With reference to 'stem cells', frequently in the news, which of the following statements is/are correct? 1. Stem cells can be derived from mammals only 2. Stem cells can be used for screening new drugs 3. Stem cells can be used for medical therapies Select the correct answer using the codes given below:

Updated 11 Apr 2026

Contents16
UPSC Prelims GS2012Science and Technology
  1. A1 and 2 only
  2. B2 and 3 only
  3. C3 only
  4. D1, 2 and 3
Show answer

Answer: (B) 2 and 3 only

Statement 1 is wrong — stem cells are NOT limited to mammals.

They are found in all multicellular organisms, including plants, insects, and other animals.

Statement 2 is correct — stem cells can be grown in labs to test new drugs for safety and efficacy before human trials.

Statement 3 is correct — stem cells are used in therapies like bone marrow transplants and are being researched for treating Parkinson's disease, spinal cord injuries, and diabetes.

Answer: 2 and 3 only.

Why this was asked

Stem cells exist in all multicellular organisms including plants and insects, not just mammals, making them a widespread biological phenomenon across species.

By 2012, stem cell research had gained significant momentum with clinical trials for treating diseases like Parkinson's and diabetes, making it a prominent news topic.

The question tests whether students understand both the biological scope of stem cells and their practical applications in drug testing and medical therapy.

Stem Cells: Types & Sources

Science And Technology stem cells

Stem Cells: Definition, Types & Universal Nature

Must know

Stem cells are undifferentiated cells that can develop into specialized cell types

Found in all multicellular organisms — not just mammals

Embryonic stem cells are pluripotent; adult stem cells are multipotent

Good to know

iPSCs (induced pluripotent stem cells) are adult cells reprogrammed to act like embryonic stem cells

What Are Stem Cells

Stem cells are unique because they remain undifferentiated — they haven't specialized into specific cell types yet. They have two key properties: self-renewal (ability to divide and create more stem cells) and differentiation (ability to become specialized cells like neurons, blood cells, or muscle cells).

Types of Stem Cells

Type

Source

Potency

Can Become

Key Use

Totipotent

Fertilized egg, early embryo

Highest

Any cell type + placenta

Natural development only

Pluripotent

Embryonic stem cells, iPSCs

High

Any body cell type

Research, therapy potential

Multipotent

Adult tissues (bone marrow, fat)

Limited

Few related cell types

Current medical use

Unipotent

Specific adult tissues

Lowest

One cell type only

Tissue repair

Universal Distribution

Plants: Meristematic cells in shoot and root tips function as stem cells

Invertebrates: Found in cnidarians (like Hydra), planarians, and insects

All vertebrates: Fish, amphibians, reptiles, birds, and mammals have stem cells

Regenerative capacity: Some organisms like salamanders use stem cells to regrow entire limbs

Exam traps

Trap: Statement 1 claims stem cells exist only in mammals — FALSE. They're in all multicellular life.

Confusion: Don't mix up totipotent vs pluripotent — totipotent can form entire organisms, pluripotent cannot.

iPSC confusion: These are adult cells reprogrammed to act pluripotent, not natural embryonic cells.

Stem Cells in Drug Testing

Science And Technology screening new drugs

Stem Cells for Drug Screening & Development

Must know

Stem cells can be differentiated into specific cell types for drug testing

Used in preclinical screening before human trials to test safety and efficacy

Good to know

Reduces need for animal testing and provides human-relevant data

How Drug Screening Works

Scientists differentiate stem cells into specific cell types (like heart cells, liver cells, or neurons) and then expose them to potential drugs. This allows testing for both therapeutic effects and toxic side effects in a controlled lab environment before moving to animal or human trials.

Drug Development Process

%%{init: {"flowchart": {"wrappingWidth": 460}}}%%
flowchart TD
  s1["`**Drug Discovery**
Identify potential therapeutic compounds`"]
  s2["`**Stem Cell Testing**
Test on lab-grown human cells from stem cells`"]
  s3["`**Animal Testing**
If stem cell tests pass, move to animal models`"]
  s4["`**Human Trials**
Clinical trials in phases I, II, III`"]
  s5["`**FDA Approval**
Drug approved for medical use`"]
  s1 --> s2
  s2 --> s3
  s3 --> s4
  s4 --> s5

Advantages Over Traditional Methods

Human relevance: Uses actual human cell types, not just animal models

Cost efficiency: Cheaper than maintaining animal colonies for testing

High throughput: Can test thousands of compounds simultaneously

Disease modeling: Can create diseased cell types to test targeted therapies

Exam traps

Remember: Statement 2 is CORRECT — stem cells ARE used for drug screening.

Don't confuse: This is about testing drugs on stem cells, not using stem cells as drugs.

Stem Cell Medical Therapies

Science And Technology medical therapies

Stem Cell Therapies: Current Uses & Future Potential

Must know

Bone marrow transplants for blood cancers are the most established stem cell therapy

Used to treat blood disorders, immune deficiencies, and some cancers

Good to know

Research ongoing for Parkinson's, diabetes, spinal cord injuries

Corneal and skin stem cell treatments already in clinical use

Current vs Future Therapies

Status

Condition

Stem Cell Type

How It Works

In Use

Blood cancers (leukemia)

Hematopoietic stem cells

Replace diseased bone marrow

In Use

Severe burns

Skin stem cells

Grow new skin tissue

In Use

Corneal blindness

Limbal stem cells

Restore clear vision

Research

Parkinson's disease

Neural stem cells

Replace lost dopamine neurons

Research

Type 1 diabetes

Pancreatic stem cells

Restore insulin production

Research

Spinal cord injury

Neural stem cells

Regenerate damaged nerve tissue

How Stem Cell Therapy Works

The basic principle is cell replacement — damaged or diseased cells are replaced with healthy ones grown from stem cells. In bone marrow transplants, patients receive stem cells that develop into new blood cells. For future therapies, scientists hope to grow specific cell types (like insulin-producing cells for diabetes) and transplant them into patients.

Challenges & Limitations

Immune rejection: Patient's body may attack transplanted cells as foreign

Cancer risk: Stem cells could grow uncontrollably into tumors

Ethical concerns: Use of embryonic stem cells raises moral questions

Technical hurdles: Difficult to control exactly what cell types develop

Exam traps

Remember: Statement 3 is CORRECT — stem cells ARE used in medical therapies.

Key distinction: Bone marrow transplants are proven therapy; most others are still experimental.

Stem Cell Research in India

Science And Technology

India's Stem Cell Research & Regulatory Framework

Must know

ICMR (Indian Council of Medical Research) regulates stem cell research in India

Good to know

Guidelines restrict embryonic stem cell research to specific conditions

India has emerging stem cell therapy centers but many are unregulated

Regulatory Framework

The ICMR has established guidelines for stem cell research and therapy. Only hematopoietic stem cell transplantation (bone marrow transplants) is considered standard treatment. All other stem cell therapies are classified as experimental and require proper clinical trials.

Key Regulations

Embryonic research: Allowed only with strict ethical oversight and consent

Clinical trials: Must follow ICMR protocols before offering treatments

Unproven therapies: Many clinics offer unregulated treatments — patients should be cautious

International collaboration: India participates in global stem cell research networks

Indian Stem Cell Ecosystem

# Stem Cell Research India
## Regulators
- ICMR
- DBT (Dept of Biotechnology)
- CDSCO
## Research Centers
- AIIMS
- PGIMER Chandigarh
- CMC Vellore
- NCCS Pune
## Applications
- Blood disorders
- Corneal repair
- Research trials