Product Images Clearskin Pore Penetrating Cooling Toner

View Photos of Packaging, Labels & Appearance

Product Label Images

The following 3 images provide visual information about the product associated with Clearskin Pore Penetrating Cooling Toner NDC 10096-0289 by Avon Products, Inc., such as packaging, labeling, and the appearance of the drug itself. This resource could be helpful for medical professionals, pharmacists, and patients seeking to verify medication information and ensure they have the correct product.

image of DFB - Clearskin Toner DFB1

image of DFB - Clearskin Toner DFB1

This is a drug facts label that provides information on the active ingredient and its purpose. The active ingredient is Salicylic Acid at a concentration of 0.5%, and it is intended for the treatment of acne.*

image of DFB - Clearskin Toner DFB2

image of DFB - Clearskin Toner DFB2

Uses for the treatment of acne to penetrate pores and help control acne blemishes. The product is for external use only. It is advised to avoid contact with eyes and in case of contact, rinse thoroughly with water. Skin irritation and dryness are more likely to occur if used with another topical acne medication at the same time. It is recommended to use only one topical acne medication at a time unless directed by a healthcare practitioner. Stop use and ask a doctor if skin or eye irritation develops or increases. The product should be kept out of the reach of children. Inactive ingredients include water, alcohol, hamamelis virginiana extract, tea tree oil, eucalyptus globulus leaf extract, aloe barbadensis leaf extract, menthol, and others. If there are any questions, contact the manufacturer.*

image of PDP - Clearskin Toner PDP

image of PDP - Clearskin Toner PDP

This appears to be the label of a skincare product called "Cooling Toner". It is designed to penetrate the pores and contains an active ingredient, Salicyc Avg 08%, which may assist in treating acne. The product comes in a 250ml (8.4 fl oz) bottle.*

* The product label images have been analyzed using a combination of traditional computing and machine learning techniques. It should be noted that the descriptions provided may not be entirely accurate as they are experimental in nature. Use the information in this page at your own discretion and risk.