(a) How many chirality centers does prostacyclin have? Mark each of them. (b) Draw the structure of enantiomer of Prostacyclin I₂. HO*** HO Prostacyclin I₂ OH

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### Prostacyclin I₂ in Biological Systems

Prostacyclin I₂ is an important compound known for its diverse physiological roles in animal bodies. Below are the details concerning its structure and the tasks related to it.

#### Tasks:

(a) **Chirality Centers in Prostacyclin**

- **Identification of Chirality Centers:** Determine the number of chirality centers in prostacyclin I₂ and mark each one on the structure.

(b) **Enantiomer of Prostacyclin I₂**

- **Drawing the Enantiomer:** Illustrate the structure of the enantiomer of prostacyclin I₂.

#### Structural Details:

- **Prostacyclin I₂ Structure:** The chemical structure provided shows a complex arrangement featuring various functional groups, including hydroxyl groups (OH) and a ketone group (C=O). The backbone is composed of carbon chains with stereochemistry indicated by wedge and dash bonds, which denote the 3D orientation of the atoms essential for identifying chirality centers.

**Note:** Understanding the precise configuration of chiral centers is crucial for interpreting the biological activity of prostacyclin I₂ and its enantiomers.
Transcribed Image Text:### Prostacyclin I₂ in Biological Systems Prostacyclin I₂ is an important compound known for its diverse physiological roles in animal bodies. Below are the details concerning its structure and the tasks related to it. #### Tasks: (a) **Chirality Centers in Prostacyclin** - **Identification of Chirality Centers:** Determine the number of chirality centers in prostacyclin I₂ and mark each one on the structure. (b) **Enantiomer of Prostacyclin I₂** - **Drawing the Enantiomer:** Illustrate the structure of the enantiomer of prostacyclin I₂. #### Structural Details: - **Prostacyclin I₂ Structure:** The chemical structure provided shows a complex arrangement featuring various functional groups, including hydroxyl groups (OH) and a ketone group (C=O). The backbone is composed of carbon chains with stereochemistry indicated by wedge and dash bonds, which denote the 3D orientation of the atoms essential for identifying chirality centers. **Note:** Understanding the precise configuration of chiral centers is crucial for interpreting the biological activity of prostacyclin I₂ and its enantiomers.
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