IP Library Granted Patent US 12667459
Granted Patent B2
US 12667459 · App. 19/289,587 · Granted Jun 30, 2026

Penile implant and method of implantation

Inventor: Greydon Wesley Nedblake (St Petersburg, FL)
A61F2/26A61F2210/0009A61F2210/0057A61F2250/0078
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Quick Facts
Patent No.
US 12667459
App. No.
19/289,587
Granted
Jun 30, 2026
Kind
B2
Abstract

A body implantable penile prosthetic assembly includes a reservoir, a penile implant, and a pump. The reservoir is for containing a saline solution. The penile implant is penile implant operable to shift between a flaccid state in which the penile implant is at least partially depleted of the saline solution and an erect state in which the penile implant receives the saline solution from the one or more reservoirs. The pump is configured to generate pressure that causes the saline solution to flow from the reservoir to the penile implant to cause the penile implant to form the erect state. The penile implant includes a cylinder for receiving the saline solution. The cylinder is formed from a multilayered material having an inner layer comprising polyester and an outer layer comprising silicone.

Claims (29)

1 . A body implantable penile prosthetic assembly comprising:

one or more reservoir for containing a fluid;

a penile implant operable to shift between an erect state in which the penile implant receives a volume of the fluid from the one or more reservoir and a flaccid state in which at least a portion of the volume of the fluid exits the penile implant; and

one or more pump configured to generate pressure for causing the volume of the fluid to flow from the one or more reservoir to the penile implant to shift the penile implant to the erect state,

wherein the penile implant comprises one or more bladder for receiving the volume of the fluid, the one or more bladder being formed from a multilayered material having an inner layer comprising a polymeric material, an outer layer comprising silicone, and a stem cell coating operatively associated with the outer layer.

2 . The body implantable penile prosthetic assembly of claim 1 , wherein the outer layer is configured to receive the stem cell coating via at least one of an application of an acid, an application of adhesive, a plasma treatment, or a laser treatment.

3 . The body implantable penile prosthetic assembly of claim 1 , wherein the stem cell coating comprises human adipose-derived stem cells.

4 . The body implantable penile prosthetic assembly of claim 1 , further comprising one or more portion comprising a resilient portion operatively associated with a proximal end of the one or more bladder.

5 . The body implantable penile prosthetic assembly of claim 1 , wherein the one or more pump comprises one or more electrical motor, further comprising a controller in communication with the one or more electrical motor, the controller comprising a wireless communication element configured to receive a wireless signal representative of an instruction to cause the penile implant to form the erect state.

6 . The body implantable penile prosthetic assembly of claim 5 , further comprising one or more energy storage device electrically connected to the controller and the one or more electrical motor.

7 . The body implantable penile prosthetic assembly of claim 5 , further comprising a wireless charging system configured to receive an electromagnetic signal and convert the electromagnetic signal to electric current for supplying to the one or more electrical motor.

8 . The body implantable penile prosthetic assembly of claim 1 , wherein the penile implant includes one or more additional bladders.

9 . The body implantable penile prosthetic assembly of claim 1 , wherein the polymeric material comprises biaxially oriented polyester.

10 . A method of providing a patient with the body implantable penile prosthetic of claim 1 , the method comprising:

inserting the one or more reservoir into the abdomen of the patient;

inserting the penile implant into one or more of the corpora cavernosa of the patient;

inserting the one or more pump into at least one of the abdomen or the scrotum of the patient.

11 . The method of claim 10 , further comprising applying the stem cell coating to the exterior surface of the layer comprising silicone before inserting the penile implant.

12 . The method of claim 11 , further comprising plasma treating the exterior surface of the layer comprising silicone prior to applying the stem cell coating.

13 . The method of claim 12 , further comprising applying one or more peptides to the plasma treated exterior surface of the layer comprising silicone prior to applying the stem cell coating.

14 . The method of claim 10 , wherein the one or more pump comprises one or more electrical motor, further comprising electrically connecting a controller in communication with the one or more electrical motor, the controller comprising a wireless communication element configured to receive a wireless signal representative of an instruction to cause the penile implant to shift to the erect state.

15 . The method of claim 14 , further comprising electrically connecting one or more energy storage device to the controller and the one or more electrical motor.

16 . A body implantable penile prosthetic assembly comprising:

one or more reservoir for containing a fluid;

a penile implant operable to shift between an erect state in which the penile implant receives a volume of the fluid from the one or more reservoir and a flaccid state in which at least a portion of the volume of the fluid exits the penile implant; and

one or more pump configured to generate pressure for causing the volume of the fluid to flow from the one or more reservoir to the penile implant to shift the penile implant to the erect state,

wherein the penile implant comprises two or more bladders for receiving the volume of the fluid, each of the two or more bladders being formed from a multilayered material having an inner layer comprising polymeric material having a thickness less than 17.78 microns, an outer layer comprising silicone, and a stem cell coating operatively associated with the outer layer.

17 . The body implantable penile prosthetic assembly of claim 16 , wherein the one or more pump comprises one or more electrical motor, further comprising a controller in communication with the one or more electrical motor, the controller comprising a wireless communication element configured to receive a wireless signal representative of an instruction to cause the penile implant to form the erect state.

18 . The body implantable penile prosthetic assembly of claim 17 , wherein the one or more reservoir includes at least three reservoirs.