Biologic Therapies for Aging Discs Dodge City KS

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Richard J Ackerman, DDS
(620) 227-2234
705 1st Ave Ste B
Dodge City, KS
Specialties
Orthodontics/Dentofacial Orthopedics

Data Provided By:
Alexander Baxter Neel, MD
(620) 225-7744
2300 N 14th Ave Ste 104
Dodge City, KS
Specialties
Orthopedics, General Surgery
Gender
Male
Education
Medical School: Univ Of Rochester Sch Of Med & Dentistry, Rochester Ny 14642
Graduation Year: 1982
Hospital
Hospital: Pratt Reg Med Ctr, Pratt, Ks; Western Plains Reg Hosp, Dodge City, Ks
Group Practice: Orthopedics & Sports Medicine

Data Provided By:
Mark Richard Rasmussen, MD
(913) 362-0031
3651 College Blvd Ste 100B
Leawood, KS
Specialties
Orthopedics
Gender
Male
Education
Medical School: Univ Of Ks Sch Of Med, Kansas City Ks 66103
Graduation Year: 1988

Data Provided By:
Thomas William Kneidel, MD
(316) 689-9545
3311 E Murdock St
Wichita, KS
Specialties
Orthopedics
Gender
Male
Education
Medical School: Univ Of Pa Sch Of Med, Philadelphia Pa 19104
Graduation Year: 1966

Data Provided By:
Steve Howell
(316) 838-2020
7550 West Village Circle
Wichita, KS
Specialty
Foot & Ankle Surgery

Data Provided By:
Alok Shah
(620) 227-1371
2020 Central Ave
Dodge City, KS
Specialty
Orthopedic Surgery

Data Provided By:
Kenneth Jansson
(316) 631-1600
2778 N Webb Rd
Wichita, KS
Business
Advanced Orthopaedics Associates
Specialties
Orthopedics, Sports Medicine, Arthroscopic Surgery
Insurance
Insurance Plans Accepted: Almost all insurance plans accepted.
Medicare Accepted: Yes
Workmens Comp Accepted: Yes
Accepts Uninsured Patients: Yes

Doctor Information
Primary Hospital: Kansas Surgery and Recovery Center; Surgicare of Wichita
Residency Training: Wilford Hall USAF Medical Center, Lackland AFB, TX
Medical School: Darthmouth, 1982
Additional Information
Member Organizations: American College of Sports Medicine American Medical Association American Medical Society for Sports Medicine American Orthopaedic Society for Sports Medicine Arthroscopy Association of North America Fellow American Academy of Orthopaedic Surgeo


Data Provided By:
Craig D Ratzlaff, DDS
(316) 722-7100
7570 W 21st St N Ste B
Wichita, KS
Specialties
Orthodontics/Dentofacial Orthopedics

Data Provided By:
Christopher Anderson
(316) 962-3030
1010 N Kansas St
Wichita, KS
Specialty
Orthopedic Surgery

Data Provided By:
Richard B Baker
(785) 537-4200
1600 Charles Pl
Manhattan, KS
Specialty
Orthopedic Surgery

Data Provided By:
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Biologic Therapies for Aging Discs

The lines and wrinkles on our faces aren't the only signs of the inevitable aging process. Progressive degenerative changes have also been documented in the spine. One of the areas of great interest is the intervertebral disc . New biologic therapies for aging discs are the subject of this review article on the topic.

There are 33 vertebrae or spinal bones. Between each vertebra is a disc made of tough cartilage with a fluid center. These discs provide the cushion that allows your backbone to bend and twist. Discs also act like shock absorbers as we walk, run, and jump. Each vertebral segment consists of bone next to bone with a cartilage cushion between. They are tied together with connective tissue, ligaments, and tendons.

Degenerative disc disease is an example of something that affects most people as they get older. Everyone is going to have a certain amount of damage to the spine. This occurs throughout a lifetime. The discs can flatten, and protrude from between the bones. In time, most people will have small tears in the outer layers of these discs.

Finding ways to repair damage to the discs is the focus of many research studies. One of the most recent directions in research has been the use of biologic therapies to restore the disc. Examples of these treatment approaches include disc cell reimplantation, stem cell implantation, disc denervation, injection of therapeutic proteins, and gene therapy.

What are these therapies and how do they work? Biologic therapies of this type are meant to help at the cellular level. Scientists have shown that inside the cells of the disc there is a limited amount of blood flow. As a result, there are waste products building up. The cell becomes very acidic and that is a harsh environment that doesn't support cell health very well.

As we age, there are fewer new cells to replace the old. Fluid leaks out of the discs that never gets replaced. We start to lose the strength of the discs needed to cushion and support the spine. A loss of disc height can lead to disc space collapse.

That's what's happening on the inside at the cellular level. On the outside, the affected individual may not feel anything until the degenerative process has gone on quite a while. Eventually, back pain, loss of motion, and loss of function get our attention. By then, there may not be much that can be done to save the disc. Right now, surgery to remove the disc is often the only option.

That could change if any of these biologic therapies can be perfected. Right now they are still in the experimental stages. Most of the studies have been done on animals but a few human trials have been conducted.

For example, disc tissue reimplantation is a process in which a few healthy cells are removed from an intact disc. They are taken to a lab where they can be multiplied and then reinjected into the diseased disc. The hope is that the new, healthy cells will replace the damaged cells and restore the strength of t...

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