Evaluation of Different Types of Risks in Pharmaceutical Supply- Chain

Similar documents
Petroleum Supply Chain Risk Analysis in a Multinational Oil Firm in Nigeria

Quantification of Risk Mitigation in Ghanaian Pharmaceutical Industry Supply Chain

Comparative Analysis of FAHP and FTOPSIS Method for Evaluation of Different Domains

Chapter 4 SUPPLY CHAIN PERFORMANCE MEASUREMENT USING ANALYTIC HIERARCHY PROCESS METHODOLOGY

Multi-Criteria Decision-Making Using the Analytic Hierarchy Process for Wicked Risk Problems

Using Analytic Hierarchy Process (AHP) Method to Prioritise Human Resources in Substitution Problem

6 Analytic Hierarchy Process (AHP)

AN EVALUATION OF THE UPSTREAM CRUDE OIL INDUSTRY SUPPLY CHAIN RISK

A Fuzzy AHP based Multi-criteria Decision-making Model to Select a Cloud Service

Vendor Evaluation and Rating Using Analytical Hierarchy Process

MULTIPLE-OBJECTIVE DECISION MAKING TECHNIQUE Analytical Hierarchy Process

Supplier Performance Evaluation and Selection in the Herbal Industry

Analytical Hierarchy Process for Higher Effectiveness of Buyer Decision Process

An Evaluation Model for Determining Insurance Policy Using AHP and Fuzzy Logic: Case Studies of Life and Annuity Insurances

Applying the Analytic Hierarchy Process to Health Decision Making: Deriving Priority Weights

Subcontractor Selection Using Analytic Hierarchy Process

INVOLVING STAKEHOLDERS IN THE SELECTION OF A PROJECT AND PORTFOLIO MANAGEMENT TOOL

Analytic Hierarchy Process for Effective Decision Making in Project Management. Glenn Hamamura Dr. Lawrence Rowland

Analytical hierarchy process for evaluation of general purpose lifters in the date palm service industry

A Decision-Making Framework for IT Outsourcing using the Analytic Hierarchy Process

Adopting an Analytic Hierarchy Process to Select Internet Advertising Networks

A Multi-Criteria Decision-making Model for an IaaS Provider Selection

Analytic Hierarchy Process for Design Selection of Laminated Bamboo Chair

Pharmaceutical supply chain risks: a systematic review

Learning Management System Selection with Analytic Hierarchy Process

Supplier Selection through Analytical Hierarchy Process: A Case Study In Small Scale Manufacturing Organization

Project Management Software Selection Using Analytic Hierarchy Process Method

Evaluating Simulation Software Alternatives through ANP

ISAHP 2007, Viña Del Mar, Chile, August 3, 2007

How to do AHP analysis in Excel

Report on SELECTING THE BEST PROJECT DELIVERY METHOD USING THE ANALYTICAL HIERARCHY PROCESS (AHP)

Application of Analytical Hierarchy Process (AHP) in productivity of costs of Quality

Factors Affecting The Development of Engineering Consulting Firms

A REVIEW AND CRITIQUE OF HYBRID MADM METHODS APPLICATION IN REAL BUSINESS

USING THE ANALYTIC HIERARCHY PROCESS (AHP) TO SELECT AND PRIORITIZE PROJECTS IN A PORTFOLIO

Research on supply chain risk evaluation based on the core enterprise-take the pharmaceutical industry for example

CONTRACTOR SELECTION WITH RISK ASSESSMENT BY

ASSESSMENT OF FACTORS AFFECTING EMPOWERMENT OF HUMAN RESOURCES USING ANALYTICAL HIERARCHY PROCESS

IDENTIFYING AND PRIORITIZING THE FINANCING METHODS (A HYBRID APPROACH DELPHI - ANP )

An Illustrated Guide to the ANALYTIC HIERARCHY PROCESS

Available online at ScienceDirect. Procedia CIRP 17 (2014 ) Madani Alomar*, Zbigniew J. Pasek

Transport Management from a Shipper s Perspective

Development of Virtual Lab System through Application of Fuzzy Analytic Hierarchy Process

Project Management Software Selection Using Analytic Hierarchy Process Method

A new Environmental Performance Index using analytic hierarchy process: A case of ASEAN countries

ABC AHP Decision Tool Manual

EXECUTIVE SUMMARY. Warehouse Management Systems. Technology for Global Supply Chain Performance. Authored By: Carla Reed. ChainLink Technology Series

Contractor selection using the analytic network process

VENDOR SELECTION IN SUPPLY CHAIN USING RELATIVE RELIABILITY RISK EVALUATION

Green issues in the supply chain management training

A Development of the Effectiveness Evaluation Model for Agile Software Development using the Balanced Scorecard

SUPPLY CHAIN MANAGEMENT AND A STUDY ON SUPPLIER SELECTION in TURKEY

The Analytic Hierarchy Process as a Decision-Support System in the Housing Sector: A Case Study

International Association of Scientific Innovation and Research (IASIR) (An Association Unifying the Sciences, Engineering, and Applied Research)

AN INVESTIGATION ABOUT THE CHARACTERISTICS OF AN ENGINEERING COLLEGE TEACHER IN THE CURRENT SCENARIO

Design of Analytic Hierarchy Process Algorithm and Its Application for Vertical Handover in Cellular Communication

CHAPTER 3 IDENTIFICATION OF MOST PREFERRED KEY PERFORMANCE INDICATOR IN INDIAN CALL CENTRES

How To Evaluate The Performance Of The Process Industry Supply Chain

Global Sourcing and Vendor Risk Management in Supply Chains. Prof. T. R. Natesan Endowment Lecture, ORSI, Chennai Chapter November 23, 2010

Examination of Thai Construction Safety Factors using the Analytic Hierarchy Process

ERP SELECTION USING EXPERT CHOICE SOFTWARE

CASE STUDIES OF USING THE ANALYTIC HIERARCHY PROCESS METHOD IN CORPORATE SOCIAL RESPONSIBILITY AND ENVIRONMENTAL RISK MANAGEMENT

RISK MANAGEMENT DECISION MAKING

Prize: an R package for prioritization estimation based on analytic hierarchy process

Using Analytic Hierarchy Process Method in ERP system selection process

SUPPLY CHAIN MANAGEMENT IN THE TEXTILE INDUSTRY: A SUPPLIER SELECTION MODEL WITH THE ANALYTICAL HIERARCHY PROCESS

Using QR codes to track and identify counterfeit products

Maintainability Estimation of Component Based Software Development Using Fuzzy AHP

Center for Business and Industrial Marketing

ANALYTIC HIERARCHY PROCESS (AHP) TUTORIAL

Talk:Analytic Hierarchy Process/Example Leader

Analytic Hierarchy Process (AHP) :

Risky Business: Organisational Effectiveness at Managing Risk of Outsourced Projects

MATERIAL PURCHASING MANAGEMENT IN DISTRIBUTION NETWORK BUSINESS

Profitability and Consistency Analysis of Pharmacy Sector in India

Summary. Accessibility and utilisation of health services in Ghana 245

ANALYTICAL HIERARCHY PROCESS AS A TOOL FOR SELECTING AND EVALUATING PROJECTS

What s Trending in Analytics for the Consumer Packaged Goods Industry?

The Application of ANP Models in the Web-Based Course Development Quality Evaluation of Landscape Design Course

Chapter: IV. IV: Research Methodology. Research Methodology

Application of the Multi Criteria Decision Making Methods for Project Selection

Factors Influencing Laptop Buying Behavior a Study on Students Pursuing Ug/Pg in Computer Science Department of Assam University

ERP SYSTEM SELECTION BY AHP METHOD: CASE STUDY FROM TURKEY

Decision making in ITSM processes risk assessment

APPLICATION OF ANALYTIC HIERARCHY PROCESS METHOD IN THE EVALUATION OF MANAGERS OF INDUSTRIAL ENTERPRISES IN SLOVAKIA

Information Security and Risk Management

Analytic hierarchy process to assess and optimize distribution network

THE SELECTION OF BRIDGE MATERIALS UTILIZING THE ANALYTICAL HIERARCHY PROCESS

Transcription:

REVIEW ARTICLE Am. J. PharmTech Res. 2012; 2(4) ISSN: 2249-3387 Evaluation of Different Types of Risks in Pharmaceutical Supply- Chain Jnandev Kamath K 1 *, Krishnananda Kamath K. 1, Mohamad Azaruddin 1, E.V.S. Subrahmanyam 1, A.R. Shabharaya 1. 1. Dept of Quality Assurance, Srinivas College of Pharmacy, Valachil, Mangalore, India. ABSTRACT Journal home page: http://www.ajptr.com/ Pharmaceutical supply chain has always been a point of great interest in academic research as well as in industrial practice. However this popular buzzword still remains an ill-defined and poorly understood concept and this will provide a better understanding of the different levels of pharmaceutical supply chain issues and the terms regarding supply chain for pharmaceuticals. Though the pharmaceutical industry has grown by leaps and bounds the risk affecting it has also increased proportionately. Furthermore this addresses the issues of risk mitigation in pharmaceutical supply chain by providing quantified empirical results. Based on the available literature four major risks affecting the pharmaceutical supply chain were identified as regulatory risk, inventory risk, counterfeit risk and financial risk. Ranking and management strategies of these are based on Analytical Hierarchy Process model. Also solutions to these risks are provided based on the results of the survey questionnaires and literature study which would be best suited for the industry to flourish and survive in today s competitive global marketplace. Keywords: Supply chain, Analytical Hierarchy Process Model, Risk management *Corresponding Author Email: kamathkrishnananda@yahoo.com Received 26 June 2012, Accepted 2 July 2012 Please cite this article in press as: Kamath J et al., Evaluation of different types of risks in pharmaceutical supply-chain. American Journal of PharmTech Research 2012.

INTRODUCTION Supply chain in India presents major challenges to manage and maintain effectively. Due to poor infrastructure, overstretched capacity, a highly fragmented supplier base, the lack of traditional retail channels and point-of-sales, ineffective usage of information technologies and communication, a very complex system of taxes and restrictive government regulations, are just some of the challenges that can make the sourcing and retailing opportunities in India seem unattainable. Consequently, many logistics and distribution models that have proven their value in developed economies, doesn t often work when applied to India. This represents a major challenge for multinational firms, since they either have to adapt their existing strategies to the peculiarities of the Indian landscape or design new strategies from scratch, that are entirely adapted to the local conditions. On top of that, the concept of supply chain management is still nascent in India. Except for the industry leaders, many Indian corporations are still reluctant to sharing information and to engaging in collaborative relationships with suppliers, third-party logistics providers, distributors and retailers. [2][5][12] Evaluation of the Pharmaceutical Supply Chain is an important issue for both academic research and industrial practice. However, this popular buzzword still remains an ill-defined and poorly understood concept and the findings of this project will provide us better understanding of the issues in local existing pharmaceutical supply chain and help us to bridge the information gap and provide a better control of standards through evaluation of existing supply chain management. The study evaluates the risks in pharmaceutical supply chain and provides solutions to these through risk prioritization and management using Analytical Hierarchy Process model. MATERIALS AND METHODS Initial work was extensively on gathering of data on specific as well as generalized pharmaceutical supply chains in order to identify the critical points for further more detailed investigation. In addition, an evaluation has been made on pharmaceutical supply chain risks. The method adopted was to gather data from a questionnaire with a sample population of manufacturers, intermediaries and dispensing pharmacists. The outputs from these were then combined, compared, analyzed and conclusion was drawn. Analytical Hierarchy Process (AHP) is type of evaluation and management of pharmaceutical supply chain risks developed by Thomas L Saaty which helps in complex decision making in 281 www.ajptr.com

Multi Criteria Decision Making (MCDM). AHP is selected because it allows decision-makers to model a complex problem in a hierarchical structure portraying the relationships of the overall goal, criteria (objectives), sub-criteria (sub-objectives), and alternatives. Research that have used AHP include supplier selection, project selection and management, international business management, operations and logistics/supply chain management, marketing, pharmaceutical marketing and management, and accounting. Following hierarchy structure modelling for risk management in pharmaceutical supply chain is shown in Figure 1 can be achieved as follows. Managing Pharmaceutical Supply Chain Risk Criterion 1 Regulatory Risk Criterion 2 Counterfeit Risk Criterion 1. 3 Inventory 2. Risk Criterion 4 Financial Risk Option 1: Reduce Risk Option 2: Accept Risk 3. Option 3: 4. Avoid Risk Option 4: Transfer Risk Figure 1. Hierarchy Structure of Pharmaceutical Supply Chain Risks Define an unstructured problem and determine the overall goal. The overall goal is to manage risk in pharmaceutical supply chain. Build the hierarchy from the top through the intermediate levels to the lowest level which usually contains the list of alternatives. The major decision criteria occupy the second level of the hierarchy, while the sub-criteria occupy the third level of the hierarchy. The decision maker defines the criteria that will be used to judge the alternative policy options. The defined decision criteria are Inventory Risk, Regulatory Risk, Financial Risk and Counterfeit risk. The alternative policy options proposed to manage the pharmaceutical supply chain risk are risk reduction, risk acceptance, risk avoidance, and risk transfer. The factor with the maximum local priority is selected from each category to represent the category and the relative priorities of the scaling factors computed. The derived priorities are used for final rating of the alternative policy options and selecting the most important and satisfactory policy option. Construction of pair-wise comparison matrix: Build a set of pair-wise comparison matrices for each level of the hierarchy and then conduct all the pair-wise comparisons. www.ajptr.com 282

Importance was measured on an integer-valued 1-9 scale reported in Table 1. It is the relative scale measurement developed by Saaty for pair wise comparisons. It allows the transformation of qualitative judgments or intangible attributes into preference weights (level of importance) or numerical values. The nine-point scale seeks to know the dependence criteria, which one will influence the common criteria more and if so how much more. According to Saaty, a value of 1 between two criteria indicates that both equally influence the affected node, while a value of 9 indicates that the influence of one criterion is extremely more important than the other. 8 Table 1. The AHP pair-wise comparison values or scale of preference between two elements. Preference weights or Definition of Verbal Scale Explanation level of importance 1 If the two objectives are equally (equal) preferred (importance) Two activities or elements contribute equally to the objective 3 If objective (i) is moderately preferred or moderately more Experience and judgment slightly favour activity or element over another. important than objective (ii) 5 If objective (i) is strongly preferred or strongly more important than objective (ii) Experience and judgment strongly or essentially favour one activity over another 7 If objective (i) is very strongly preferred or very strongly more important than objective (ii) An activity is strongly favoured over another and its dominance demonstrated in practice 9 If objective (i) is extremely preferred or extremely more important than objective (ii) The evidence favouring one activity over another is of the highest degree possible of affirmation 2,4,6,8 Intermediate values Used to represent compromise between the preferences listed above or used to compromise between two judgments. 1/3 If objective (ii) is weakly more important than objective (i). Data Collection A survey questionnaire approach was used for gathering relational data to assess the order of importance of the pharmaceutical supply chain risks. Thus, from the hierarchy tree, a questionnaire was developed to enable pair-wise comparisons between all the factors at each level in the hierarchy. The pair-wise comparison process elicits qualitative judgments or opinions that indicate the strength of the experts preference in a specific comparison according to 1-9 scale. The experts were requested to respond to several pair-wise comparisons where two categories at a time are compared with respect to the goal. The result of the survey questionnaire technique was then used as input for the AHP. The pair-wise comparison matrix is shown in Table 2. 8 283 www.ajptr.com

Empirical Results The pair-wise comparison of the major criteria shown in Table 2 as well as in the Figure 1 below indicate that the regulatory risk is the most important risk to manage with a priority of 0.383 followed by financial right risk(0.342), inventory risk(0.168) and counterfeit risk(0.107)(table3). Table 2. Pair-wise Comparison Matrix for the Four Criteria: Criteria Regulatory Risk Counterfeit Risk Inventory Risk Financial Risk Regulatory Risk 1 3 3 1 Counterfeit Risk 1/3 1 2 3 Inventory Risk 1 2 1 2 Financial Risk 1 1/3 2 1 Table 3. Pair-wise Comparison Matrix for Risk objectives with respect to the Goal Goal Priority Rank Regulatory Risk 0.383 1 Counterfeit Risk 0.107 4 Inventory Risk 0.168 3 Financial Risk 0.342 2 RISK MANAGEMENT STRATEGIES Tables 4 to 7 report the risk management strategies for the four major decision criteria including regulatory risk, counterfeit risk, inventory risk and financial risk. For both regulatory and financial risk, the best strategy is risk transfer such as outsourcing and insurance respectively. However, for both counterfeit risk and inventory risk, the preference is to reduce risk that is by incorporating anti-counterfeiting strategies and inventory management. 5 Table 4. Pair-wise Comparison Matrix for Policy Option with respect to Regulatory Risk Regulatory Risk Reduce Risk Accept Risk Avoid Risk Transfer Risk Priority Rank Reduce Risk 1 2 2 2 0.261 2 Accept Risk 2 1 2 3 0.169 3 Avoid Risk 2 2 1 3 0.119 4 Transfer Risk 2 1/3 1 1 0.451 1 Table 5. Pair-wise Comparison Matrix for Policy Option with respect to Counterfeit Risk Counterfeit Risk Reduce Risk Accept Risk Avoid Risk Transfer Risk Priority Rank Reduce Risk 1 5 3 5 0.560 1 Accept Risk 5 1 3 1 0.095 3 Avoid Risk 1/3 1/3 1 3 0.249 2 Transfer Risk 5 1 1/3 1 0.095 3 Table 6. Pair-wise Comparison Matrix for Policy Option with respect to Inventory Risk Inventory Risk Reduce Risk Accept Risk Avoid Risk Transfer Risk Priority Rank Reduce Risk 1 5 3 3 0.527 1 Accept Risk 5 1 3 1 0.102 4 Avoid Risk 1/3 1/3 1 2 0.241 2 Transfer Risk 1/3 1 2 1 0.129 3 www.ajptr.com 284

Risk Scale Kamath et al., Am. J. PharmTech Res. 2012; 2(4) ISSN: 2249-3387 Table 7. Pair-wise Comparison Matrix for Policy Option with respect to Financial Risk Financial Risk Reduce Risk Accept Risk Avoid Risk Transfer Risk Priority Rank Reduce Risk 1 5 1 3 0.226 2 Accept Risk 5 1 3 5 0.068 4 Avoid Risk 1 1/3 1 3 0.193 3 Transfer Risk 1/3 5 3 1 0.513 1 0.5 0.4 0.3 0.2 0.1 0 Regulatory Risk Counterfeit Risk Inventory Risk Financial Risk Pharmaceutical Supply chain Risk Figure 2. Comparison of risk affecting pharmaceutical supply chain. Risk Comparison R i s k C o m p a r i s o n 0.6 0.4 0.2 0 1 2 3 4 Risks Effecting Supply Chain Regulatory Risk Counterfeit Risk Inventory Risk Financial Risk Figure 3. Comparison Chart of Policy Options for Pharmaceutical Supply Chain Risks CONCLUSION In this atmosphere of high competition and increasing business targets pharmaceutical industry faces an array of risk ranging from regulatory failure, counterfeiting, inventory mismanagement, financial loss. The pharmaceutical companies should incorporate appropriate risk management strategies to counter these risks. Outsourcing of key regulatory activities to external agencies improves cost efficiencies by fewer hiring of expertise personnel, training costs, facility requirement and refocusing employees on other essential activities though it has its own share of issues and hurdles which includes data security, increased compliance risk, loss of control, sharing of internal responsibilities and trust. Issues regarding counterfeiting can be managed by incorporating latest anti-counterfeiting technologies such as hologram, mass 285 www.ajptr.com

encoding systems, bar-codes and RFID systems. Inventory management logistics planning and good warehousing practises help in coping with inventory risks. Major financial risks can be mitigated using insurance of products and facilities, mergers and acquisitions to gain marketing access into newer markets. Thus proper risk management strategies help in building shareholder s trust and improve performance and profit margins. REFERENCES 5. Sagar GV. Pharmaceutical industrial management. PharmaMed Press 2005: 111-19. 6. Chaganti SR. Pharmaceutical marketing in India. PharmaMed Press 2007: 1-36. 7. Klemencic E. Management of the supply chain-case of danfoss district heating business area. Ljubljana, Slovania: University of Ljubljana, 2006. 8. Gellad ZF, Lyles KW. Direct-to-consumer advertising of pharmaceuticals. The American J. Med 2007:475-80. 9. Kothari SP, Billard GY. Pressure points- risk management in the pharmaceutical industry, KPMG report (US); 2005. 10. Sundaramoorthy A. Planning and scheduling in pharmaceutical supply chain, Singapore: National University of Singapore; Available on: National University of Singapore E-Reserve. 11. Chen CM. Evaluation and design of supply chain operations using DEA, [PhD Thesis]. Rotterdam: Erasmus University; 2009 12. Enyinda IC, Briggs C, Bachkar K. Managing risk in pharmaceutical global Supply chain outsourcing: applying analytical hierarchy process model. Proceedings of the ASBBS Annual Conference; Feb 2009; 13. Enyinda IC, Chris HN, Manu F, Adase SK. Quantification of risk mitigation in Ghanaian pharmaceutical industry supply chain, In; Sigue S, editor. Repositioning African Business and Development for the 21 st Century. Proceedings of the 10 th Annual Conference; 2009: 537-46. 14. Boulaksil Y. Planning outsourced operations in pharmaceutical supply chains. Eindhoven Netherlands: BETA Research School for Operations Management, 2009. 15. Breen L. A preliminary examination of the risk in the pharmaceutical supply chain (PSC) in the National Health Service (NHS) (UK). J Serv Sci Management 2008; 193-99. 16. Deman J, Tuyishime JC. Supply chain management in emerging markets: India. Ghent, Belgium: University of Ghent; 2009. www.ajptr.com 286

17. Vozobulova M. Performance measurement in pharmaceutical supply chain [Masters Thesis]. Tampere, Finland: Tampere University of Technology; 2011. 18. Bindu SR, Ahuja BB. Vendor selection in supply chain using relative reliability risk evaluation. J Theor Appl Inf Technol. 2010: 145-52. 19. Franco RJP. A methodology to capture, evaluate and reformulate a firm s supplies chain strategy as a conceptual system. Massachusetts, USA: Massachusetts Institute of Technology; 2010 287 www.ajptr.com