EdX

Making a Cell Therapy: Principles and Practice of Manufacturing (edX)

Offered by MIT, MITx,
Making a Cell Therapy: Principles and Practice of Manufacturing (edX)

Cell therapies, such as CAR-T and stem cell therapies, are an exciting new class of therapeutics with the potential to revolutionize medicine. Learn the biology, engineering, and analytical chemistry behind how these amazing new products are manufactured. The success of CAR-T cell therapies, driven by their unprecedented efficacy and recent regulatory approvals, has kick-started a new wave of interest into cells as therapies.

Class Deals by MOOC List - Click here and see EdX's Active Discounts, Deals, and Promo Codes.

Yet manufacturing is the link between an exciting new development in the laboratory and a commercial therapy available to the patients who need it.

This course will introduce learners to this new field through the following topics:

  • Cellular therapies are living products that are only effective when delivered alive. This course will introduce the basic cellular biology that controls cellular growth and metabolism.
  • The enhanced function of some cell therapies relies on our ability to genetically engineer the cells. This course will teach the current and emerging approaches that are used for genetic modification.
  • This course will teach how we isolate cells from patients or donors and then manipulate them, including helping those cells to grow and multiply outside of the body, to produce a living product at a therapeutically relevant dose.
  • We also need to have confidence that the product we have made is safe and effective and that the process we have used to make it did not encounter any unanticipated obstacles along the way. This course will teach some of the analytical methods used to do this and why these methods were chosen.
  • As these are often individualized therapies, how do you reproducibly manufacture a highly complex living therapy for all of the patients who may need it? This course will teach about the unique characteristics of cell therapies and how those characteristics drive manufacturing, delivery, and supply chain decisions.
  • Cell therapies are part of the larger pharmaceutical industry, which operates under regulatory oversight. This course will teach about how drugs are regulated and how those regulations are applied specifically to cellular therapies.

This course is intended to provide an overview of the key concepts needed to manufacture a cell therapy for learners interested in entering this exciting new field.

What you'll learn

  • cell biology and immunology
  • cell therapy manufacturing practices
  • analytics for cell therapy
  • industrialization of cell therapies
  • regulatory requirements for cell therapies
Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Logistics Fundamentals (edX) EdX
LOGYCAX

Logistics Fundamentals (edX)

Have you ever wondered how products arrive at your hands? From the clothes we wear to the food we consume, they have been through a series of links, processes, operations and flows we know as logistics. Logistics are the first trait for a company’s success! Learn all about logistics and how you can use it to achieve every goal in your organization. In this online course you will gain a holistic view of logistics and transportation within your company, which is useful to understand how a company can thing strategically thanks to basic but essential content.

Self Paced
Self-Paced
Introduction to Water and Climate (edX) EdX
Delft University of Technology,DelftX

Introduction to Water and Climate (edX)

Water is a crucial element in climate and for society. Find out about the latest engineering interventions for water management in rivers, coasts and the urban environment. Water is essential for life on Earth and of crucial importance for society. Water also plays a major role in affecting climate. Its natural cycle, from ocean to atmosphere by evaporation, then by precipitation back to land returning via rivers and aquifers to the oceans, has a decisive impact on regional and global climate patterns.

Self Paced
Self-Paced
A System View of Communications: From Signals to Packets (Part 3) (edX) EdX
The Hong Kong University of Science and Technology - HKUST,HKUSTx

A System View of Communications: From Signals to Packets (Part 3) (edX)

Explore the tradeoffs in designing communication systems like mobile phones, and the engineering tools to handle them. Have you ever wondered how information is transmitted using your mobile phone or a WiFi hotspot? Gain an understanding of the basic engineering tools used and tradeoffs encountered in the design of these communication systems.

Self Paced
Self-Paced
Principles of Biochemistry (edX) EdX
HarvardX,Harvard University

Principles of Biochemistry (edX)

This introduction to biochemistry explores the molecules of life, starting at simple building blocks and culminating in complex metabolism. Principles of Biochemistry integrates an introduction to the structure of macromolecules and a biochemical approach to cellular function. Topics addressing protein function will include enzyme kinetics, the characterization of major metabolic pathways and their interconnection into tightly regulated networks, and the manipulation of enzymes and pathways with mutations or drugs.

Self Paced
Self-Paced
The Basics of Transport Phenomena (edX) EdX
Delft University of Technology,DelftX

The Basics of Transport Phenomena (edX)

Learn the basic framework to work on a broad spectrum of engineering problems concerning transfer of heat, mass and momentum. Learn through examples of everyday processes at home, in the lab and in industry. Have you ever wondered why ventilation helps to cool down your hot chocolate? Do you know why a surfing suit keeps you warm? Why iron feels cold, while wood feels warm at room temperature? Or how air is transferred into aqueous liquids in a water treatment plant? How can we sterilize milk with the least amount of energy? How does medicine spread in our tissue? Or how do we design a new cooling tower of a power plant? All these are phenomena that involve heat transfer, mass transfer or fluid flow.

Self Paced
Self-Paced
水力学 | Hydraulics (edX) EdX
Tsinghua University,TsinghuaX

水力学 | Hydraulics (edX)

This Hydraulics course explores the science of hydraulics and focuses on hydrodynamic laws and their applications, which are indispensable and a critical factor in the development and utilization of water resources. 水,是人类生活不可或缺的资源。水力学是人类开发利用水资源的有力工具。本课教你认识和掌握水流静止和运动的力学规律,了解在相关领域的工程应用。

Self Paced
Self-Paced
Super-Earths And Life (edX) EdX
HarvardX,Harvard University

Super-Earths And Life (edX)

Learn about the Earth, life, and how we can search for life elsewhere in the universe. Are we alone in this universe? What new information and observations on exoplanets have we discovered? In the past decade, astronomers have made incredible advances in the discovery of planets outside our solar system. Thirty years ago, we knew only of the planets in our own solar system. Now we know of thousands circling nearby stars.

Self Paced
Self-Paced
Cell Biology: Mitochondria (edX) EdX
HarvardX,Harvard University

Cell Biology: Mitochondria (edX)

A human-centered approach to the fundamentals of cell biology with a focus on the power plants of the cell - mitochondria. The cell is a powerful case study to help us explore the functional logic of living systems. All organisms, from single-celled algae to complex multicellular organisms like us, are made up of cells. In this course, you will learn the how and why of biology by exploring the function of the molecular components of cells, and how these cellular components are organized in a complex hierarchy.

Self Paced
Self-Paced
Forensic Engineering: Learning from Failures (edX) EdX
Delft University of Technology,DelftX

Forensic Engineering: Learning from Failures (edX)

Don’t let good failures go to waste! Identify the causes of failure and use this knowledge to enhance safety and improve performance. What do collapsed buildings, infected hospital patients, and crashed airplanes have in common? If you know the causes of these events and conditions, they can all be prevented. In this course, you will learn how to use the TU Delft mind-set to investigate the causes of such events so you can prevent them in the future.

Self Paced
Self-Paced