Wave Beaded Tulle Strapless Column Gown
Pamella Roland
$7370.00
Product Insights & Style Tips
The Wave Beaded Tulle Strapless Column Gown from Pamella Roland reads like a modern red carpet moment. A sculpted strapless neckline anchors a clean column silhouette, while wavy sequins and crystal bead embroidery ride along the tulle in a fluid, iridescent line. Floor length and refined, the gown glides with you, its outer layer catching the light over a smooth silk lining for a polished, effortless fall.
With a strapless, sleeveless bodice, it hugs the torso through the evening and beyond, moving with ease as you pose or walk. An invisible back zip keeps the seam invisible, and a center-back slit gives you room to stride. Made in the USA from imported materials, the gown pairs a polyester shell with a silk lining and calls for dry cleaning. The model is 5'10\" tall and wears a US size 4/Small for reference.
Pamella Roland leans into couture-level shimmer and structured glamour, and this gown is a direct hit of that code. Priced at 7370, it pairs with minimal jewelry and sleek heels to let the wave beadwork do the talking, or with a bold clutch for a high-drama moment.
Materials / Fabrication
- Tulle outer layer with wave beaded sequins and crystal bead embroidery
- Strapless sleeveless bodice
- Floor-length column silhouette
- Shell: polyester
- Lining: silk
- Made in the USA from imported materials
- Invisible back zipper
- Center-back slit
Recommended Care
- Dry clean only to preserve beaded tulle and silk lining
- Avoid machine washing, soaking, or tumble drying
- If steaming is used, keep steamer at a distance and avoid direct contact with the beads
- Store on a padded hanger or in a garment bag to protect embellishments
Fit Notes
- The strapless bodice hugs the torso, creating a fitted, column silhouette.
- Floor-length gown with a beaded tulle exterior over a smooth silk lining.
- An invisible back zip keeps the seam clean, with a center-back slit for movement.
- The silk lining drapes smoothly under a beaded tulle surface.