Skip to content
Tagged COVID-19 Biotechnology SARS-CoV-2 Life Science cancer CORONAVIRUS pandemic
BioXone

BioXone

rethinking future

August 7, 2026
  • About
  • BiotechTodayNews
    • IndiaWeekly Biotech News of India
    • WorldWeekly Biotech News of The World
  • DNA-TalesArticles
    • BiotechnopediaInteresting articles written by BioXone members and associates.
    • Scientists’ CornerArticles from the pioneers of Biotechnology.
    • Cellular CommunicationInterview of greatest researchers’ in the field.
  • Myth-LysisFact Check
  • Signalling PathwayCareer related updates
    • ExaminationsExamination related articles.
    • Job and InternshipJobs and Internship related articles.
  • Courses
  • Contact

Most Viewed This Week

July 13, 2026July 13, 2026

Why Do We Age? The Biology Of Ageing Explained

1
October 17, 2023October 16, 2023

The Corrosion Prediction from the Corrosion Product Performance

2
October 1, 2023September 30, 2023

Nitrogen Resilience in Waterlogged Soybean plants

3
September 28, 2023September 28, 2023

Cell Senescence in Type II Diabetes: Therapeutic Potential

4
September 26, 2023September 25, 2023

Transgene-Free Canker-Resistant Citrus sinensis with Cas12/RNP

5
September 25, 2023September 25, 2023

AI Literacy in Early Childhood Education: Challenges and Opportunities

6

Search Field

Subscribe Now

  • Home
  • BiotechToday
  • Xeroderma Pigmentosum: A Reason of Depriving Man of His Right to Sunlight

Have we neglected Goblet cells and their importance?

mRNA vaccine: Efforts to dethrone coronavirus at the transcriptional level

Xeroderma Pigmentosum: A Reason of Depriving Man of His Right to Sunlight
  • BiotechToday
  • World

Xeroderma Pigmentosum: A Reason of Depriving Man of His Right to Sunlight

bioxone October 27, 2020October 27, 2020

Sayantani  Halder,Amity University Kolkata

Xeroderma Pigmentosum (XP) is a rare inherited human syndrome (recessive autosomal trait), caused due to the defect in mechanism of repairing of damaged DNA (or mutated DNA) characterized by hypersensitivity to sunlight, developing skin cancer at a very early age. The primary cause of this disease is the absence of a functioning Nucleotide Excision Repair (NER) mechanism in the human body. NER is a mechanism that depicts the repair of damaged DNA caused by Ionizing Radiations like UV radiation. In the case of humans, due to prolonged staying away from sunlight of our ancestors, all the mechanisms, concerned with repairing of damaged DNA have ceased working, except the NER mechanism. Humans possess only the NER pathway, for repairing damaged DNA and if this mechanism by any reason is absent in humans then it may cause certain lethal genetic disorders like XP.

The syndrome is characterized by Hypersensitivity to sunlight, severe sunburns with blistering, basal cell carcinoma, marked freckle-like pigmentation of the face, certain Ocular abnormalities and also Neurological Disorders.

Analysis has shown that the syndrome involves at-least 10 Xeroderma Pigmentosum genes for its causing. Malfunction of any one of the gene causes the disease. More than half of all the cases in the US results in XP syndrome due to the mutations of 3 genes solely- XPC, ERCC2 and POLH genes. Instances of the disease vary from 1out of 20,000 in Japan to 1 in 250,000 in the USA, 2.3 per million live births in Western Europe and 1 out of 370 in India. The skin irritations can ameliorate by using sunscreens, sun avoidance methods and recurrent tumour excision, but researchers are still excavating the exact cure procedure for XP.

Also read: Have we neglected Goblet cells and their importance?

Source: Xeroderma Pigmentosum: Man Deprived of His Right to LightSubhash Mareddy,1 Jithendra Reddy,2 Subhas Babu,3 and Preethi Balan3. Hindawi Publishing Corporation,    The Scientific World Journal , Article ID 534752,https://doi.org/10.1155/2013/534752

  • Why Do We Age? The Biology Of Ageing Explained
  • The Corrosion Prediction from the Corrosion Product Performance
  • Nitrogen Resilience in Waterlogged Soybean plants
  • Cell Senescence in Type II Diabetes: Therapeutic Potential
  • Transgene-Free Canker-Resistant Citrus sinensis with Cas12/RNP

Share this:

  • Share on Facebook (Opens in new window) Facebook
  • Share on X (Opens in new window) X

Related

Tagged DNA DNA damage hypersensitivity hypersensitivity to sunlight melanoma neurological disorders Nucleotide Excision Repair (NER) Mechanism skin cancer Sunburns treatments for xeroderma pigmentosum Xeroderma Pigmentosum xeroderma pigmentosum treatment XP genes

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Next Post
  • Biotechnopedia
  • DNA-Tales

mRNA vaccine: Efforts to dethrone coronavirus at the transcriptional level

bioxone October 27, 2020

Ayushman Kumar Banerjee With over 43 million COVID-19 cases having surfaced and more than 1.1 million deaths, researchers are relentlessly working round the clock to develop vaccines against the virus, SARS-CoV-2, which causes the COVID-19. This has led to a race for a vaccine against the novel coronavirus, and in this race, Moderna has devised […]

mRNA vaccine

Related Post

  • BiotechToday
  • World

ARHGAP42 gene deficiency linked with chILD

bioxone July 10, 2021July 9, 2021

Madhavi Bhatia, NIPER Guwahati Childhood interstitial lung disease (chILD) is a heterogeneous group of rare disorders which is characterized by diffuse pulmonary infiltrates, respiratory signs and symptoms, and impaired gas exchange. These disorders are very difficult to diagnose and are associated with substantial morbidity and mortality. chILD, systemic hypertension, and immune abnormalities are seen in […]

Share this:

  • Share on Facebook (Opens in new window) Facebook
  • Share on X (Opens in new window) X
  • BiotechToday
  • World

Fascinating side effects of a pinch of Salt

bioxone May 12, 2021May 12, 2021

Aakancha Shaw, St. Xavier’s College, Kolkata Consuming salt or adding salt to a meal seems normal to everyone, right?  But no, don’t add that extra pinch of salt!  We already know that salt can raise blood pressure, but did you know that too much salt can severely disrupt the energy balance in immune cells which […]

Share this:

  • Share on Facebook (Opens in new window) Facebook
  • Share on X (Opens in new window) X
  • BiotechToday
  • India

Gene behind the green color of plants identified

bioxone December 31, 2020December 31, 2020

Husna, Amity University Kolkata Ever wondered why the plants are green in colour and not black. This is due to the biosynthesis of a green pigment in the plant known as chlorophyll. The synthesis of chlorophyll is a lengthy and multi-step process. As soon as a seedling emerges from under the soil it must quickly […]

Share this:

  • Share on Facebook (Opens in new window) Facebook
  • Share on X (Opens in new window) X

Breaking News

Why Do We Age? The Biology Of Ageing Explained

The Corrosion Prediction from the Corrosion Product Performance

Nitrogen Resilience in Waterlogged Soybean plants

Cell Senescence in Type II Diabetes: Therapeutic Potential

Transgene-Free Canker-Resistant Citrus sinensis with Cas12/RNP

AI Literacy in Early Childhood Education: Challenges and Opportunities

Sustainable Methanol Vapor Sensor Made with Molecularly Imprinted Polymer

Terms and Conditions
Shipping and Delivery Policy
Cancellation and Refund Policy
Contact Us
Privacy Policy