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Genetic Testing

DDR2 Gene Spondylometaepiphyseal Dysplasia Short Limb-Hand Type Genetic Test

Genetic test using Next Generation Sequencing (NGS) to analyze the DDR2 gene for mutations associated with Spondylometaepiphyseal Dysplasia, Short Limb-Hand Type. Helps diagnose skeletal dysplasia.

General information only: This page is not a diagnosis or personal medical advice. A qualified clinician should decide whether testing is appropriate and interpret results in context.

Review status: No completed medical review is recorded for this page.

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Counselor guidance included Confidential handling Kenya-wide coordination

At a glance

Plan your test

Sample
Blood sample (EDTA tube) or Saliva sample. Confirm specific requirements with the laboratory before booking.
Results
Confirm with the laboratory before booking.
Preparation
No special preparation is typically required for a blood or saliva sample. Confirm with the laboratory before booking.
Test priceKSh 40,000

Payment: M-Pesa and card options can be confirmed during booking.

Insurance & government schemes

Is this test covered for you?

We help you verify whether the DDR2 Gene Spondylometaepiphyseal Dysplasia Short Limb-Hand Type Genetic Test test can be claimed against your insurer, employer scheme or a Kenyan government health scheme — before you book. Coverage depends on your plan, clinical indication and your provider's rules; final approval always rests with them.

Talk to a claims advisor

Providers & schemes we can help you check

Government & public schemes

SHIF — Social Health Insurance Fund Linda Mama EduAfya NHIF (legacy cards)

Eligibility and benefits follow the current rules of the Social Health Authority (SHA) and applicable government programmes.

Private insurers & employer schemes

Jubilee Health AAR APA Britam CIC Madison Resolution Pioneer Minet Old Mutual GA Life Heritage + other licensed insurers

Names shown for identification only — listing does not imply partnership or guarantee of coverage.

Have these ready when we check

  • Insurer or scheme name & policy / member number
  • A clinician's request / prescription for the test
  • Pre-authorisation letter, if your plan requires one

Free coverage check

Ask us to verify your cover

Send your details and our claims team confirms what documents you need and whether pre-authorisation applies — usually the same working day.

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Used only to process your coverage check — see our Privacy Policy. Verification support is free and does not guarantee your provider will pay.

01

Start with fit

Is this the right test for you?

The best test starts with a clear clinical question. These are common reasons a clinician or family may consider this test.

  • ✓Suspected Spondylometaepiphyseal Dysplasia, Short Limb-Hand Type
  • ✓Short stature with abnormal bone growth
  • ✓Family history of skeletal dysplasia
  • ✓Symptoms of joint pain or mobility issues related to bone development
  • ✓Differential diagnosis of skeletal dysplasias
02

In plain language

What this test helps you understand

This test helps confirm a diagnosis of Spondylometaepiphyseal Dysplasia, Short Limb-Hand Type, by identifying mutations in the DDR2 gene. It aids in understanding the genetic basis of skeletal dysplasia and can inform management strategies.
The DDR2 Gene Spondylometaepiphyseal Dysplasia Short Limb-Hand Type NGS Genetic DNA Test is a diagnostic tool used to identify genetic changes in the DDR2 gene. This gene provides instructions for making a protein important for bone development. Mutations in this gene are linked to a specific type of skeletal dysplasia, a group of disorders affecting bone and cartilage growth.

This test utilizes Next Generation Sequencing (NGS) technology for a detailed analysis of the DDR2 gene. Understanding genetic conditions is crucial for effective management and treatment planning. This test provides valuable information to healthcare professionals diagnosing and managing patients with symptoms suggestive of skeletal disorders.

The test specifically looks for mutations within the DDR2 gene that are known to cause Spondylometaepiphyseal Dysplasia, Short Limb-Hand Type. Identifying these mutations can help confirm a diagnosis, understand the specific genetic basis of the condition, and inform potential management strategies.

Individuals experiencing symptoms like short stature, abnormal bone growth, joint pain, or mobility issues, especially with a family history of skeletal dysplasia, may be candidates for this test. The results can aid in accurate diagnosis, guide treatment decisions, and provide information about the risk of passing the condition to future generations. A genetic counseling session is recommended to discuss the results and their implications.
03

Medical review status

Clinical review pending

A completed medical review is not recorded for this page. No clinician has endorsed the information shown here. Please discuss testing decisions with a qualified healthcare professional.

Meet the DNA Labs Kenya medical team →
04

A simple process

What happens next?

You do not have to navigate the test alone. We help you move from question to next step.

1

Speak with us

We check the test and answer your questions before collection.

2

Give your sample

Choose home collection or a coordinated hub visit in Kenya. We explain whether this test uses a cheek swab or blood draw.

3

Understand your report

A counselor helps you understand the result and the next steps.

05

Choose your collection

Home collection or a lab visit

We will explain the sample, preparation, and next steps before anything is collected.

Home collection

Choose a coordinated visit at home or another convenient location. Our team confirms the appointment and sample requirements in advance.

Lab or hub visit

Prefer to visit a coordinated location? We can guide you to the right hub and explain what to expect when you arrive.

Ask about locations →
PreparationNo special preparation is typically required for a blood or saliva sample. Confirm with the laboratory before booking.
SampleBlood sample (EDTA tube) or Saliva sample. Confirm specific requirements with the laboratory before booking.
MethodologyNext Generation Sequencing (NGS) of the DDR2 gene.
PrivacyYour sample and report are handled confidentially. Ask the team how your information is stored and shared.
This test analyzes specific regions of the DDR2 gene. It may not detect all possible mutations, such as deep intronic changes or large deletions/duplications not detectable by NGS. Results must be interpreted in the context of clinical findings and family history. Confirm with the laboratory before booking.
06

Read your report

What common result terms mean

PositiveA finding was identified. Your clinician or counselor will explain what it means for your care.
NegativeThe specific finding tested for was not identified. It does not rule out every possible cause.
VUSA variant was found, but current evidence is not enough to classify it. Your counselor can explain follow-up.
07

Questions people ask

Frequently asked questions

This is a genetic disorder affecting bone and cartilage growth, leading to short stature and skeletal abnormalities. It is caused by mutations in the DDR2 gene.
Individuals with symptoms like short stature, abnormal bone growth, joint issues, or a family history of skeletal dysplasia may be candidates for this test.
The test is performed on a blood or saliva sample using Next Generation Sequencing (NGS) technology to analyze the DDR2 gene.
Confirm with the laboratory before booking.
Results indicate the presence or absence of specific mutations in the DDR2 gene. A genetic counselor can help interpret the results in the context of your clinical picture.
A genetic counseling session is recommended to discuss the results and implications, but confirm availability and cost with the laboratory.
08

Collaboration

Open for partnership with hospitals, clinics, doctors & researchers

Whether you are referring patients, building a research programme or supporting students, we work as an extension of your team — with responsive communication and clear scientific standards.

Hospitals & clinics

Referral pathways, coordinated sample logistics and shared reporting that fits your clinical workflow.

Doctors & specialists

LOINC-coded reports, ACMG-based variant classification and a direct scientific line for complex cases.

Research institutions

Sanger sequencing, NGS panels and custom assays — with project design support, batch pricing and agreed turnaround commitments.

Students & academic projects

Discounted laboratory services for college, master's and PhD research projects — including proposal guidance and cost-effective batch testing.

Explore partnerships
09

Trust & transparency

Sources, standards & how this page is maintained

Standards & references

  • ACMG/AMP technical standards for sequence variant interpretation
  • ClinGen curation and gene–disease validity frameworks where applicable
  • LOINC-coded reporting for interoperable results
  • ISO 9001:2015 quality management; ISO 15189 accreditation in progress

Page provenance

  • Last updated: September 27, 2026
  • Medical review: not yet completed
  • Written for patients & clinicians in Kenya; reviewed periodically against current guidance

Medical disclaimer: this page is general information, not a diagnosis or personal medical advice. Testing decisions and result interpretation should be made with a qualified healthcare professional.

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