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المحتوى المقدم من BackTable Inc.. يتم تحميل جميع محتويات البودكاست بما في ذلك الحلقات والرسومات وأوصاف البودكاست وتقديمها مباشرة بواسطة BackTable Inc. أو شريك منصة البودكاست الخاص بهم. إذا كنت تعتقد أن شخصًا ما يستخدم عملك المحمي بحقوق الطبع والنشر دون إذنك، فيمكنك اتباع العملية الموضحة هنا https://ar.player.fm/legal.
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Ep. 564 Pressure-Enabled Drug Delivery in HCC & Metastatic Liver Lesions with Dr. Zach Berman

58:18
 
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Manage episode 499713679 series 2658136
المحتوى المقدم من BackTable Inc.. يتم تحميل جميع محتويات البودكاست بما في ذلك الحلقات والرسومات وأوصاف البودكاست وتقديمها مباشرة بواسطة BackTable Inc. أو شريك منصة البودكاست الخاص بهم. إذا كنت تعتقد أن شخصًا ما يستخدم عملك المحمي بحقوق الطبع والنشر دون إذنك، فيمكنك اتباع العملية الموضحة هنا https://ar.player.fm/legal.

Can you manipulate blood flow in the tumor microenvironment to optimize drug delivery? In this episode of the BackTable Podcast, interventional oncologist Dr. Zachary Berman (UC San Diego) joins host Dr. Christopher Beck to discuss real-world applications of pressure-enabled drug delivery in locoregional liver-directed therapies like TACE and Y90.
---
This podcast is supported by:
TriSalus Life Sciences
http://trinavinfusion.com/
---
SYNPOSIS
The conversation begins with an overview of the tumor microvascular environment, focusing on the abnormal nature of the new vessels that feed tumors. They then discuss the genesis of pressure-enabled drug delivery and the theory behind its efficacy. Dr. Berman explains the TriNav catheter’s micro-valve design, its anti-reflux properties, and how these features enhance tumor drug delivery. He walks through his own procedure technique, comparing and contrasting it to standard embolization, and details the utility of pressure-enabled drug delivery in lobar radioembolization and larger tumors. They also explore the benefits of both balloon occlusion and microvalve catheters.
Real-world cases—including neuroendocrine tumors, segmental HCC, and more—illustrate the thought process around when to use specialized technologies. The episode wraps up with a discussion of the future implications for this technology in other pathologies, cost considerations, and the potential for enhancing drug delivery with innovative approaches.
---
TIMESTAMPS
00:00 - Introduction
01:39 - The Tumor Microenvironment
06:59 - Pressure-Enabled Drug Delivery Explained
09:37 - Technical Aspects of Pressure-Enabled Catheters
21:48 - Case 1: Grade 3 Neuroendocrine Tumor
34:06 - Case 2: Hepatocellular Carcinoma with Tumor and Vein
36:01 - Case 3: TACE for Segmental HCC in Decompensated Cirrhosis
38:58 - Case 4: Large Heterogenous Cholangiocarcinoma
40:40 - Case 5: Lobar Neuroendocrine Tumor
42:38 - Case 6: Segmental HCC with Central Necrosis
47:52 - Best Practices and Technical Considerations
57:52 - Future Directions in Pressure-Directed Embolotherapy
59:48 - Conclusion and Final Thoughts
---
RESOURCES
JVIR 2024 Jaroch et al.:
https://pubmed.ncbi.nlm.nih.gov/38969336/

  continue reading

602 حلقات

Artwork
iconمشاركة
 
Manage episode 499713679 series 2658136
المحتوى المقدم من BackTable Inc.. يتم تحميل جميع محتويات البودكاست بما في ذلك الحلقات والرسومات وأوصاف البودكاست وتقديمها مباشرة بواسطة BackTable Inc. أو شريك منصة البودكاست الخاص بهم. إذا كنت تعتقد أن شخصًا ما يستخدم عملك المحمي بحقوق الطبع والنشر دون إذنك، فيمكنك اتباع العملية الموضحة هنا https://ar.player.fm/legal.

Can you manipulate blood flow in the tumor microenvironment to optimize drug delivery? In this episode of the BackTable Podcast, interventional oncologist Dr. Zachary Berman (UC San Diego) joins host Dr. Christopher Beck to discuss real-world applications of pressure-enabled drug delivery in locoregional liver-directed therapies like TACE and Y90.
---
This podcast is supported by:
TriSalus Life Sciences
http://trinavinfusion.com/
---
SYNPOSIS
The conversation begins with an overview of the tumor microvascular environment, focusing on the abnormal nature of the new vessels that feed tumors. They then discuss the genesis of pressure-enabled drug delivery and the theory behind its efficacy. Dr. Berman explains the TriNav catheter’s micro-valve design, its anti-reflux properties, and how these features enhance tumor drug delivery. He walks through his own procedure technique, comparing and contrasting it to standard embolization, and details the utility of pressure-enabled drug delivery in lobar radioembolization and larger tumors. They also explore the benefits of both balloon occlusion and microvalve catheters.
Real-world cases—including neuroendocrine tumors, segmental HCC, and more—illustrate the thought process around when to use specialized technologies. The episode wraps up with a discussion of the future implications for this technology in other pathologies, cost considerations, and the potential for enhancing drug delivery with innovative approaches.
---
TIMESTAMPS
00:00 - Introduction
01:39 - The Tumor Microenvironment
06:59 - Pressure-Enabled Drug Delivery Explained
09:37 - Technical Aspects of Pressure-Enabled Catheters
21:48 - Case 1: Grade 3 Neuroendocrine Tumor
34:06 - Case 2: Hepatocellular Carcinoma with Tumor and Vein
36:01 - Case 3: TACE for Segmental HCC in Decompensated Cirrhosis
38:58 - Case 4: Large Heterogenous Cholangiocarcinoma
40:40 - Case 5: Lobar Neuroendocrine Tumor
42:38 - Case 6: Segmental HCC with Central Necrosis
47:52 - Best Practices and Technical Considerations
57:52 - Future Directions in Pressure-Directed Embolotherapy
59:48 - Conclusion and Final Thoughts
---
RESOURCES
JVIR 2024 Jaroch et al.:
https://pubmed.ncbi.nlm.nih.gov/38969336/

  continue reading

602 حلقات

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