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Antisense oligonucleotides

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Manage episode 418688752 series 3361449
Contenuto fornito da Labiotech. Tutti i contenuti dei podcast, inclusi episodi, grafica e descrizioni dei podcast, vengono caricati e forniti direttamente da Labiotech o dal partner della piattaforma podcast. Se ritieni che qualcuno stia utilizzando la tua opera protetta da copyright senza la tua autorizzazione, puoi seguire la procedura descritta qui https://it.player.fm/legal.

German-headquartered Isarna Therapeutics is developing a portfolio of antisense therapies targeting an emerging therapeutic field in human biology – transforming growth factor beta (TGF-B) signaling.

Precise modulation of TGF-B pathways using antisense therapy may result in safer and more effective treatment options for a broad range of indications.

The company’s lead compound, ISTH0036, is in clinical development in ophthalmology.

On the podcast this week we chat with René Rückert, chief operating officer at Isarna Therapeutics, who explains TGF-B and antisense oligonucleotides’ role in tackling disease.

00:59-02:45: About Isarna Therapeutics
02:45-05:05: What is transforming growth factor beta?
05:05-06:16: Why is TGF a good target?
06:16-09:00: What are antisense oligonucleotides?
09:00-10:02: What are antisense oligonucleotides useful for treating?
10:02-11:21: What advantages do antisense oligonucleotides have?
11:21-13:00: How can antisense oligonucleotides be delivered?
13:00-14:58: Are antisense oligonucleotides still being researched?
14:58-16:31: Are there challenges with using antisense oligonucleotides?
16:31-16:56: Are many companies working on antisense oligonucleotides?
16:56-18:06: Are antisense oligonucleotides best used as a monotherapy or with other treatments?
18:06-20:42: What is Isarna’s pipeline?
20:42-22:47: How does your AMD treatment work?
22:47-23:50: What is the timeline for your treatment?
23:50-26:34: What can patients expect?

Interested in being a sponsor of an episode of our podcast? Discover how you can get involved here!

Stay updated by subscribing to our newsletter

  continue reading

Capitoli

1. Antisense oligonucleotides (00:00:00)

2. About Isarna Therapeutics
 (00:00:59)

3. What is transforming growth factor (TGF) beta?
 (00:02:45)

4. Why is TGF a good target?
 (00:05:05)

5. What are antisense oligonucleotides?
 (00:06:16)

6. What are antisense oligonucleotides?
 (00:09:00)

7. What advantages do antisense oligonucleotides have?
 (00:10:02)

8. How can antisense oligonucleotides be delivered?
 (00:11:21)

9. Are antisense oligonucleotides still being researched?
 (00:13:00)

10. Are there challenges with using antisense oligonucleotides?
 (00:14:58)

11. Are many companies working on antisense oligonucleotides?
 (00:16:31)

12. Are antisense oligonucleotides best used as a monotherapy or with other treatments?
 (00:16:56)

13. What is Isarna’s pipeline?
 (00:18:06)

14. How does your AMD treatment work?
 (00:20:42)

15. What is the timeline for your treatment?
 (00:22:47)

16. What can patients expect? (00:23:50)

110 episodi

Artwork
iconCondividi
 
Manage episode 418688752 series 3361449
Contenuto fornito da Labiotech. Tutti i contenuti dei podcast, inclusi episodi, grafica e descrizioni dei podcast, vengono caricati e forniti direttamente da Labiotech o dal partner della piattaforma podcast. Se ritieni che qualcuno stia utilizzando la tua opera protetta da copyright senza la tua autorizzazione, puoi seguire la procedura descritta qui https://it.player.fm/legal.

German-headquartered Isarna Therapeutics is developing a portfolio of antisense therapies targeting an emerging therapeutic field in human biology – transforming growth factor beta (TGF-B) signaling.

Precise modulation of TGF-B pathways using antisense therapy may result in safer and more effective treatment options for a broad range of indications.

The company’s lead compound, ISTH0036, is in clinical development in ophthalmology.

On the podcast this week we chat with René Rückert, chief operating officer at Isarna Therapeutics, who explains TGF-B and antisense oligonucleotides’ role in tackling disease.

00:59-02:45: About Isarna Therapeutics
02:45-05:05: What is transforming growth factor beta?
05:05-06:16: Why is TGF a good target?
06:16-09:00: What are antisense oligonucleotides?
09:00-10:02: What are antisense oligonucleotides useful for treating?
10:02-11:21: What advantages do antisense oligonucleotides have?
11:21-13:00: How can antisense oligonucleotides be delivered?
13:00-14:58: Are antisense oligonucleotides still being researched?
14:58-16:31: Are there challenges with using antisense oligonucleotides?
16:31-16:56: Are many companies working on antisense oligonucleotides?
16:56-18:06: Are antisense oligonucleotides best used as a monotherapy or with other treatments?
18:06-20:42: What is Isarna’s pipeline?
20:42-22:47: How does your AMD treatment work?
22:47-23:50: What is the timeline for your treatment?
23:50-26:34: What can patients expect?

Interested in being a sponsor of an episode of our podcast? Discover how you can get involved here!

Stay updated by subscribing to our newsletter

  continue reading

Capitoli

1. Antisense oligonucleotides (00:00:00)

2. About Isarna Therapeutics
 (00:00:59)

3. What is transforming growth factor (TGF) beta?
 (00:02:45)

4. Why is TGF a good target?
 (00:05:05)

5. What are antisense oligonucleotides?
 (00:06:16)

6. What are antisense oligonucleotides?
 (00:09:00)

7. What advantages do antisense oligonucleotides have?
 (00:10:02)

8. How can antisense oligonucleotides be delivered?
 (00:11:21)

9. Are antisense oligonucleotides still being researched?
 (00:13:00)

10. Are there challenges with using antisense oligonucleotides?
 (00:14:58)

11. Are many companies working on antisense oligonucleotides?
 (00:16:31)

12. Are antisense oligonucleotides best used as a monotherapy or with other treatments?
 (00:16:56)

13. What is Isarna’s pipeline?
 (00:18:06)

14. How does your AMD treatment work?
 (00:20:42)

15. What is the timeline for your treatment?
 (00:22:47)

16. What can patients expect? (00:23:50)

110 episodi

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