA pump inhibitor Cyclopiazonic Acid (CPA, 4 μм). g) SK, Ca2+ activated K channel inhibitor Apamin (APA, 100 nм). h) BK, Ca2+ activated K channel inhibitor Paxilline (PAX, 40 nм). i) IK, Ca2+

    Journal: Small (Weinheim an der Bergstrasse, Germany)

    Article Title: Parallelized Mechanical Stimulation of Neuronal Calcium Through Cell-Internal Nanomagnetic Forces Provokes Lasting Shifts in the Network Activity State.

    doi: 10.1002/smll.202406678

    Figure Lengend Snippet: Figure 7. Pharmacological inhibition of Ca2+-associated ion channels. a) Schematic of neuronal mechanosensitive receptors, hypothesized interactions activated by iNMF, and strategies to block them. (b–i) Pharmacological inhibition of 24 h afMNP exposed 14 DIV cortical networks. Blockers were added 20 min before iNMF. Line plot refers to resting Ca2+, while line and symbol are the measured asynchronous activity index (AI). b iNMF controls with DMSO. c) Stretch-activated channel non-specific inhibitor gadolinium chloride (Gd3+, 50 μм) d) N-type voltage-gated Ca2+ channel inhibitor 𝜔-conotoxin GIVA (CTX, 100 nм). e) P/Q-type voltage-gated Ca2+ channel inhibitor 𝜔-agatoxin IVA (AGA, 100 nм). f) SERCA pump inhibitor Cyclopiazonic Acid (CPA, 4 μм). g) SK, Ca2+ activated K channel inhibitor Apamin (APA, 100 nм). h) BK, Ca2+ activated K channel inhibitor Paxilline (PAX, 40 nм). i) IK, Ca2+

    Article Snippet: Voltage-gated Ca2+ channels N-type and P/Q type were blocked with ω-conotoxin GIVA (CTX, Alomone, final conc.

    Techniques: Inhibition, Blocking Assay, Activity Assay